Items where Division is "05 Faculty of Science > Departement Biozentrum > Growth & Development > Biochemistry (Spang)"

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Buser, Dominik P. and Spang, Anne. (2023) Protein sorting from endosomes to the TGN. Frontiers in Cell and Developmental Biology, 11. p. 1140605.

Enkler, Ludovic and Szentgyörgyi, Viktoria and Pennauer, Mirjam and Prescianotto-Baschong, Cristina and Riezman, Isabelle and Wiesyk, Aneta and Avraham, Reut Ester and Spiess, Martin and Zalckvar, Einat and Kucharczyk, Roza and Riezman, Howard and Spang, Anne. (2023) Arf1 coordinates fatty acid metabolism and mitochondrial homeostasis. Nature Cell Biology , 25 (8). pp. 1157-1172.

Szentgyörgyi, Viktória and Spang, Anne. (2023) Membrane tethers at a glance. Journal of Cell Science, 136 (6). jcs260471.

27 January 2022

Enkler, Ludovic and Pennauer, Mirjam and Szentgyörgyi, Viktoria and Prescianotto-Baschong, Cristina and Riezman, Isabelle and Wiesyk, Aneta and Kucharczyk, Roza and Spiess, Martin and Riezman, Howard and Spang, Anne. (2022) The small GTPase Arf1 regulates ATP synthesis and mitochondria homeostasis by modulating fatty acid metabolism.


Solinger, J. A. and Spang, A.. (2022) Sorting of cargo in the tubular endosomal network. Bioessays. e2200158.

Solinger, Jachen A. and Rashid, Harun-Or and Spang, Anne. (2022) FERARI and cargo adaptors coordinate cargo flow through sorting endosomes. Nature Communications, 13 (1). p. 4620.

21 July 2021

Solinger, Jachen and Rashid, Harun-Or and Spang, Anne. (2021) FERARI and cargo adaptors coordinate cargo flow through sorting endosomes. Durham, NC.

21 June 2021

Podinovskaia, Maria and Prescianotto-Baschong, Cristina and Buser, Dominik P. and Spang, Anne. (2021) A novel live cell imaging assay reveals regulation of endosome maturation.

30 March 2021

Cohen, Jennifer D. and Cadena del Castillo, Carla E. and Kaech, Andres and Spang, Anne and Sundaram, Meera. (2021) The C. elegans PTCHD homolog PTR-4 is required for proper organization of the pre-cuticular apical extracellular matrix.


Bottanelli, Francesca and Spang, Anne and Stefan, Chris and Ungermann, Christian. (2021) Meeting report - An online gathering about the latest on Molecular Membrane Biology. Journal of Biological Chemistry. p. 101237.

Cadena Del Castillo, Carla E. and Hannich, J. Thomas and Kaech, Andres and Chiyoda, Hirohisa and Brewer, Jonathan and Fukuyama, Masamitsu and Færgeman, Nils J. and Riezman, Howard and Spang, Anne. (2021) Patched regulates lipid. Nature Communications, 12 (1). p. 4898.

Chiyoda, Hirohisa and Kume, Masahiko and Del Castillo, Carla Cadena and Kontani, Kenji and Spang, Anne and Katada, Toshiaki and Fukuyama, Masamitsu. (2021) Caenorhabditis elegans PTR/PTCHD PTR-18 promotes the clearance of extracellular hedgehog-related protein via endocytosis. PLoS genetics, 17 (4). e1009457.

Cohen, Jennifer D. and Cadena Del Castillo, Carla E. and Serra, Nicholas D. and Kaech, Andres and Spang, Anne and Sundaram, Meera V.. (2021) The Caenorhabditis elegans Patched domain protein PTR-4 is required for proper organization of the precuticular apical extracellular matrix. Genetics, 219 (3). pp. 1-14.

Hauser, Yannick Patrick. Characterization of a developmental oscillator in C. elegans. 2021, Doctoral Thesis, University of Basel, Associated Institution, Faculty of Science.

Kochan, David Z. and Mawer, Julia S. P. and Massen, Jennifer and Tishinov, Kiril and Parekh, Swati and Graef, Martin and Spang, Anne and Tessarz, Peter. (2021) The RNA-binding protein Puf5 contributes to buffering of mRNA upon chromatin-mediated changes in nascent transcription. Journal of Cell Science, 134 (15). jcs259051.

Laborenz, Janina and Bykov, Yury S. and Knöringer, Katharina and Räschle, Markus and Filker, Sabine and Prescianotto-Baschong, Cristina and Spang, Anne and Tatsuta, Takashi and Langer, Thomas and Storchová, Zuzana and Schuldiner, Maya and Herrmann, Johannes M.. (2021) The ER protein Ema19 facilitates the degradation of non-imported mitochondrial precursor proteins. Molecular Biology of the Cell, 32 (8). pp. 664-674.

Matos, Anna L. L. and Keller, Fabian and Wegner, Tristan and Del Castillo, Carla Elizabeth Cadena and Grill, David and Kudruk, Sergej and Spang, Anne and Glorius, Frank and Heuer, Andreas and Gerke, Volker. (2021) CHIMs are versatile cholesterol analogs mimicking and visualizing cholesterol behavior in lipid bilayers and cells. Communications Biology, 4 (1). p. 720.

Podinovskaia, Maria and Prescianotto-Baschong, Cristina and Buser, Dominik P. and Spang, Anne. (2021) A novel live-cell imaging assay reveals regulation of endosome maturation. eLife, 10. pp. 1-32.

Rashid, Harun-Or. FERARI: A multi-protein tethering platform involved in endocytic recycling. 2021, Doctoral Thesis, University of Basel, Faculty of Science.

Spang, Anne. (2021) Means of intracellular communication: touching, kissing, fusing. Microbial Cell, 8 (5). pp. 87-90.

Tishinov, Kiril and Spang, Anne. (2021) The mRNA decapping complex is buffered by nuclear localization. Journal of Cell Science, 134 (18). pp. 1-15.

8 September 2020

Tishinov, Kiril and Spang, Anne. (2020) Decapping complex is essential for functional P-body formation and is buffered by nuclear localization.


Cadena del Castillo, Carla Elizabeth. Role of patched homologs in development and cellular physiology in Caenorhabditis elegans. 2020, Doctoral Thesis, University of Basel, Faculty of Science.

Giona, Pedrioli. Characterization of a paracrine target engagement in an in vitro model of extracellular vesicles-mediated cell-to-cell communication. 2020, Doctoral Thesis, University of Basel, Faculty of Science.

Solinger, Jachen A. and Rashid, Harun-Or and Prescianotto-Baschong, Cristina and Spang, Anne. (2020) FERARI is required for Rab11-dependent endocytic recycling. Nature Cell Biology, 22. pp. 213-224.

Wu, Yu and Boulogne, Claire and Carle, Stefan and Podinovskaia, Maria and Barth, Holger and Spang, Anne and Cintrat, Jean-Christophe and Gillet, Daniel and Barbier, Julien. (2020) Regulation of endo-lysosomal pathway and autophagic flux by broad-spectrum anti-pathogen inhibitor ABMA. The FEBS journal, 287 (15). pp. 3184-3199.

23 October 2019

Cadena del Castillo, Carla E. and Hannich, J. Thomas and Kaech, Andres and Chiyoda, Hirohisa and Fukuyama, Masamitsu and Færgeman, Nils J. and Riezman, Howard and Spang, Anne. (2019) Patched regulates lipid homeostasis by controlling cellular cholesterol levels.


Arakel, Eric C. and Huranova, Martina and Estrada, Alejandro F. and Rau, E-Ming and Spang, Anne and Schwappach, Blanche. (2019) Dissection of GTPase activating proteins reveals functional asymmetry in the COPI coat. Journal of cell science, ahead of print. pp. 1-54.

Laborenz, Janina and Hansen, Katja and Prescianotto-Baschong, Cristina and Spang, Anne and Herrmann, Johannes M.. (2019) In vitro import experiments with semi-intact cells suggest a role of the Sec61 paralog Ssh1 in mitochondrial biogenesis. Biological Chemistry, 400 (9). pp. 1229-1240.

Manchalu, Srinivas and Mittal, Nitish and Spang, Anne and Jansen, Ralf-Peter. (2019) Local translation of yeast ERG4 mRNA at the endoplasmic reticulum requires the brefeldin A resistance protein Bfr1. RNA, 25 (12). pp. 1661-1672.

Stahl, Timo and Hümmer, Stefan and Ehrenfeuchter, Nikolaus and Mittal, Nitish and Fucile, Geoffrey and Spang, Anne. (2019) Asymmetric distribution of glucose transporter mRNA provides a growth advantage in yeast. The EMBO journal, 38 (10). e100373.


