| Literature DB >> 34619327 |
Loka Reddy Velatooru1, Rei J Abe1, Masaki Imanishi2, Young Jin Gi2, Kyung Ae Ko2, Kyung-Sun Heo3, Keigi Fujiwara2, Nhat-Tu Le4, Sivareddy Kotla5.
Abstract
Focal adhesion kinase (FAK) activation plays a crucial role in vascular diseases. In endothelial cells, FAK activation is involved in the activation of pro-inflammatory signaling and the progression of atherosclerosis. Disturbed flow (D-flow) induces endothelial activation and senescence, but the exact role of FAK in D-flow-induced endothelial activation and senescence remains unclear. The objective of this study is to investigate the role of FAK SUMOylation in D-flow-induced endothelial activation and senescence. The results showed that D-flow induced reactive oxygen species (ROS) production via NADPH oxidase activation and activated a redox-sensitive kinase p90RSK, leading to FAK activation by upregulating FAK K152 SUMOylation and the subsequent Vav2 phosphorylation, which in turn formed a positive feedback loop by upregulating ROS production. This feedback loop played a crucial role in regulating endothelial activation and senescence. D-flow-induced endothelial activation and senescence were significantly inhibited by mutating a FAK SUMOylation site lysine152 to arginine. Collectively, we concluded that FAK K152 SUMOylation plays a key role in D-flow-induced endothelial activation and senescence by forming a positive feedback loop through ROS production.Entities:
Keywords: Disturbed flow; FAK; Reactive oxygen species; SUMOylation; p90RSK
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Year: 2021 PMID: 34619327 PMCID: PMC8664087 DOI: 10.1016/j.freeradbiomed.2021.09.023
Source DB: PubMed Journal: Free Radic Biol Med ISSN: 0891-5849 Impact factor: 7.376