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首页> 外文期刊>Arteriosclerosis, thrombosis, and vascular biology >Functional role of vanilloid transient receptor potential 4-canonical transient receptor potential 1 complex in flow-induced Ca2+ influx.
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Functional role of vanilloid transient receptor potential 4-canonical transient receptor potential 1 complex in flow-induced Ca2+ influx.

机译:香草素瞬态受体电位4规范瞬态受体电位1复合物在血流诱导的Ca2 +内流中的功能作用。

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OBJECTIVE: The present study is aimed at investigating the interaction of TRPV4 with TRPC1 and the functional role of such an interaction in flow-induced Ca(2+) influx. Hemodynamic blood flow is an important physiological factor that modulates vascular tone. One critical early event in this process is a cytosolic Ca(2+) ([Ca(2+)](i)) rise in endothelial cells in response to flow. METHODS AND RESULTS: With the use of fluorescence resonance energy transfer, coimmunoprecipitation, and subcellular colocalization methods, it was found that TRPC1 interacts physically with TRPV4 to form a complex. In functional studies, flow elicited a transient [Ca(2+)](i) increase in TRPV4-expressing human embryonic kidney (HEK) 293 cells. Coexpression of TRPC1 with TRPV4 markedly prolonged this [Ca(2+)](i) transient; it also enabled this [Ca(2+)](i) transient to be negatively modulated by protein kinase G. Furthermore, this flow-induced [Ca(2+)](i) increase was markedly inhibited by anti-TRPC1-blocking antibody T1E3 and a dominant-negative construct TRPC1 Delta 567-793 in TRPV4-C1-coexpressing HEK cells and human umbilical vein endothelial cells. T1E3 also inhibited flow-induced vascular dilation in isolated rat small mesenteric artery segments. CONCLUSIONS: This study shows that TRPC1 interacts physically with TRPV4 to form a complex, and this TRPV4-C1 complex may mediate flow-induced Ca(2+) influx in vascular endothelial cells. The association of TRPC1 with TRPV4 prolongs the flow-induced [Ca(2+)](i) transient, and it also enables this [Ca(2+)](i) transient to be negatively modulated by protein kinase G. This TRPV4-C1 complex plays a key role in flow-induced endothelial Ca(2+) influx.
机译:目的:本研究旨在研究TRPV4与TRPC1的相互作用以及这种相互作用在血流诱导的Ca(2+)内流中的功能作用。血液动力学血流是调节血管张力的重要生理因素。在此过程中的一个关键的早期事件是内皮细胞响应血流的胞质Ca(2+)([Ca(2 +)](i))升高。方法与结果:利用荧光共振能量转移,免疫共沉淀和亚细胞共定位方法,发现TRPC1与TRPV4发生物理相互作用形成复合物。在功能研究中,流程引起TRPV4表达人类胚胎肾(HEK)293细胞的瞬时[Ca(2 +)](i)增加。 TRPC1与TRPV4的共表达显着延长了此[Ca(2 +)](i)瞬态。它也使这种[Ca(2 +)](i)瞬变被蛋白激酶G负调节。此外,这种由血流诱导的[Ca(2 +)](i)的增加被抗TRPC1阻断显着抑制。抗体T1E3和共显性TRPV4-C1的HEK细胞和人脐静脉内皮细胞中的显性负性构建体TRPC1 Delta 567-793。 T1E3还抑制了离体大鼠小肠系膜动脉节段中血流诱导的血管扩张。结论:这项研究表明TRPC1物理上与TRPV4相互作用形成一个复合物,并且此TRPV4-C1复合物可能介导血管内皮细胞中的流诱导Ca(2+)流入。 TRPC1与TRPV4的关联延长了流动诱导的[Ca(2 +)](i)瞬变,并且还使该[Ca(2 +)](i)瞬变被蛋白激酶G负调控。 -C1复杂在流量诱导的内皮Ca(2+)涌入中发挥关键作用。

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