Hansen, Katja G. and Aviram, Naama and Laborenz, Janina and Bibi, Chen and Meyer, Maren and Spang, Anne and Schuldiner, Maya and Herrmann, Johannes M.. (2018) An ER surface retrieval pathway safeguards the import of mitochondrial membrane proteins in yeast. Science, 361 (6407). pp. 1118-1122.

Podinovskaia, Maria and Spang, Anne. (2018) The Endosomal Network: Mediators and Regulators of Endosome Maturation. Progress in molecular and subcellular biology, 57. pp. 137-149.

Ramirez-Macias, Inmaculada and Barlow, Lael D. and Anton, Carlos and Spang, Anne and Roncero, Cesar and Dacks, Joel B.. (2018) Evolutionary cell biology traces the rise of the exomer complex in Fungi from an ancient eukaryotic component. Scientific Reports, 8 (1). p. 11154.

Spang, Anne. (2018) The endoplasmic reticulum-the caring mother of the cell. Current Opinion in Cell Biology, 53. pp. 92-96.

Spang, Anne and Mayor, Satyajit. (2018) Editorial Overview: Membranes and organelles: rethinking membrane structure, function and compartments. Current opinion in cell biology, 53. A1-A3.

Stahl, Timo. Cell cycle-dependent localization of hexose transporter mRNA in Saccharomyces cerevisiae. 2018, Doctoral Thesis, University of Basel, Faculty of Science.

Wang, Congwei and Schmich, Fabian and Srivatsa, Sumana and Weidner, Julie and Beerenwinkel, Niko and Spang, Anne. (2018) Context-dependent deposition and regulation of mRNAs in P-bodies. eLife, 7. e29815.

Wang, Congwei and Weidner, Julie and Spang, Anne. (2018) Preparation of Sequencing RNA Libraries through Chemical Cross-linking Coupled to Affinity Purification (cCLAP) in Saccharomyces cerevisiae. Bio-protocol, 8 (19). p. 3029.


Anton, Carlos and Zanolari, Bettina and Arcones, Irene and Wang, Congwei and Mulet, Jose Miguel and Spang, Anne and Roncero, Cesar. (2017) Involvement of the exomer complex in the polarized transport of Ena1 required for Saccharomyces cerevisiae survival against toxic cations. Molecular biology of the cell, 28 (25). pp. 3672-3685.

Hoya, Marta and Yanguas, Francisco and Moro, Sandra and Prescianotto-Baschong, Cristina and Doncel, Cristina and de León, Nagore and Curto, M-Ángeles and Spang, Anne and Valdivieso, M-Henar. (2017) Traffic Through the Trans-Golgi Network and the Endosomal System Requires Collaboration Between Exomer and Clathrin Adaptors in Fission Yeast. Genetics, 205 (2). pp. 673-690.

Mittal, Nitish and Guimaraes, Joao C. and Gross, Thomas and Schmidt, Alexander and Vina-Vilaseca, Arnau and Nedialkova, Danny D. and Aeschimann, Florian and Leidel, Sebastian A. and Spang, Anne and Zavolan, Mihaela. (2017) The Gcn4 transcription factor reduces protein synthesis capacity and extends yeast lifespan. Nature Communications, 8 (457). pp. 1-12.

Spang, Anne. (2017) Cell biology: Bulky tether proteins aid membrane fusion. Nature, 551. pp. 576-577.

Spang, Anne. (2017) Die Zelle: Dorf oder Stadt? In: natura obscura 200 Naturforschende - 200 Naturphänomene - 200 Jahre Naturforschende Gesellschaft in Basel. Basel, pp. 186-187.

Stevens, Julia and Spang, Anne. (2017) Attenuation of N-glycosylation causes polarity and adhesion defects in the C. elegans embryo. Journal of Cell Science, 130 (7). pp. 1224-1331.

13 August 2016

Spang, Anne. (2016) "Das Meer in uns".

June 2016

Pagliuso, Alessandro and Tham, To Nam and Stevens, Julia K. and Lagache, Thibault and Persson, Roger and Salles, Audrey and Olivo-Marin, Jean-Christophe and Oddos, Stéphane and Spang, Anne and Cossart, Pascale and Stavru, Fabrizia. (2016) A role for septin 2 in Drp1-mediated mitochondrial fission. EMBO Reports, 17 (6). pp. 858-873.

21 April 2016

Ackema, Karin B. and Prescianotto-Baschong, Cristina and Hench, Jürgen and Wang, Shyi Chyi and Chia, Zhi Hui and Mergentaler, Heidi and Bard, Fredéric and Frank, Stephan and Spang, Anne. (2016) Sar1, a Novel Regulator of ER-Mitochondrial Contact Sites. PLoS ONE, 11 (4). e0154280.

7 January 2016

Huranova, Martina and Muruganandam, Gopinath and Weiss, Matthias and Spang, Anne. (2016) Dynamic assembly of the exomer secretory vesicle cargo adaptor subunits. EMBO Reports, 17 (2). pp. 202-219.


