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  • Piezo1 and Gq/G11 promote endothelial inflammation depending on flow pattern and integrin activation.

Piezo1 and Gq/G11 promote endothelial inflammation depending on flow pattern and integrin activation.

The Journal of experimental medicine (2018-09-09)
Julián Albarrán-Juárez, Andras Iring, ShengPeng Wang, Sayali Joseph, Myriam Grimm, Boris Strilic, Nina Wettschureck, Till F Althoff, Stefan Offermanns
ABSTRACT

The vascular endothelium is constantly exposed to mechanical forces, including fluid shear stress exerted by the flowing blood. Endothelial cells can sense different flow patterns and convert the mechanical signal of laminar flow into atheroprotective signals, including eNOS activation, whereas disturbed flow in atheroprone areas induces inflammatory signaling, including NF-κB activation. How endothelial cells distinguish different flow patterns is poorly understood. Here we show that both laminar and disturbed flow activate the same initial pathway involving the mechanosensitive cation channel Piezo1, the purinergic P2Y2 receptor, and Gq/G11-mediated signaling. However, only disturbed flow leads to Piezo1- and Gq/G11-mediated integrin activation resulting in focal adhesion kinase-dependent NF-κB activation. Mice with induced endothelium-specific deficiency of Piezo1 or Gαq/Gα11 show reduced integrin activation, inflammatory signaling, and progression of atherosclerosis in atheroprone areas. Our data identify critical steps in endothelial mechanotransduction, which distinguish flow pattern-dependent activation of atheroprotective and atherogenic endothelial signaling and suggest novel therapeutic strategies to treat inflammatory vascular disorders such as atherosclerosis.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Fluoromount Aqueous Mounting Medium, for use with fluorescent dye-stained tissues
Sigma-Aldrich
Collagenase type I, The collagenase type I (from Clostridium histolyticum) is a crude collagenase preparation that can be used for the isolation of primary cells or for tissue dissociation by enzymatic means.
Sigma-Aldrich
Tamoxifen, ≥99%