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Molecular mechanism of vinculin activation and nanoscale spatial organization in focal adhesions.

Nature cell biology | 2015

Focal adhesions (FAs) link the extracellular matrix to the actin cytoskeleton to mediate cell adhesion, migration, mechanosensing and signalling. FAs have conserved nanoscale protein organization, suggesting that the position of proteins within FAs regulates their activity and function. Vinculin binds different FA proteins to mediate distinct cellular functions, but how vinculin's interactions are spatiotemporally organized within FAs is unknown. Using interferometric photoactivation localization super-resolution microscopy to assay vinculin nanoscale localization and a FRET biosensor to assay vinculin conformation, we found that upward repositioning within the FA during FA maturation facilitates vinculin activation and mechanical reinforcement of FAs. Inactive vinculin localizes to the lower integrin signalling layer in FAs by binding to phospho-paxillin. Talin binding activates vinculin and targets active vinculin higher in FAs where vinculin can engage retrograde actin flow. Thus, specific protein interactions are spatially segregated within FAs at the nanoscale to regulate vinculin activation and function.

Pubmed ID: 26053221 RIS Download

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Associated grants

  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM081764
  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM080568
  • Agency: Howard Hughes Medical Institute, United States
  • Agency: Intramural NIH HHS, United States
    Id: Z01 HL005105-01
  • Agency: NIGMS NIH HHS, United States
    Id: GM081764
  • Agency: NIGMS NIH HHS, United States
    Id: GM080568

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RRID:CVCL_0030

Cell line HeLa is a Cancer cell line with a species of origin Homo sapiens

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