Klionsky, Daniel J. and Abdelmohsen, Kotb and Abe, Akihisa and Abedin, Md Joynal and Abeliovich, Hagai and Acevedo Arozena, Abraham and Adachi, Hiroaki and Adams, Christopher M. and Adams, Peter D. and Adeli, Khosrow and Adhihetty, Peter J. and Adler, Sharon G. and Agam, Galila and Agarwal, Rajesh and Aghi, Manish K. and Agnello, Maria and Agostinis, Patrizia and Aguilar, Patricia V. and Aguirre-Ghiso, Julio and Airoldi, Edoardo M. and Ait-Si-Ali, Slimane and Akematsu, Takahiko and Akporiaye, Emmanuel T. and Al-Rubeai, Mohamed and Albaiceta, Guillermo M. and Albanese, Chris and Albani, Diego and Albert, Matthew L. and Aldudo, Jesus and Algül, Hana and Alirezaei, Mehrdad and Alloza, Iraide and Almasan, Alexandru and Almonte-Beceril, Maylin and Alnemri, Emad S. and Alonso, Covadonga and Altan-Bonnet, Nihal and Altieri, Dario C. and Alvarez, Silvia and Alvarez-Erviti, Lydia and Alves, Sandro and Amadoro, Giuseppina and Amano, Atsuo and Amantini, Consuelo and Ambrosio, Santiago and Amelio, Ivano and Amer, Amal O. and Amessou, Mohamed and Amon, Angelika and An, Zhenyi and Anania, Frank A. and Andersen, Stig U. and Andley, Usha P. and Andreadi, Catherine K. and Andrieu-Abadie, Nathalie and Anel, Alberto and Ann, David K. and Anoopkumar-Dukie, Shailendra and Antonioli, Manuela and Aoki, Hiroshi and Apostolova, Nadezda and Aquila, Saveria and Aquilano, Katia and Araki, Koichi and Arama, Eli and Aranda, Agustin and Araya, Jun and Arcaro, Alexandre and Arias, Esperanza and Arimoto, Hirokazu and Ariosa, Aileen R. and Armstrong, Jane L. and Arnould, Thierry and Arsov, Ivica and Asanuma, Katsuhiko and Askanas, Valerie and Asselin, Eric and Atarashi, Ryuichiro and Atherton, Sally S. and Atkin, Julie D. and Attardi, Laura D. and Auberger, Patrick and Auburger, Georg and Aurelian, Laure and Autelli, Riccardo and Avagliano, Laura and Avantaggiati, Maria Laura and Avrahami, Limor and Awale, Suresh and Azad, Neelam and Bachetti, Tiziana and Backer, Jonathan M. and Bae, Dong-Hun and Bae, Jae-Sung and Bae, Ok-Nam and Bae, Soo Han and Baehrecke, Eric H. and Baek, Seung-Hoon and Baghdiguian, Stephen and Bagniewska-Zadworna, Agnieszka and Bai, Hua and Bai, Jie and Bai, Xue-Yuan and Bailly, Yannick and Balaji, Kithiganahalli Narayanaswamy and Balduini, Walter and Ballabio, Andrea and Balzan, Rena and Banerjee, Rajkumar and Bánhegyi, Gábor and Bao, Haijun and Barbeau, Benoit and Barrachina, Maria D. and Barreiro, Esther and Bartel, Bonnie and Bartolomé, Alberto and Bassham, Diane C. and Bassi, Maria Teresa and Bast, Robert C. and Basu, Alakananda and Batista, Maria Teresa and Batoko, Henri and Battino, Maurizio and Bauckman, Kyle and Baumgarner, Bradley L. and Bayer, K. Ulrich and Beale, Rupert and Beaulieu, Jean-François and Beck, George R. and Becker, Christoph and Beckham, J. David and Bédard, Pierre-André and Bednarski, Patrick J. and Begley, Thomas J. and Behl, Christian and Behrends, Christian and Behrens, Georg Mn and Behrns, Kevin E. and Bejarano, Eloy and Belaid, Amine and Belleudi, Francesca and Bénard, Giovanni and Berchem, Guy and Bergamaschi, Daniele and Bergami, Matteo and Berkhout, Ben and Berliocchi, Laura and Bernard, Amélie and Bernard, Monique and Bernassola, Francesca and Bertolotti, Anne and Bess, Amanda S. and Besteiro, Sébastien and Bettuzzi, Saverio and Bhalla, Savita and Bhattacharyya, Shalmoli and Bhutia, Sujit K. and Biagosch, Caroline and Bianchi, Michele Wolfe and Biard-Piechaczyk, Martine and Billes, Viktor and Bincoletto, Claudia and Bingol, Baris and Bird, Sara W. and Bitoun, Marc and Bjedov, Ivana and Blackstone, Craig and Blanc, Lionel and Blanco, Guillermo A. and Blomhoff, Heidi Kiil and Boada-Romero, Emilio and Böckler, Stefan and Boes, Marianne and Boesze-Battaglia, Kathleen and Boise, Lawrence H. and Bolino, Alessandra and Boman, Andrea and Bonaldo, Paolo and Bordi, Matteo and Bosch, Jürgen and Botana, Luis M. and Botti, Joelle and Bou, German and Bouché, Marina and Bouchecareilh, Marion and Boucher, Marie-Josée and Boulton, Michael E. and Bouret, Sebastien G. and Boya, Patricia and Boyer-Guittaut, Michaël and Bozhkov, Peter V. and Brady, Nathan and Braga, Vania Mm and Brancolini, Claudio and Braus, Gerhard H. and Bravo-San Pedro, José M. and Brennan, Lisa A. and Bresnick, Emery H. and Brest, Patrick and Bridges, Dave and Bringer, Marie-Agnès and Brini, Marisa and Brito, Glauber C. and Brodin, Bertha and Brookes, Paul S. and Brown, Eric J. and Brown, Karen and Broxmeyer, Hal E. and Bruhat, Alain and Brum, Patricia Chakur and Brumell, John H. and Brunetti-Pierri, Nicola and Bryson-Richardson, Robert J. and Buch, Shilpa and Buchan, Alastair M. and Budak, Hikmet and Bulavin, Dmitry V. and Bultman, Scott J. and Bultynck, Geert and Bumbasirevic, Vladimir and Burelle, Yan and Burke, Robert E. and Burmeister, Margit and Bütikofer, Peter and Caberlotto, Laura and Cadwell, Ken and Cahova, Monika and Cai, Dongsheng and Cai, Jingjing and Cai, Qian and Calatayud, Sara and Camougrand, Nadine and Campanella, Michelangelo and Campbell, Grant R. and Campbell, Matthew and Campello, Silvia and Candau, Robin and Caniggia, Isabella and Cantoni, Lavinia and Cao, Lizhi and Caplan, Allan B. and Caraglia, Michele and Cardinali, Claudio and Cardoso, Sandra Morais and Carew, Jennifer S. and Carleton, Laura A. and Carlin, Cathleen R. and Carloni, Silvia and Carlsson, Sven R. and Carmona-Gutierrez, Didac and Carneiro, Leticia Am and Carnevali, Oliana and Carra, Serena and Carrier, Alice and Carroll, Bernadette and Casas, Caty and Casas, Josefina and Cassinelli, Giuliana and Castets, Perrine and Castro-Obregon, Susana and Cavallini, Gabriella and Ceccherini, Isabella and Cecconi, Francesco and Cederbaum, Arthur I. and Ceña, Valentín and Cenci, Simone and Cerella, Claudia and Cervia, Davide and Cetrullo, Silvia and Chaachouay, Hassan and Chae, Han-Jung and Chagin, Andrei S. and Chai, Chee-Yin and Chakrabarti, Gopal and Chamilos, Georgios and Chan, Edmond Yw and Chan, Matthew Tv and Chandra, Dhyan and Chandra, Pallavi and Chang, Chih-Peng and Chang, Raymond Chuen-Chung and Chang, Ta Yuan and Chatham, John C. and Chatterjee, Saurabh and Chauhan, Santosh and Che, Yongsheng and Cheetham, Michael E. and Cheluvappa, Rajkumar and Chen, Chun-Jung and Chen, Gang and Chen, Guang-Chao and Chen, Guoqiang and Chen, Hongzhuan and Chen, Jeff W. and Chen, Jian-Kang and Chen, Min and Chen, Mingzhou and Chen, Peiwen and Chen, Qi and Chen, Quan and Chen, Shang-Der and Chen, Si and Chen, Steve S.-L. and Chen, Wei and Chen, Wei-Jung and Chen, Wen Qiang and Chen, Wenli and Chen, Xiangmei and Chen, Yau-Hung and Chen, Ye-Guang and Chen, Yin and Chen, Yingyu and Chen, Yongshun and Chen, Yu-Jen and Chen, Yue-Qin and Chen, Yujie and Chen, Zhen and Chen, Zhong and Cheng, Alan and Cheng, Christopher Hk and Cheng, Hua and Cheong, Heesun and Cherry, Sara and Chesney, Jason and Cheung, Chun Hei Antonio and Chevet, Eric and Chi, Hsiang Cheng and Chi, Sung-Gil and Chiacchiera, Fulvio and Chiang, Hui-Ling and Chiarelli, Roberto and Chiariello, Mario and Chieppa, Marcello and Chin, Lih-Shen and Chiong, Mario and Chiu, Gigi Nc and Cho, Dong-Hyung and Cho, Ssang-Goo and Cho, William C. and Cho, Yong-Yeon and Cho, Young-Seok and Choi, Augustine Mk and Choi, Eui-Ju and Choi, Eun-Kyoung and Choi, Jayoung and Choi, Mary E. and Choi, Seung-Il and Chou, Tsui-Fen and Chouaib, Salem and Choubey, Divaker and Choubey, Vinay and Chow, Kuan-Chih and Chowdhury, Kamal and Chu, Charleen T. and Chuang, Tsung-Hsien and Chun, Taehoon and Chung, Hyewon and Chung, Taijoon and Chung, Yuen-Li and Chwae, Yong-Joon and Cianfanelli, Valentina and Ciarcia, Roberto and Ciechomska, Iwona A. and Ciriolo, Maria Rosa and Cirone, Mara and Claerhout, Sofie and Clague, Michael J. and Clària, Joan and Clarke, Peter Gh and Clarke, Robert and Clementi, Emilio and Cleyrat, Cédric and Cnop, Miriam and Coccia, Eliana M. and Cocco, Tiziana and Codogno, Patrice and Coers, Jörn and Cohen, Ezra Ew and Colecchia, David and Coletto, Luisa and Coll, Núria S. and Colucci-Guyon, Emma and Comincini, Sergio and Condello, Maria and Cook, Katherine L. and Coombs, Graham H. and Cooper, Cynthia D. and Cooper, J. Mark and Coppens, Isabelle and Corasaniti, Maria Tiziana and Corazzari, Marco and Corbalan, Ramon and Corcelle-Termeau, Elisabeth and Cordero, Mario D. and Corral-Ramos, Cristina and Corti, Olga and Cossarizza, Andrea and Costelli, Paola and Costes, Safia and Cotman, Susan L. and Coto-Montes, Ana and Cottet, Sandra and Couve, Eduardo and Covey, Lori R. and Cowart, L. Ashley and Cox, Jeffery S. and Coxon, Fraser P. and Coyne, Carolyn B. and Cragg, Mark S. and Craven, Rolf J. and Crepaldi, Tiziana and Crespo, Jose L. and Criollo, Alfredo and Crippa, Valeria and Cruz, Maria Teresa and Cuervo, Ana Maria and Cuezva, Jose M. and Cui, Taixing and Cutillas, Pedro R. and Czaja, Mark J. and Czyzyk-Krzeska, Maria