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Vinculin binding in its closed conformation by a helix addition mechanism
Author(s) -
Tran Van Nhieu Guy,
Izard Tina
Publication year - 2007
Publication title -
the embo journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.484
H-Index - 392
eISSN - 1460-2075
pISSN - 0261-4189
DOI - 10.1038/sj.emboj.7601863
Subject(s) - vinculin , biophysics , biology , actin , conformational change , microbiology and biotechnology , cytoskeleton , helix (gastropod) , helix bundle , protein structure , biochemistry , focal adhesion , signal transduction , ecology , snail , cell
Vinculin links integrin receptors to the actin cytoskeleton by binding to talin. Vinculin is held in an inactive, closed‐clamp conformation through hydrophobic interactions between its head and tail domains, and vinculin activation has long been thought to be dependent upon severing the head–tail interaction. Talin, α‐actinin, and the invasin IpaA of Shigella flexneri sever vinculin's head–tail interaction by inserting an α‐helix into vinculin's N‐terminal four‐helical bundle, provoking extensive conformational changes by a helical bundle conversion mechanism; these alterations in vinculin structure displace its tail domain, allowing vinculin to bind to its other partners. IpaA harbors two juxtaposed α‐helical vinculin‐binding sites (VBS) in its C‐terminus. Here, we report that the lower affinity VBS of IpaA can also bind to the adjacent C‐terminal four‐helical bundle of vinculin's head domain through a helix addition mechanism. These hydrophobic interactions do not alter the conformation of this helical bundle, and the architecture of the complex suggests that IpaA can simultaneously interact with both of the four‐helical bundle domains of vinculin's N‐terminus to stabilize vinculin–IpaA interactions.

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