4.8 Article

A novel membrane-dependent on/off switch mechanism of talin FERM domain at sites of cell adhesion

期刊

CELL RESEARCH
卷 22, 期 11, 页码 1533-1545

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/cr.2012.97

关键词

cell adhesion; FERM domain; integrin signaling; crystallography; NMR

资金

  1. [NIH GM62823]
  2. [NIH P01HL073311]
  3. [2011CB911101]

向作者/读者索取更多资源

The activation of heterodimeric (alpha/beta) integrin transmembrane receptors by cytosolic protein talin is crucial for regulating diverse cell-adhesion-dependent processes, including blood coagulation, tissue remodeling, and cancer metastasis. This process is triggered by the coincident binding of N-terminal FERM (four-point-one-protein/ezrin/radixin/moesin) domain of talin (talin-FERM) to the inner membrane surface and integrin beta cytoplasmic tail, but how these binding events are spatiotemporally regulated remains obscure. Here we report the crystal structure of a dormant talin, revealing how a C-terminal talin rod segment (talin-RS) self-masks a key integrin-binding site on talin-FERM via a large interface. Unexpectedly, the structure also reveals a distinct negatively charged surface on talin-RS that electrostatically hinders the talin-FERM binding to the membrane. Such a dual inhibitory topology for talin is consistent with the biochemical and functional data, but differs significantly from a previous model. We show that upon enrichment with phosphotidylinositol-4,5-bisphosphate (PIP2) - a known talin activator, membrane strongly attracts a positively charged surface on talin-FERM and simultaneously repels the negatively charged surface on talin-RS. Such an electrostatic pull-push process promotes the relief of the dual inhibition of talin-FERM, which differs from the classic steric clash model for conventional PIP2-induced FERM domain activation. These data therefore unravel a new type of membrane-dependent FERM domain regulation and illustrate how it mediates the talin on/off switches to regulate integrin transmembrane signaling and cell adhesion.

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