F. and Dagda, Ruben K. and Dahmen, Uta and Dai, Chunsun and Dai, Wenjie and Dai, Yun and Dalby, Kevin N. and Dalla Valle, Luisa and Dalmasso, Guillaume and D'Amelio, Marcello and Damme, Markus and Darfeuille-Michaud, Arlette and Dargemont, Catherine and Darley-Usmar, Victor M. and Dasarathy, Srinivasan and Dasgupta, Biplab and Dash, Srikanta and Dass, Crispin R. and Davey, Hazel Marie and Davids, Lester M. and Dávila, David and Davis, Roger J. and Dawson, Ted M. and Dawson, Valina L. and Daza, Paula and de Belleroche, Jackie and de Figueiredo, Paul and de Figueiredo, Regina Celia Bressan Queiroz and de la Fuente, José and De Martino, Luisa and De Matteis, Antonella and De Meyer, Guido Ry and De Milito, Angelo and De Santi, Mauro and de Souza, Wanderley and De Tata, Vincenzo and De Zio, Daniela and Debnath, Jayanta and Dechant, Reinhard and Decuypere, Jean-Paul and Deegan, Shane and Dehay, Benjamin and Del Bello, Barbara and Del Re, Dominic P. and Delage-Mourroux, Régis and Delbridge, Lea Md and Deldicque, Louise and Delorme-Axford, Elizabeth and Deng, Yizhen and Dengjel, Joern and Denizot, Melanie and Dent, Paul and Der, Channing J. and Deretic, Vojo and Derrien, Benoît and Deutsch, Eric and Devarenne, Timothy P. and Devenish, Rodney J. and Di Bartolomeo, Sabrina and Di Daniele, Nicola and Di Domenico, Fabio and Di Nardo, Alessia and Di Paola, Simone and Di Pietro, Antonio and Di Renzo, Livia and DiAntonio, Aaron and Díaz-Araya, Guillermo and Díaz-Laviada, Ines and Diaz-Meco, Maria T. and Diaz-Nido, Javier and Dickey, Chad A. and Dickson, Robert C. and Diederich, Marc and Digard, Paul and Dikic, Ivan and Dinesh-Kumar, Savithrama P. and Ding, Chan and Ding, Wen-Xing and Ding, Zufeng and Dini, Luciana and Distler, Jörg Hw and Diwan, Abhinav and Djavaheri-Mergny, Mojgan and Dmytruk, Kostyantyn and Dobson, Renwick Cj and Doetsch, Volker and Dokladny, Karol and Dokudovskaya, Svetlana and Donadelli, Massimo and Dong, X. Charlie and Dong, Xiaonan and Dong, Zheng and Donohue, Terrence M. and Doran, Kelly S. and D'Orazi, Gabriella and Dorn, Gerald W. and Dosenko, Victor and Dridi, Sami and Drucker, Liat and Du, Jie and Du, Li-Lin and Du, Lihuan and du Toit, André and Dua, Priyamvada and Duan, Lei and Duann, Pu and Dubey, Vikash Kumar and Duchen, Michael R. and Duchosal, Michel A. and Duez, Helene and Dugail, Isabelle and Dumit, Verónica I. and Duncan, Mara C. and Dunlop, Elaine A. and Dunn, William A. and Dupont, Nicolas and Dupuis, Luc and Durán, Raúl V. and Durcan, Thomas M. and Duvezin-Caubet, Stéphane and Duvvuri, Umamaheswar and Eapen, Vinay and Ebrahimi-Fakhari, Darius and Echard, Arnaud and Eckhart, Leopold and Edelstein, Charles L. and Edinger, Aimee L. and Eichinger, Ludwig and Eisenberg, Tobias and Eisenberg-Lerner, Avital and Eissa, N. Tony and El-Deiry, Wafik S. and El-Khoury, Victoria and Elazar, Zvulun and Eldar-Finkelman, Hagit and Elliott, Chris Jh and Emanuele, Enzo and Emmenegger, Urban and Engedal, Nikolai and Engelbrecht, Anna-Mart and Engelender, Simone and Enserink, Jorrit M. and Erdmann, Ralf and Erenpreisa, Jekaterina and Eri, Rajaraman and Eriksen, Jason L. and Erman, Andreja and Escalante, Ricardo and Eskelinen, Eeva-Liisa and Espert, Lucile and Esteban-Martínez, Lorena and Evans, Thomas J. and Fabri, Mario and Fabrias, Gemma and Fabrizi, Cinzia and Facchiano, Antonio and Færgeman, Nils J. and Faggioni, Alberto and Fairlie, W. Douglas and Fan, Chunhai and Fan, Daping and Fan, Jie and Fang, Shengyun and Fanto, Manolis and Fanzani, Alessandro and Farkas, Thomas and Faure, Mathias and Favier, Francois B. and Fearnhead, Howard and Federici, Massimo and Fei, Erkang and Felizardo, Tania C. and Feng, Hua and Feng, Yibin and Feng, Yuchen and Ferguson, Thomas A. and Fernández, Álvaro F. and Fernandez-Barrena, Maite G. and Fernandez-Checa, Jose C. and Fernández-López, Arsenio and Fernandez-Zapico, Martin E. and Feron, Olivier and Ferraro, Elisabetta and Ferreira-Halder, Carmen Veríssima and Fesus, Laszlo and Feuer, Ralph and Fiesel, Fabienne C. and Filippi-Chiela, Eduardo C. and Filomeni, Giuseppe and Fimia, Gian Maria and Fingert, John H. and Finkbeiner, Steven and Finkel, Toren and Fiorito, Filomena and Fisher, Paul B. and Flajolet, Marc and Flamigni, Flavio and Florey, Oliver and Florio, Salvatore and Floto, R. Andres and Folini, Marco and Follo, Carlo and Fon, Edward A. and Fornai, Francesco and Fortunato, Franco and Fraldi, Alessandro and Franco, Rodrigo and Francois, Arnaud and François, Aurélie and Frankel, Lisa B. and Fraser, Iain Dc and Frey, Norbert and Freyssenet, Damien G. and Frezza, Christian and Friedman, Scott L. and Frigo, Daniel E. and Fu, Dongxu and Fuentes, José M. and Fueyo, Juan and Fujitani, Yoshio and Fujiwara, Yuuki and Fujiya, Mikihiro and Fukuda, Mitsunori and Fulda, Simone and Fusco, Carmela and Gabryel, Bozena and Gaestel, Matthias and Gailly, Philippe and Gajewska, Malgorzata and Galadari, Sehamuddin and Galili, Gad and Galindo, Inmaculada and Galindo, Maria F. and Galliciotti, Giovanna and Galluzzi, Lorenzo and Galluzzi, Luca and Galy, Vincent and Gammoh, Noor and Gandy, Sam and Ganesan, Anand K. and Ganesan, Swamynathan and Ganley, Ian G. and Gannagé, Monique and Gao, Fen-Biao and Gao, Feng and Gao, Jian-Xin and García Nannig, Lorena and García Véscovi, Eleonora and Garcia-Macía, Marina and Garcia-Ruiz, Carmen and Garg, Abhishek D. and Garg, Pramod Kumar and Gargini, Ricardo and Gassen, Nils Christian and Gatica, Damián and Gatti, Evelina and Gavard, Julie and Gavathiotis, Evripidis and Ge, Liang and Ge, Pengfei and Ge, Shengfang and Gean, Po-Wu and Gelmetti, Vania and Genazzani, Armando A. and Geng, Jiefei and Genschik, Pascal and Gerner, Lisa and Gestwicki, Jason E. and Gewirtz, David A. and Ghavami, Saeid and Ghigo, Eric and Ghosh, Debabrata and Giammarioli, Anna Maria and Giampieri, Francesca and Giampietri, Claudia and Giatromanolaki, Alexandra and Gibbings, Derrick J. and Gibellini, Lara and Gibson, Spencer B. and Ginet, Vanessa and Giordano, Antonio and Giorgini, Flaviano and Giovannetti, Elisa and Girardin, Stephen E. and Gispert, Suzana and Giuliano, Sandy and Gladson, Candece L. and Glavic, Alvaro and Gleave, Martin and Godefroy, Nelly and Gogal, Robert M. and Gokulan, Kuppan and Goldman, Gustavo H. and Goletti, Delia and Goligorsky, Michael S. and Gomes, Aldrin V. and Gomes, Ligia C. and Gomez, Hernando and Gomez-Manzano, Candelaria and Gómez-Sánchez, Rubén and Gonçalves, Dawit Ap and Goncu, Ebru and Gong, Qingqiu and Gongora, Céline and Gonzalez, Carlos B. and Gonzalez-Alegre, Pedro and Gonzalez-Cabo, Pilar and González-Polo, Rosa Ana and Goping, Ing Swie and Gorbea, Carlos and Gorbunov, Nikolai V. and Goring, Daphne R. and Gorman, Adrienne M. and Gorski, Sharon M. and Goruppi, Sandro and Goto-Yamada, Shino and Gotor, Cecilia and Gottlieb, Roberta A. and Gozes, Illana and Gozuacik, Devrim and Graba, Yacine and Graef, Martin and Granato, Giovanna E. and Grant, Gary Dean and Grant, Steven and Gravina, Giovanni Luca and Green, Douglas R. and Greenhough, Alexander and Greenwood, Michael T. and Grimaldi, Benedetto and Gros, Frédéric and Grose, Charles and Groulx, Jean-Francois and Gruber, Florian and Grumati, Paolo and Grune, Tilman and Guan, Jun-Lin and Guan, Kun-Liang and Guerra, Barbara and Guillen, Carlos and Gulshan, Kailash and Gunst, Jan and Guo, Chuanyong and Guo, Lei and Guo, Ming and Guo, Wenjie and Guo, Xu-Guang and Gust, Andrea A. and Gustafsson, Åsa B. and Gutierrez, Elaine and Gutierrez, Maximiliano G. and Gwak, Ho-Shin and Haas, Albert and Haber, James E. and Hadano, Shinji and Hagedorn, Monica and Hahn, David R. and Halayko, Andrew J. and Hamacher-Brady, Anne and Hamada, Kozo and Hamai, Ahmed and Hamann, Andrea and Hamasaki, Maho and Hamer, Isabelle and Hamid, Qutayba and Hammond, Ester M. and Han, Feng and Han, Weidong and Handa, James T. and Hanover, John A. and Hansen, Malene and Harada, Masaru and Harhaji-Trajkovic, Ljubica and Harper, J. 