Li Ka Shing Institute of Health Sciences, Chinese University of Hong Kong, Hong Kong, China.
Arterioscler Thromb Vasc Biol. 2010 Apr;30(4):851-8. doi: 10.1161/ATVBAHA.109.196584. Epub 2010 Jan 21.
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+)) rise in endothelial cells in response to flow.
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+) increase in TRPV4-expressing human embryonic kidney (HEK) 293 cells. Coexpression of TRPC1 with TRPV4 markedly prolonged this Ca(2+) transient; it also enabled this Ca(2+) transient to be negatively modulated by protein kinase G. Furthermore, this flow-induced Ca(2+) 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.
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+) transient, and it also enables this Ca(2+) transient to be negatively modulated by protein kinase G. This TRPV4-C1 complex plays a key role in flow-induced endothelial Ca(2+) influx.
本研究旨在探讨 TRPV4 与 TRPC1 的相互作用及其在流动诱导 Ca(2+)内流中的功能作用。血流动力学是调节血管张力的重要生理因素。在这个过程中,一个关键的早期事件是内皮细胞对流动的反应引起细胞浆 Ca(2+)(Ca(2+))升高。
利用荧光共振能量转移、共免疫沉淀和亚细胞共定位方法,发现 TRPC1 与 TRPV4 物理相互作用形成复合物。在功能研究中,流动在表达 TRPV4 的人胚肾(HEK)293 细胞中引发短暂的Ca(2+)增加。TRPC1 与 TRPV4 的共表达显著延长了这种Ca(2+)瞬变;它还使这种Ca(2+)瞬变可被蛋白激酶 G 负调节。此外,在 TRPV4-C1 共表达的 HEK 细胞和人脐静脉内皮细胞中,抗 TRPC1 阻断抗体 T1E3 和显性负性构建体 TRPC1 Delta 567-793 显著抑制了这种流动诱导的Ca(2+)增加。T1E3 还抑制了分离的大鼠肠系膜小动脉段中流动诱导的血管扩张。
本研究表明,TRPC1 与 TRPV4 物理相互作用形成复合物,而这种 TRPV4-C1 复合物可能介导血管内皮细胞中流动诱导的 Ca(2+)内流。TRPC1 与 TRPV4 的结合延长了流动诱导的Ca(2+)瞬变,并使这种Ca(2+)瞬变可被蛋白激酶 G 负调节。这种 TRPV4-C1 复合物在流动诱导的内皮细胞 Ca(2+)内流中起关键作用。