Shigella IpaA Binding to Talin Stimulates Filopodial Capture and Cell Adhesion
Author(s) -
Cesar ValenciaGallardo,
Charles BouNader,
Daniel-Isui Aguilar-Salvador,
Nathalie Carayol,
Nicole Quenech’Du,
Ludovic Pecqueur,
HaJeung Park,
Marc Fontecave,
Tina Izard,
Guy Tran Van Nhieu
Publication year - 2019
Publication title -
cell reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.264
H-Index - 154
eISSN - 2639-1856
pISSN - 2211-1247
DOI - 10.1016/j.celrep.2018.12.091
Subject(s) - vinculin , focal adhesion , microbiology and biotechnology , chemistry , adhesion , binding site , ferm domain , plasma protein binding , yersinia , biophysics , biology , biochemistry , membrane protein , phosphorylation , bacteria , membrane , genetics , organic chemistry , integral membrane protein
The Shigella type III effector IpaA contains three binding sites for the focal adhesion protein vinculin (VBSs), which are involved in bacterial invasion of host cells. Here, we report that IpaA VBS3 unexpectedly binds to talin. The 2.5 Å resolution crystal structure of IpaA VBS3 in complex with the talin H1-H4 helices shows a tightly folded α-helical bundle, which is in contrast to the bundle unraveling upon vinculin interaction. High-affinity binding to talin H1-H4 requires a core of hydrophobic residues and electrostatic interactions conserved in talin VBS H46. Remarkably, IpaA VBS3 localizes to filopodial distal adhesions enriched in talin, but not vinculin. In addition, IpaA VBS3 binding to talin was required for filopodial adhesions and efficient capture of Shigella. These results point to the functional diversity of VBSs and support a specific role for talin binding by a subset of VBSs in the formation of filopodial adhesions.
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