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Robin and Higaki, Katsumi and Hilfiker, Sabine and Hill, Bradford G. and Hill, Joseph A. and Hill, William D. and Hino, Keisuke and Hofius, Daniel and Hofman, Paul and Höglinger, Günter U. and Höhfeld, Jörg and Holz, Marina K. and Hong, Yonggeun and Hood, David A. and Hoozemans, Jeroen Jm and Hoppe, Thorsten and Hsu, Chin and Hsu, Chin-Yuan and Hsu, Li-Chung and Hu, Dong and Hu, Guochang and Hu, Hong-Ming and Hu, Hongbo and Hu, Ming Chang and Hu, Yu-Chen and Hu, Zhuo-Wei and Hua, Fang and Hua, Ya and Huang, Canhua and Huang, Huey-Lan and Huang, Kuo-How and Huang, Kuo-Yang and Huang, Shile and Huang, Shiqian and Huang, Wei-Pang and Huang, Yi-Ran and Huang, Yong and Huang, Yunfei and Huber, Tobias B. and Huebbe, Patricia and Huh, Won-Ki and Hulmi, Juha J. and Hur, Gang Min and Hurley, James H. and Husak, Zvenyslava and Hussain, Sabah Na and Hussain, Salik and Hwang, Jung Jin and Hwang, Seungmin and Hwang, Thomas Is and Ichihara, Atsuhiro and Imai, Yuzuru and Imbriano, Carol and Inomata, Megumi and Into, Takeshi and Iovane, Valentina and Iovanna, Juan L. and Iozzo, Renato V. and Ip, Nancy Y. and Irazoqui, Javier E. and Iribarren, Pablo and Isaka, Yoshitaka and Isakovic, Aleksandra J. and Ischiropoulos, Harry and Isenberg, Jeffrey S. and Ishaq, Mohammad and Ishida, Hiroyuki and Ishii, Isao and Ishmael, Jane E. and Isidoro, Ciro and Isobe, Ken-Ichi and Isono, Erika and Issazadeh-Navikas, Shohreh and Itahana, Koji and Itakura, Eisuke and Ivanov, Andrei I. and Iyer, Anand Krishnan V. and Izquierdo, José M. and Izumi, Yotaro and Izzo, Valentina and Jäättelä, Marja and Jaber, Nadia and Jackson, Daniel John and Jackson, William T. and Jacob, Tony George and Jacques, Thomas S. and Jagannath, Chinnaswamy and Jain, Ashish and Jana, Nihar Ranjan and Jang, Byoung Kuk and Jani, Alkesh and Janji, Bassam and Jannig, Paulo Roberto and Jansson, Patric J. and Jean, Steve and Jendrach, Marina and Jeon, Ju-Hong and Jessen, Niels and Jeung, Eui-Bae and Jia, Kailiang and Jia, Lijun and Jiang, Hong and Jiang, Hongchi and Jiang, Liwen and Jiang, Teng and Jiang, Xiaoyan and Jiang, Xuejun and Jiang, Xuejun and Jiang, Ying and Jiang, Yongjun and Jiménez, Alberto and Jin, Cheng and Jin, Hongchuan and Jin, Lei and Jin, Meiyan and Jin, Shengkan and Jinwal, Umesh Kumar and Jo, Eun-Kyeong and Johansen, Terje and Johnson, Daniel E. and Johnson, Gail Vw and Johnson, James D. and Jonasch, Eric and Jones, Chris and Joosten, Leo Ab and Jordan, Joaquin and Joseph, Anna-Maria and Joseph, Bertrand and Joubert, Annie M. and Ju, Dianwen and Ju, Jingfang and Juan, Hsueh-Fen and Juenemann, Katrin and Juhász, Gábor and Jung, Hye Seung and Jung, Jae U. and Jung, Yong-Keun and Jungbluth, Heinz and Justice, Matthew J. and Jutten, Barry and Kaakoush, Nadeem O. and Kaarniranta, Kai and Kaasik, Allen and Kabuta, Tomohiro and Kaeffer, Bertrand and Kågedal, Katarina and Kahana, Alon and Kajimura, Shingo and Kakhlon, Or and Kalia, Manjula and Kalvakolanu, Dhan V. and Kamada, Yoshiaki and Kambas, Konstantinos and Kaminskyy, Vitaliy O. and Kampinga, Harm H. and Kandouz, Mustapha and Kang, Chanhee and Kang, Rui and Kang, Tae-Cheon and Kanki, Tomotake and Kanneganti, Thirumala-Devi and Kanno, Haruo and Kanthasamy, Anumantha G. and Kantorow, Marc and Kaparakis-Liaskos, Maria and Kapuy, Orsolya and Karantza, Vassiliki and Karim, Md Razaul and Karmakar, Parimal and Kaser, Arthur and Kaushik, Susmita and Kawula, Thomas and Kaynar, A. 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Sue and Menna-Barreto, Rubem Fs and Menon, Manoj B. and Meraz-Ríos, Marco A. and Merla, Giuseppe and Merlini, Luciano and Merlot, Angelica M. and Meryk, Andreas and Meschini, Stefania and Meyer, Joel N. and Mi, Man-Tian and Miao, Chao-Yu and Micale, Lucia and Michaeli, Simon and Michiels, Carine and Migliaccio, Anna Rita and Mihailidou, Anastasia Susie and Mijaljica, Dalibor and Mikoshiba, Katsuhiko and Milan, Enrico and Miller-Fleming, Leonor and Mills, Gordon B. and Mills, Ian G. and Minakaki, Georgia and Minassian, Berge A. and Ming, Xiu-Fen and Minibayeva, Farida and Minina, Elena A. and Mintern, Justine D. and Minucci, Saverio and Miranda-Vizuete, Antonio and Mitchell, Claire H. and Miyamoto, Shigeki and Miyazawa, Keisuke and Mizushima, Noboru and Mnich, Katarzyna and Mograbi, Baharia and Mohseni, Simin and Moita, Luis Ferreira and Molinari, Marco and Molinari, Maurizio and Møller, Andreas Buch and Mollereau, Bertrand and Mollinedo, Faustino and Mongillo, Marco and Monick, Martha M. and Montagnaro, Serena and Montell, Craig and Moore, Darren J. and Moore, Michael N. and Mora-Rodriguez, Rodrigo and Moreira, Paula I. and Morel, Etienne and Morelli, Maria Beatrice and Moreno, Sandra and Morgan, Michael J. and Moris, Arnaud and Moriyasu, Yuji and Morrison, Janna L. and Morrison, Lynda A. and Morselli, Eugenia and Moscat, Jorge and Moseley, Pope L. and Mostowy, Serge and Motori, Elisa and Mottet, Denis and Mottram, Jeremy C. and Moussa, Charbel E.-H. and Mpakou, Vassiliki E. and Mukhtar, Hasan and Mulcahy Levy, Jean M. and Muller, Sylviane and Muñoz-Moreno, Raquel and Muñoz-Pinedo, Cristina and Münz, Christian and Murphy, Maureen E. and Murray, James T. and Murthy, Aditya and Mysorekar, Indira U. and Nabi, Ivan R. and Nabissi, Massimo and Nader, Gustavo A. and Nagahara, Yukitoshi and Nagai, Yoshitaka and Nagata, Kazuhiro and Nagelkerke, Anika and Nagy, Péter and Naidu, Samisubbu R. and Nair, Sreejayan and Nakano, Hiroyasu and Nakatogawa, Hitoshi and Nanjundan, Meera and Napolitano, Gennaro and Naqvi, Naweed I. and Nardacci, Roberta and Narendra, Derek P. and Narita, Masashi and Nascimbeni, Anna Chiara and Natarajan, Ramesh and Navegantes, Luiz C. and Nawrocki, Steffan T. and Nazarko, Taras Y. and Nazarko, Volodymyr Y. and Neill, Thomas and Neri, Luca M. and Netea, Mihai G. and Netea-Maier, Romana T. and Neves, Bruno M. and Ney, Paul A. and Nezis, Ioannis P. and Nguyen, Hang Tt and Nguyen, Huu Phuc and Nicot, Anne-Sophie and Nilsen, Hilde and Nilsson, Per and Nishimura, Mikio and Nishino, Ichizo and Niso-Santano, Mireia and Niu, Hua and Nixon, Ralph A. and Njar, Vincent Co and Noda, Takeshi and Noegel, Angelika A. and Nolte, Elsie Magdalena and Norberg, Erik and Norga, Koenraad K. and Noureini, Sakineh Kazemi and Notomi, Shoji and Notterpek, Lucia and Nowikovsky, Karin and Nukina, Nobuyuki and Nürnberger, Thorsten and O'Donnell, Valerie B. and O'Donovan, Tracey and O'Dwyer, Peter J. and Oehme, Ina and Oeste, Clara L. and Ogawa, Michinaga and Ogretmen, Besim and Ogura, Yuji and Oh, Young J. and Ohmuraya, Masaki and Ohshima, Takayuki and Ojha, Rani and Okamoto, Koji and Okazaki, Toshiro and Oliver, F. 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Ashutosh and Rasmussen, Blake B. and Rasse, Tobias M. and Ratovitski, Edward A. and Rautou, Pierre-Emmanuel and Ray, Swapan K. and Razani, Babak and Reed, Bruce H. and Reggiori, Fulvio and Rehm, Markus and Reichert, Andreas S. and Rein, Theo and Reiner, David J. and Reits, Eric and Ren, Jun and Ren, Xingcong and Renna, Maurizio and Reusch, Jane Eb and Revuelta, Jose L. and Reyes, Leticia and Rezaie, Alireza R. and Richards, Robert I. and Richardson, Des R. and Richetta, Clémence and Riehle, Michael A. and Rihn, Bertrand H. and Rikihisa, Yasuko and Riley, Brigit E. and Rimbach, Gerald and Rippo, Maria Rita and Ritis, Konstantinos and Rizzi, Federica and Rizzo, Elizete and Roach, Peter J. and Robbins, Jeffrey and Roberge, Michel and Roca, Gabriela and Roccheri, Maria Carmela and Rocha, Sonia and Rodrigues, Cecilia Mp and Rodríguez, Clara I. and de Cordoba, Santiago Rodriguez and Rodriguez-Muela, Natalia and Roelofs, Jeroen and Rogov, Vladimir V. and Rohn, Troy T. and Rohrer, Bärbel and Romanelli, Davide and Romani, Luigina and Romano, Patricia Silvia and Roncero, M. 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A. and Vierstra, Richard D. and Vigneswaran, Nadarajah and Vij, Neeraj and Vila, Miquel and Villar, Margarita and Villar, Victor H. and Villarroya, Joan and Vindis, Cécile and Viola, Giampietro and Viscomi, Maria Teresa and Vitale, Giovanni and Vogl, Dan T. and Voitsekhovskaja, Olga V. and von Haefen, Clarissa and von Schwarzenberg, Karin and Voth, Daniel E. and Vouret-Craviari, Valérie and Vuori, Kristina and Vyas, Jatin M. and Waeber, Christian and Walker, Cheryl Lyn and Walker, Mark J. and Walter, Jochen and Wan, Lei and Wan, Xiangbo and Wang, Bo and Wang, Caihong and Wang, Chao-Yung and Wang, Chengshu and Wang, Chenran and Wang, Chuangui and Wang, Dong and Wang, Fen and Wang, Fuxin and Wang, Guanghui and Wang, Hai-Jie and Wang, Haichao and Wang, Hong-Gang and Wang, Hongmin and Wang, Horng-Dar and Wang, Jing and Wang, Junjun and Wang, Mei and Wang, Mei-Qing and Wang, Pei-Yu and Wang, Peng and Wang, Richard C. and Wang, Shuo and Wang, Ting-Fang and Wang, Xian and Wang, Xiao-Jia and Wang, Xiao-Wei and Wang, Xin and Wang, Xuejun and Wang, Yan and Wang, Yanming and Wang, Ying and Wang, Ying-Jan and Wang, Yipeng and Wang, Yu and Wang, Yu Tian and Wang, Yuqing and Wang, Zhi-Nong and Wappner, Pablo and Ward, Carl and Ward, Diane McVey and Warnes, Gary and Watada, Hirotaka and Watanabe, Yoshihisa and Watase, Kei and Weaver, Timothy E. and Weekes, Colin D. and Wei, Jiwu and Weide, Thomas and Weihl, Conrad C. and Weindl, Günther and Weis, Simone Nardin and Wen, Longping and Wen, Xin and Wen, Yunfei and Westermann, Benedikt and Weyand, Cornelia M. and White, Anthony R. and White, Eileen and Whitton, J. 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Estrada, A. F. and Muruganandam, G. and Prescianotto-Baschong, C. and Spang, A.. (2015) The ArfGAP2/3 Glo3 and ergosterol collaborate in transport of a subset of cargoes. Biology Open, 4 (7). pp. 792-802.

