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Items where Author is "Sorg, I."

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Number of items: 17.

2011

Kim, M. L. and Sorg, I. and Arrieumerlou, C.. (2011) Endocytosis-Independent Function of Clathrin Heavy Chain in the Control of Basal NF-kappaB Activation. PLoS ONE, Vol. 6, H. 2 , e17158.

Reiterer, V. and Grossniklaus, L. and Tschon, T. and Kasper, C. A. and Sorg, I. and Arrieumerlou, C.. (2011) Shigella flexneri type III secreted effector OspF reveals new crosstalks of proinflammatory signaling pathways during bacterial infection. Cellular signalling, Vol. 23, H. 7. pp. 1188-1196.

2010

Kasper, C. A. and Sorg, I. and Schmutz, C. and Tschon, T. and Wischnewski, H. and Kim, M. L. and Arrieumerlou, C.. (2010) Cell-Cell Propagation of NF-kappaB Transcription Factor and MAP Kinase Activation Amplifies Innate Immunity against Bacterial Infection. Immunity, Vol. 33, H. 5. pp. 804-816.

Diepold, A. and Amstutz, M. and Abel, S. and Sorg, I. and Jenal, U. and Cornelis, G. R.. (2010) Deciphering the assembly of the Yersinia type III secretion injectisome. The EMBO journal, 29 (11). pp. 1928-1940.

2009

Wiesand, U. and Sorg, I. and Amstutz, M. and Wagner, S. and van den Heuvel, J. and Luhrs, T. and Cornelis, G. R. and Heinz, D. W.. (2009) Structure of the Type III Secretion Recognition Protein YscU from Yersinia enterocolitica. Journal of molecular biology, Vol. 385, H. 3. pp. 854-866.

Sorg, I. and Cornelis, G. R.. (2009) The Type III Secretion System. In: Bacterial secreted proteins. Norfolk, pp. 93-116.

Wagner, S. and Sorg, I. and Degiacomi, M. and Journet, L. and Peraro, M. D. and Cornelis, G. R.. (2009) The helical content of the YscP molecular ruler determines the length of the Yersinia injectisome. Molecular microbiology, Vol. 71, H. 3. pp. 692-701.

2008

Buttner, C. R. and Sorg, I. and Cornelis, G. R. and Heinz, D. W. and Niemann, H. H.. (2008) Structure of the Yersinia enterocolitica type III secretion translocator chaperone SycD. Journal of molecular biology, Vol. 375, H. 4. pp. 997-1012.

2007

Broz, P. and Mueller, C. A. and Muller, S. A. and Philippsen, A. and Sorg, I. and Engel, A. and Cornelis, G. R.. (2007) Function and molecular architecture of the Yersinia injectisome tip complex. Molecular microbiology, Vol. 65, H. 5. pp. 1311-1320.

Sorg, I. and Wagner, S. and Amstutz, M. and Muller, S. A. and Broz, P. and Lussi, Y. and Engel, A. and Cornelis, G. R.. (2007) YscU recognizes translocators as export substrates of the Yersinia injectisome. The EMBO journal, Vol. 26, H. 12. pp. 3015-3024.

2006

Cornelis, G. R. and Agrain, C. and Sorg, I.. (2006) Length control of extended protein structures in bacteria and bacteriophages. Current Opinion in Microbiology, Vol. 9, H. 2. pp. 201-206.

Letzelter, M. and Sorg, I. and Mota, L. J. and Meyer, S. and Stalder, J. and Feldman, M. and Kuhn, M. and Callebaut, I. and Cornelis, G. R.. (2006) The discovery of SycO highlights a new function for type III secretion effector chaperones. The EMBO journal, Vol. 25, H. 13. pp. 3223-3233.

2005

Mota, L. J. and Journet, L. and Sorg, I. and Agrain, C. and Cornelis, G. R.. (2005) Bacterial injectisomes: needle length does matter. Science, Vol. 307, no. 5713. p. 1278.

Agrain, C. and Callebaut, I. and Journet, L. and Sorg, I. and Paroz, C. and Mota, L. J. and Cornelis, G. R.. (2005) Characterization of a Type III secretion substrate specificity switch (T3S4) domain in YscP from Yersinia enterocolitica. Molecular microbiology, Vol. 56, H. 1. pp. 54-67.

Agrain, C. and Sorg, I. and Paroz, C. and Cornelis, G. R.. (2005) Secretion of YscP from Yersinia enterocolitica is essential to control the length of the injectisome needle but not to change the type III secretion substrate specificity. Molecular microbiology, Vol. 57, H. 5. pp. 1415-1427.

Mueller, C. A. and Broz, P. and Muller, S. A. and Ringler, P. and Erne-Brand, F. and Sorg, I. and Kuhn, M. and Engel, A. and Cornelis, G. R.. (2005) The V-antigen of Yersinia forms a distinct structure at the tip of injectisome needles. Science, Vol. 310, H. 5748. pp. 674-676.

Mota, L. J. and Sorg, I. and Cornelis, G. R.. (2005) Type III secretion : the bacteria-eukaryotic cell express. FEMS microbiology letters, Vol. 252, H. 1. pp. 1-10.

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