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Mechanical strain-induced RhoA activation requires NADPH oxidase-mediated ROS generation in caveolae.

Antioxid Redox Signal.. 2010-10;  13(7):959-73
Zhang Y, Peng F, Gao B, Ingram AJ, Krepinsky JC. Division of Nephrology, McMaster University, Hamilton, Canada.
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摘要

Increased intraglomerular pressure leads to kidney fibrosis, and can be modeled by exposing glomerular mesangial cells (MC) to mechanical strain. We previously showed that RhoA mediates strain-induced matrix production. Here we investigate whether reactive oxygen species (ROS) are required for RhoA activation. Maximal RhoA activation (1 min) was inhibited by ROS scavenge or NADPH oxidase inhibition. Strain activated NADPH oxidase, with Rac1, p47(phox), and p67(phox) membrane translocation, and Rac1 activation, observed within 30 sec. Epidermal growth factor receptor (EGFR) inhibition blocked RhoA and Rac1 activation, p67(phox) membrane translocation, and ROS generation. However, EGFR activation was unaffected b... More

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