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Spang, A.. (2015) A small GTPase involved in mitochondrial morphology and function. Biochemical Society Transactions, 43 (1). pp. 108-110.

Spang, A.. (2015) Anniversary of the discovery of sec mutants by Novick and Schekman. Molecular Biology of the Cell, 26 (10). pp. 1783-1785.

Spang, Anne. (2015) The road not taken: Less traveled roads from the TGN to the plasma membrane. Membranes, Vol. 5, H. 1. pp. 84-98.

Zhu, M. and Wu, G. and Li, Y. X. and Stevens, J. K. and Fan, C. X. and Spang, A. and Dong, M. Q.. (2015) Serum- and Glucocorticoid-Inducible Kinase-1 (SGK-1) Plays a Role in Membrane Trafficking in Caenorhabditis elegans. PLoS ONE, 10 (6). e0130778.

14 October 2014

Spang, Anne. (2014) Die Biomedizin im Umbruch.


Ackema, K. B. and Hench, J. and Böckler, S. and Wang, S. C. and Sauder, U. and Mergentaler, H. and Westermann, B. and Bard, F. and Frank, S. and Spang, A.. (2014) The small GTPase Arf1 modulates mitochondrial morphology and function. The EMBO Journal, 33 (22). pp. 2659-2675.

Ritz, A. M. and Trautwein, M. and Grassinger, F. and Spang, A.. (2014) The Prion-like domain in the exomer-dependent cargo Pin2 serves as a trans-Golgi retention motif. Cell Reports, 7 (1). pp. 249-260.

Ritz, Alicja Maria. Investigation of the regulation of exocytosis and endocytosis pathways in "Saccharomyces cerevisiae". 2014, Doctoral Thesis, University of Basel, Faculty of Science.

Solinger, J. A. and Poteryaev, D. and Spang, A.. (2014) Application of RNAi Technology and Fluorescent Protein Markers to Study Membrane Traffic in C. elegans. Methods in Molecular Biology, 1174. pp. 329-347.

Solinger, J. A. and Spang, A.. (2014) Loss of the Sec1/Munc18 family proteins VPS-33.2 and VPS-33.1 bypass a block in endosome maturation in C. elegans. Molecular Biology of the Cell, 25 (24). pp. 3909-3925.

Weidner, J. and Wang, C. and Prescianotto-Baschong, C. and Estrada, Al. F. and Spang, A.. (2014) The polysome-associated proteins Scp160 and Bfr1 prevent P body formation under normal growth conditions. Journal of Cell Science, 127 (5). pp. 1-35.

Weidner, Julie. Regulation of processing body formation in the budding yeast "Saccharomyces cerevisiae". 2014, Doctoral Thesis, University of Basel, Faculty of Science.

19 October 2013

Spang, Anne. (2013) Das geheime Leben der Zelle - Anne Spang im Gespräch.

14 October 2013

Spang, Anne and Straumann, Felix. (14 October 2013) Nobelpreis. Tages-Anzeiger. p. 10.

12 October 2013

Spang, Anne and Bochsler, Katharina and Biber, Pascal. (2013) Reaktionen der Nobelpreis-Gewinner.

11 October 2013

Spang, Anne. (2013) Der Tanz der Proteine.


Ackema, K. B. and Sauder, U. and Solinger, J. A. and Spang, A.. (2013) The ArfGEF GBF-1 Is Required for ER Structure, Secretion and Endocytic Transport in C. elegans. PLoS ONE, Vol. 8, H. 6 , e67076.

Hong, W. and Spang, A.. (2013) Precise and timely delivery of proteins within cells continues to be an exciting area of cell biology. Molecular Biology of the Cell, 24 (6). p. 670.

Sacristan, C. and Manzano-Lopez, J. and Reyes, A. and Spang, A. and Muniz, M. and Roncero, C.. (2013) Oligomerization of the chitin synthase Chs3 is monitored at the Golgi and affects its endocytic recycling. Molecular Microbiology, 90 (2). pp. 252-266.

Solinger, J. A. and Spang, A.. (2013) Tethering complexes in the endocytic pathway : CORVET and HOPS. FEBS Journal, 280 (12). pp. 2743-2757.

Spang, A.. (2013) Traffic COPs: rules of detection. The EMBO Journal, 32 (7). pp. 915-916.

