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June 11, 2019Proceedings of the National Academy of Sciences273 citationsOpen Access

Endothelial cell Piezo1 mediates pressure-induced lung vascular hyperpermeability via disruption of adherens junctions

EFEmily E. FriedrichZHZhigang HongSXShiqin Xiong

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Abstract

mice. Piezo1 signaled lung vascular hyperpermeability by promoting the internalization and degradation of the endothelial adherens junction (AJ) protein VE-cadherin. Breakdown of AJs was the result of activation of the calcium-dependent protease calpain and degradation of the AJ proteins VE-cadherin, β-catenin, and p120-catenin. Deletion of Piezo1 in ECs or inhibition of calpain similarly prevented reduction in the AJ proteins. Thus, Piezo1 activation in ECs induced by elevated lung microvessel pressure mediates capillary stress failure and edema formation secondary to calpain-induced disruption of VE-cadherin adhesion. Inhibiting Piezo1 signaling may be a useful strategy to limit lung capillary stress failure injury in response to elevated vascular pressures.

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Friedrich et al. (2019) studied this question.

synapsesocial.com/papers/6a64f71a1fe8a3b7faf6a5adhttps://doi.org/10.1073/pnas.1902165116
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