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首页> 外文期刊>Circulation: An Official Journal of the American Heart Association >Role of caveolar compartmentation in endothelium-derived hyperpolarizing factor-mediated relaxation: Ca2+ signals and gap junction function are regulated by caveolin in endothelial cells.
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Role of caveolar compartmentation in endothelium-derived hyperpolarizing factor-mediated relaxation: Ca2+ signals and gap junction function are regulated by caveolin in endothelial cells.

机译:海绵状细胞区室在内皮源性超极化因子介导的舒张中的作用:钙离子在内皮细胞中调控钙离子和间隙连接功能。

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BACKGROUND: In endothelial cells, caveolin-1, the structural protein of caveolae, acts as a scaffolding protein to cluster lipids and signaling molecules within caveolae and, in some instances, regulates the activity of proteins targeted to caveolae. Specifically, different putative mediators of the endothelium-derived hyperpolarizing factor (EDHF)-mediated relaxation are located in caveolae and/or regulated by the structural protein caveolin-1, such as potassium channels, calcium regulatory proteins, and connexin 43, a molecular component of gap junctions. METHODS AND RESULTS: Comparing relaxation in vessels from caveolin-1 knockout mice and their wild-type littermates, we observed a complete absence of EDHF-mediated vasodilation in isolated mesenteric arteries from caveolin-1 knockout mice. The absence of caveolin-1 is associated with an impairment of calcium homeostasis in endothelial cells, notably, a decreased activity of Ca2+-permeable TRPV4 cation channels that participate in nitric oxide- and EDHF-mediated relaxation. Moreover, morphological characterization of caveolin-1 knockout and wild-type arteries showed fewer gap junctions in vessels from knockout animals associated with a lower expression of connexins 37, 40, and 43 and altered myoendothelial communication. Finally, we showed that TRPV4 channels and connexins colocalize with caveolin-1 in the caveolar compartment of the plasma membrane. CONCLUSIONS: We demonstrated that expression of caveolin-1 is required for EDHF-related relaxation by modulating membrane location and activity of TRPV4 channels and connexins, which are both implicated at different steps in the EDHF-signaling pathway.
机译:背景:在内皮细胞中,小窝蛋白的结构蛋白小窝蛋白1(caveolin-1)充当支架蛋白,使小窝蛋白内的脂质和信号分子聚集,并在某些情况下调节靶向小窝蛋白的活性。具体而言,内皮衍生的超极化因子(EDHF)介导的舒张的不同推定介体位于小窝中和/或受小窝蛋白1结构蛋白(例如钾通道,钙调节蛋白和连接蛋白43,一种分子成分)调节间隙连接。方法和结果:比较caveolin-1基因敲除小鼠及其野生型同窝动物的血管松弛,我们观察到caveolin-1基因敲除小鼠的分离肠系膜动脉中完全没有EDHF介导的血管舒张。 Caveolin-1的缺失与内皮细胞钙稳态的受损有关,特别是参与一氧化氮和EDHF介导的舒张作用的Ca2 +渗透性TRPV4阳离子通道活性降低。此外,caveolin-1基因敲除和野生型动脉的形态学特征显示,敲除动物血管中的间隙连接较少,这与连接蛋白37、40和43的低表达有关,并改变了心肌内皮的沟通。最后,我们显示TRPV4通道和连接蛋白与质膜小腔室中的小窝蛋白1共定位。结论:我们通过调节膜的位置以及TRPV4通道和连接蛋白的活性证明了caveolin-1的表达是EDHF相关松弛所必需的,TRPV4通道和连接蛋白均涉及EDHF信号通路中的不同步骤。

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