Spang, Anne. (2013) Retrograde traffic from the Golgi to the endoplasmic reticulum. Cold Spring Harbor Perspectives in Biology, 5 (6). pp. 313-322.

Stevens, J. and Spang, A.. (2013) N-Glycosylation Is Required for Secretion and Mitosis in C. elegans. PLoS ONE, 8 (5). e63687.


Diefenbacher, Melanie. Analyses of vesicular transport within the endoplasmic reticulum-golgi interface in "Saccharomyces cerevisiae". 2012, Doctoral Thesis, University of Basel, Faculty of Science.

Rockenbauch, U. and Ritz, A. M. and Sacristan, C. and Roncero, C. and Spang, A.. (2012) The complex interactions of Chs5p, the ChAPs and the cargo Chs3p. Molecular Biology of the Cell, 23 (22). pp. 4402-4415.

Rockenbauch, Uli. A specialized exit route: specific recognition and cell cycle-dependent transport of exomer-dependent cargoes in "Saccharomyces cerevisiae". 2012, Doctoral Thesis, University of Basel, Faculty of Science.

Spang, A.. (2012) The DSL1 complex : the smallest but not the least CATCHR. Traffic, 13 (7). pp. 908-913.


Diefenbacher, M. and Thorsteinsdottir, H. and Spang, A.. (2011) The DSL1 tethering complex actively participates in SNARE complex assembly at the endoplasmic reticulum in S. cerevisiae. Journal of Biological Chemistry, 286 (28). pp. 25027-25038.

Johannessen, M. and Walquist, M. and Gerits, N. and Dragset, M. and Spang, A. and Moens, U.. (2011) BKV Agnoprotein Interacts with α-Soluble N-Ethylmaleimide-Sensitive Fusion Attachment Protein, and Negatively Influences Transport of VSVG-EGFP. PLoS ONE, Vol. 6, H. 9 , e24489.

Kilchert, C. and Spang, A.. (2011) Cotranslational transport of ABP140 mRNA to the distal pole of S. cerevisiae. The EMBO journal, 30 (17). pp. 3567-3580.

Spang, A.. (2011) Signalling gets sorted by retromer. The EMBO Journal, 30 (15). pp. 2988-2989.

Spang, A.. (2011) Zellbiologie : über die Rolle der Endozytose bei Krankheiten. BIOspektrum, 17 (6). pp. 626-628.

Zanolari, B. and Rockenbauch, U. and Trautwein, M. and Clay, L. and Barral, Y. and Spang, A.. (2011) Transport to the plasma membrane is regulated differently early and late in the cell cycle in Saccharomyces cerevisiae. Journal of Cell Science, 124 (7). pp. 1055-1066.


Kilchert, C. and Weidner, J. and Prescianotto-Baschong, C. and Spang, A.. (2010) Defects in the Secretory Pathway and High Ca2+ Induce Multiple P-bodies. Molecular Biology of the Cell, 21 (15). pp. 2624-2638.

Kilchert, Cornelia. mRNA localization and turnover in mutants of the small GTPase Arf1p of "Saccharomyces cerevisiae". 2010, Doctoral Thesis, University of Basel, Faculty of Science.

Malone, J. G. and Jaeger, T. and Spangler, C. and Ritz, D. and Spang, A. and Arrieumerlou, C. and Kaever, V. and Landmann, R. and Jenal, U.. (2010) YfiBNR Mediates Cyclic di-GMP Dependent Small Colony Variant Formation and Persistence in Pseudomonas aeruginosa. PLoS Pathogens, 6 (3). e1000804.

Poteryaev, D. and Datta, S. and Ackema, K. and Zerial, M. and Spang, A.. (2010) Identification of the Switch in Early-to-Late Endosome Transition. Cell, 141 (3). pp. 497-508.

Rodriguez, F. and Spang, A.. (2010) Studying the ArfGAP-dependent conformational changes in SNAREs. Methods in Molecular Biology, 619. pp. 377-387.

Spang, A. and Shiba, Y. and Randazzo, P. A.. (2010) Arf GAPs: Gatekeepers of vesicle generation. FEBS Letters, 584 (12). pp. 2646-2651.


Schindler, C. and Rodriguez, F. and Poon, P. P. and Singer, R. A. and Johnston, G. C. and Spang, A.. (2009) The GAP Domain and the SNARE, Coatomer and Cargo Interaction Region of the ArfGAP2/3 Glo3 are Sufficient for Glo3 Function. Traffic, 10 (9). pp. 1362-1375.

Spang, A.. (2009) On the fate of early endosomes. Biological Chemistry, 390 (8). pp. 753-759.

Spang, A.. (2009) On vesicle formation and tethering in the ER-Golgi shuttle. Current Opinion in Cell Biology, 21 (4). pp. 531-536.


Aguilera-Romero, A. and Kaminska, J. and Spang, A. and Riezman, H. and Muniz, M.. (2008) The yeast p24 complex is required for the formation of COPI retrograde transport vesicles from the Golgi apparatus. The Journal of cell biology, Vol. 180, H. 4. pp. 713-720.

Dhonukshe, P. and Grigoriev, I. and Fischer, R. and Tominaga, M. and Robinson, D. G. and Hasek, J. and Paciorek, T. and Petrasek, J. and Seifertova, D. and Tejos, R. and Meisel, L. A. and Zazimalova, E. and Gadella, T. W. J. J. and Stierhof, Y. -D. and Ueda, T. and Oiwa, K. and Akhmanova, A. and Brock, R. and Spang, A. and Friml, J.. (2008) Auxin transport inhibitors impair vesicle motility and actin cytoskeleton dynamics in diverse eukaryotes. Proceedings of the National Academy of Sciences of the United States of America, 105 (11). pp. 4489-4494.

Herrmann, Johannes M. and Spang, Anne. (2008) Freight management in the cell : current aspects of intracellular membrane trafficking. Methods in Molecular Biology, 457. pp. 3-12.

Kamena, F. and Diefenbacher, M. and Kilchert, C. and Schwarz, H. and Spang, A.. (2008) Ypt1p is essential for retrograde Golgi-ER transport and for Golgi maintenance in S. cerevisiae. Journal of Cell Science, 121 (8). pp. 1293-1302.

Mesecke, N. and Spang, A. and Deponte, M. and Herrmann, J. M.. (2008) A novel group of glutaredoxins in the cis-Golgi critical for oxidative stress resistance. Molecular Biology of the Cell, 19 (6). pp. 2673-2680.

Poon, P. P. and Spang, A.. (2008) Vesicular Transport : EnSNAREd by GAPs. Current Biology, 18 (22). R1053-R1054.

Poteryaev, Dmitry and Spang, Anne. (2008) Application of RNAi technology and fluorescent protein markers to study membrane traffic in Caenorhabditis elegans. Methods in Molecular Biology, 440. pp. 331-347.

Spang, A.. (2008) Membrane traffic in the secretory pathway : the life cycle of a transport vesicle. Cellular and Molecular Life Sciences, 65 (18). pp. 2781-2789.


Bembenek, J. N. and Richie, C. T. and Squirrell, J. M. and Campbell, J. M. and Eliceiri, K. W. and Poteryaev, D. and Spang, A. and Golden, A. and White, J. G.. (2007) Cortical granule exocytosis in C. elegans is regulated by cell cycle components including separase. Development, 134 (21). pp. 3837-3848.

Michelsen, K. and Schmid, V. and Metz, J. and Heusser, K. and Liebel, U. and Schwede, T. and Spang, A. and Schwappach, B.. (2007) Novel cargo-binding site in the beta and delta subunits of coatomer. The Journal of cell biology, Vol. 179, H. 2. pp. 209-217.

Poteryaev, D. and Fares, H. and Bowerman, B. and Spang, A.. (2007) Caenorhabditis elegans SAND-1 is essential for RAB-7 function in endosomal traffic. The EMBO Journal, 26 (2). pp. 301-312.

Schindler, C. and Spang, A.. (2007) Interaction of SNAREs with ArfGAPs precedes recruitment of Sec18p/NSF. Molecular Biology of the Cell, 18 (8). pp. 2852-2863.

Schmutz, C. and Stevens, J. and Spang, A.. (2007) Functions of the novel RhoGAP proteins RGA-3 and RGA-4 in the germ line and in the early embryo of C. elegans. Development, 134 (19). pp. 3495-3505.

Schmutz, Cornelia. Characterization of the RhoGAP proteins RGA-3 and RGA-4 and the centrosomal protein SAS-5 in the early "Caenorhabditis elegans" embryo. 2007, Doctoral Thesis, University of Basel, Faculty of Science.


Macara, I. G. and Spang, A.. (2006) Closing the GAP between polarity and vesicle transport. Cell, 125 (3). pp. 419-421.

