Integrin-YAP/TAZ-JNK cascade mediates atheroprotective effect of unidirectional shear flow

河马信号通路 机械转化 细胞生物学 整合素 化学 罗亚 基因敲除 癌症研究 磷酸化 信号转导 生物 基因 受体 生物化学
作者
Li Wang,Jiang‐Yun Luo,Bochuan Li,Xiao Yu Tian,Lijing Chen,Yühong Huang,Jian Liu,Dan Deng,Chi Wai Lau,Song Wan,Ding Ai,Kinglun Kingston Mak,Ka Kui Tong,Kin Ming Kwan,Nanping Wang,Jeng‐Jiann Chiu,Yi Zhu,Yü Huang
出处
期刊:Nature [Nature Portfolio]
卷期号:540 (7634): 579-582 被引量:654
标识
DOI:10.1038/nature20602
摘要

The Yorkie homologues YAP (Yes-associated protein) and TAZ (transcriptional coactivator with PDZ-binding motif, also known as WWTR1), effectors of the Hippo pathway, have been identified as mediators for mechanical stimuli. However, the role of YAP/TAZ in haemodynamics-induced mechanotransduction and pathogenesis of atherosclerosis remains unclear. Here we show that endothelial YAP/TAZ activity is regulated by different patterns of blood flow, and YAP/TAZ inhibition suppresses inflammation and retards atherogenesis. Atheroprone-disturbed flow increases whereas atheroprotective unidirectional shear stress inhibits YAP/TAZ activity. Unidirectional shear stress activates integrin and promotes integrin-Gα13 interaction, leading to RhoA inhibition and YAP phosphorylation and suppression. YAP/TAZ inhibition suppresses JNK signalling and downregulates pro-inflammatory genes expression, thereby reducing monocyte attachment and infiltration. In vivo endothelial-specific YAP overexpression exacerbates, while CRISPR/Cas9-mediated Yap knockdown in endothelium retards, plaque formation in ApoE-/- mice. We also show several existing anti-atherosclerotic agents such as statins inhibit YAP/TAZ transactivation. On the other hand, simvastatin fails to suppress constitutively active YAP/TAZ-induced pro-inflammatory gene expression in endothelial cells, indicating that YAP/TAZ inhibition could contribute to the anti-inflammatory effect of simvastatin. Furthermore, activation of integrin by oral administration of MnCl2 reduces plaque formation. Taken together, our results indicate that integrin-Gα13-RhoA-YAP pathway holds promise as a novel drug target against atherosclerosis.
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