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Differential spatial regulation and activation of integrin nanoclusters inside focal adhesions

Keary, S.; Mateos, N.; Campelo, F.; Garcia-Parajo, M. F.

2023-12-16 cell biology
10.1101/2023.12.16.571970 bioRxiv
Show abstract

5{beta}1 and v{beta}3 integrins are core components of focal adhesions (FAs) involved in cell attachment, migration and mechanobiology-dependent processes. Recent works indicate that both integrins organize in nanoclusters inside FAs, with sub-populations of active and inactive {beta}1 nanoclusters. However, whether both integrins work in concert or their activities are spatially regulated is not fully understood. Using dual-color super-resolution microscopy we show that integrins 5{beta}1 and v{beta}3 exhibit similar functional nanoscale segregation. Notably, both integrins never mix at the nanoscale indicating that their functions might be spatially regulated. We find a nearly 1:1 stoichiometry between active integrin and adaptor nanoclusters suggesting that coordinated integrin activation occurs via the concurrent engagement of adaptor nanoclusters. Interestingly, 5{beta}1 nanoclusters preferentially localize at the FA periphery in close proximity to adaptor nanoclusters, establishing regions of multi-nanocluster enrichment, whereas v{beta}3 nanoclusters uniformly distribute throughout FAs. Overall, our results show that adhesion proteins arrange as modular nanoscale units that distinctively organize inside FAs to spatially regulate integrin activation and function.

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