Robinson, M. and Poon, P. P. and Schindler, C. and Murray, L. E. and Kama, R. and Gabriely, G. and Singer, R. A. and Spang, A. and Johnston, G. C. and Gerst, J. E.. (2006) The Gcs1 Arf-GAP mediates Snc1,2 v-SNARE retrieval to the Golgi in yeast. Molecular Biology of the Cell, 17 (4). pp. 1845-1858.

Stavru, F. and Hulsmann, B. B. and Spang, A. and Hartmann, E. and Cordes, V. C. and Gorlich, D.. (2006) NDC1 : a crucial membrane-integral nucleoporin of metazoan nuclear pore complexes. The Journal of cell biology, Vol. 173, H. 4. pp. 509-519.

Trautwein, M. and Schindler, C. and Gauss, R. and Dengjel, J. and Hartmann, E. and Spang, A.. (2006) Arf1p, Chs5p and the ChAPs are required for export of specialized cargo from the Golgi. The EMBO Journal, 25 (5). pp. 943-954.


Forde, A.. (2005) Germany: deciphering cellular processes : [interview with A. Spang]. Science, Vol. 310, no. 5747. pp. 519-520.

Gauss, R. and Trautwein, M. and Sommer, T. and Spang, A.. (2005) New modules for the repeated internal and N-terminal epitope tagging of genes in Saccharomyces cerevisiae. Yeast, 22 (1). pp. 1-12.

Luedeke, C. and Frei, S. B. and Sbalzarini, I. and Schwarz, H. and Spang, A. and Barral, Y.. (2005) Septin-dependent compartmentalization of the endoplasmic reticulum during yeast polarized growth. The Journal of cell biology, Vol. 169, H. 6. pp. 897-908.

Poteryaev, D. and Spang, A.. (2005) A role of SAND-family proteins in endocytosis. Biochemical Society Transactions, 33 (4). pp. 606-608.

Poteryaev, D. and Squirrell, J. M. and Campbell, J. M. and White, J. G. and Spang, A.. (2005) Involvement of the actin cytoskeleton and homotypic membrane fusion in ER dynamics in Caenorhabditis elegans. Molecular Biology of the Cell, 16 (5). pp. 2139-2153.

Schmutz, C. and Spang, A.. (2005) Knockdown of the centrosomal component SAS-5 results in defects in nuclear morphology in Caenorhabditis elegans. European Journal of Cell Biology, 84 (1). pp. 75-82.

Wang, H. and Spang, A. and Sullivan, M. A. and Hryhorenko, J. and Hagen, F. K.. (2005) The terminal phase of cytokinesis in the Caenorhabditis elegans early embryo requires protein glycosylation. Molecular Biology of the Cell, 16 (9). pp. 4202-4213.

Weinberger, A. and Kamena, F. and Kama, R. and Spang, A. and Gerst, J. E.. (2005) Control of Golgi morphology and function by Sed5 t-SNARE phosphorylation. Molecular Biology of the Cell, 16 (10). pp. 4918-4930.


Kamena, F. and Spang, A.. (2004) Tip20p prohibits back-fusion of COPII vesicles with the endoplasmic reticulum. Science, 304 (5668). pp. 286-289.

Lewis, S. M. and Poon, P. P. and Singer, R. A. and Johnston, G. C. and Spang, A.. (2004) The ArfGAP Glo3 is required for the generation of COPI vesicles. Molecular Biology of the Cell, 15 (9). pp. 4064-4072.

Spang, A.. (2004) Vesicle transport : a close collaboration of Rabs and effectors. Current Biology, 14 (1). R33-R34.

Trautwein, M. and Dengjel, J. and Schirle, M. and Spang, A.. (2004) Arf1p provides an unexpected link between COPI vesicles and mRNA in Saccharomyces cerevisiae. Molecular Biology of the Cell, 15 (11). pp. 5021-5037.


Sandmann, T. and Herrmann, J. M. and Dengjel, J. and Schwarz, H. and Spang, A.. (2003) Suppression of coatomer mutants by a new protein family with COPI and COPII binding motifs in Saccharomyces cerevisiae. Molecular Biology of the Cell, 14 (8). pp. 3097-3113.


Rein, U. and Andag, U. and Duden, R. and Schmitt, H. D. and Spang, A.. (2002) ARF-GAP-mediated interaction between the ER-Golgi v-SNAREs and the COPI coat. The Journal of cell biology, Vol. 157, H. 3. pp. 395-404.

Spang, A.. (2002) ARF1 regulatory factors and COPI vesicle formation. Current Opinion in Cell Biology, 14 (4). pp. 423-427.


Spang, A.. (2001) Hefe und Wurm : Ebenbilder des Menschen? BIOforum, 7/8. pp. 498-499.

Spang, A. and Herrmann, J. M. and Hamamoto, S. and Schekman, R.. (2001) The ADP ribosylation factor-nucleotide exchange factors Gea1p and Gea2p have overlapping, but not redundant functions in retrograde transport from the Golgi to the endoplasmic reticulum. Molecular Biology of the Cell, 12 (4). pp. 1035-1045.


Todorow, Z. and Spang, A. and Carmack, E. and Yates, J. and Schekman, R.. (2000) Active recycling of yeast Golgi mannosyltransferase complexes through the endoplasmic reticulum. Proceedings of the National Academy of Sciences of the United States of America, 97 (25). pp. 13643-13648.


Poon, P. P. and Cassel, D. and Spang, A. and Rotman, M. and Pick, E. and Singer, R. A. and Johnston, G. C.. (1999) Retrograde transport from the yeast Golgi is mediated by two ARF GAP proteins with overlapping function. The EMBO Journal, 18 (3). pp. 555-564.

Springer, S. and Spang, A. and Schekman, R.. (1999) A primer on vesicle budding. Cell, 97 (2). pp. 145-148.


Spang, A. and Matsuoka, K. and Hamamoto, S. and Schekman, R. and Orci, L.. (1998) Coatomer, Arf1p, and nucleotide are required to bud coat protein complex I-coated vesicles from large synthetic liposomes. Proceedings of the National Academy of Sciences of the United States of America, 95 (19). pp. 11199-11204.

Spang, A. and Schekman, R.. (1998) Reconstitution of retrograde transport from the Golgi to the ER in vitro. Journal of Cell Biology, 143 (3). pp. 589-599.


Geissler, S. and Pereira, G. and Spang, A. and Knop, M. and Soues, S. and Kilmartin, J. and Schiebel, E.. (1996) The spindle pole body component Spc98p interacts with the gamma-tubulin-like Tub4p of Saccharomyces cerevisiae at the sites of microtubule attachment. The EMBO Journal, 15 (15). pp. 3899-3911.

Spang, A. and Geissler, S. and Grein, K. and Schiebel, E.. (1996) gamma-Tubulin-like Tub4p of Saccharomyces cerevisiae is associated with the spindle pole body substructures that organize microtubules and is required for mitotic spindle formation. Journal of Cell Biology, 134 (2). pp. 429-441.

Spang, A. and Grein, K. and Schiebel, E.. (1996) The spacer protein Spc110p targets calmodulin to the central plaque of the yeast spindle pole body. Journal of Cell Science, 109 (9). pp. 2229-2237.

Wiech, H. and Geier, B. M. and Paschke, T. and Spang, A. and Grein, K. and Steinkotter, J. and Melkonian, M. and Schiebel, E.. (1996) Characterization of green alga, yeast, and human centrins : Specific subdomain features determine functional diversity. Journal of Biological Chemistry, 271 (37). pp. 22453-22461.


Spang, A. and Courtney, I. and Grein, K. and Matzner, M. and Schiebel, E.. (1995) The Cdc31p-binding protein Kar1p is a component of the half bridge of the yeast spindle pole body. Journal of Cell Biology, 128 (5). pp. 863-877.


Spang, A. and Courtney, I. and Fackler, U. and Matzner, M. and Schiebel, E.. (1993) The calcium-binding protein cell division cycle 31 of Saccharomyces cerevisiae is a component of the half bridge of the spindle pole body. Journal of Cell Biology, 123 (2). pp. 405-416.


Chauvet, J. and Rouille, Y. and Spang, A. and Cardine, A. M. and Acher, R.. (1992) Processing endopeptidase deficiency in neurohypophysial secretory granules of the diabetes insipidus (Brattleboro) rat. Bioscience Reports, 12 (6). pp. 445-451.

Rouille, Y. and Spang, A. and Chauvet, J. and Acher, R.. (1992) A neurosecretory granule Lys-Arg Ca(2+)-dependent endopeptidase putatively involved in prooxytocin and provasopressin processing. Neuropeptides, 22 (4). pp. 223-228.

Rouille, Y. and Spang, A. and Chauvet, J. and Acher, R.. (1992) Evidence for distinct dibasic processing endopeptidases with Lys-Arg and Arg-Arg specificities in neurohypophysial secretory granules. Biochemical and Biophysical Research Communications, 183 (1). pp. 128-137.

This list was generated on Sun May 26 03:56:16 2024 CEST.