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2022Sauter, Nora and Sangermani, Matteo and Hug, Isabelle and Jenal, Urs and Pfohl, Thomas. (2022) Bacteria-on-a-bead: probing the hydrodynamic interplay of dynamic cell appendages during cell separation. Communications biology, 5 (1). p. 1093. 2019Laventie, Benoît-Joseph and Sangermani, Matteo and Estermann, Fabienne and Manfredi, Pablo and Planes, Rémi and Hug, Isabelle and Jaeger, Tina and Meunier, Etienne and Broz, Petr and Jenal, Urs. (2019) A surface-induced asymmetric program promotes tissue colonization by Pseudomonas aeruginosa. Cell host & microbe, 25 (1). pp. 140-152.E6. Jenal, Urs and Sangermani, Matteo and Hug, Isabelle and Sauter, Nora and Pfohl, Thomas. (2019) Tad pili play a dynamic role in Caulobacter crescentus surface colonization. bioRxiv. p. 1. 2017Sprecher, Kathrin S. and Hug, Isabelle and Nesper, Jutta and Potthoff, Eva and Mahi, Mohamed-Ali and Sangermani, Matteo and Kaever, Volkhard and Schwede, Torsten and Vorholt, Julia and Jenal, Urs. (2017) Cohesive Properties of the Caulobacter crescentus Holdfast Adhesin Are Regulated by a Novel c-di-GMP Effector Protein. mBio, 8 (2). e00294-17. Nesper, Jutta and Hug, Isabelle and Kato, Setsu and Hee, Chee-Seng and Habazettl, Judith Maria and Manfredi, Pablo and Grzesiek, Stephan and Schirmer, Tilman and Emonet, Thierry and Jenal, Urs. (2017) Cyclic di-GMP differentially tunes a bacterial flagellar motor through a novel class of CheY-like regulators. eLife, 6. e28842. Hug, Isabelle and Deshpande, Siddharth and Sprecher, Kathrin S. and Pfohl, Thomas and Jenal, Urs. (2017) Second messenger-mediated tactile response by a bacterial rotary motor. Science, 358 (6362). pp. 531-534. 2013Abel, S. and Bucher, T. and Nicollier, M. and Hug, I. and Kaever, V. and Abel Zur Wiesch, P. and Jenal, U.. (2013) Bi-modal distribution of the second messenger c-di-GMP controls cell fate and asymmetry during the caulobacter cell cycle. PLoS genetics, Vol. 9, H. 9 , e1003744. 2012Hardwick, S. W. and Gubbey, T. and Hug, I. and Jenal, U. and Luisi, B. F.. (2012) Crystal structure of Caulobacter crescentus polynucleotide phosphorylase reveals a mechanism of RNA substrate channelling and RNA degradosome assembly. Biology Open, 2 (4). p. 120028. |