SHP-2 is activated in response to force on E-cadherin and dephosphorylates vinculin Y822

SHP-2 在 E-钙粘蛋白受到压力时被激活,并使粘着斑蛋白 Y822 去磷酸化

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作者:Hannah Campbell, Christy Heidema, Daisy G Pilarczyk, Kris A DeMali

Abstract

The response of cells to mechanical inputs is a key determinant of cell behavior. In response to external forces, E-cadherin initiates signal transduction cascades that allow the cell to modulate its contractility to withstand the force. Much attention has focused on identifying the E-cadherin signaling pathways that promote contractility, but the negative regulators remain undefined. In this study, we identify SHP-2 as a force-activated phosphatase that negatively regulates E-cadherin force transmission by dephosphorylating vinculin Y822. To specifically probe a role for SHP-2 in E-cadherin mechanotransduction, we mutated vinculin so that it retains its phosphorylation but cannot be dephosphorylated. Cells expressing the mutant vinculin have increased contractility. This work provides a mechanism for inactivating E-cadherin mechanotransduction and provides a new method for specifically targeting the action of phosphatases in cells.

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