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Caveolin-1 scaffold domain interacts with TRPC1 and IP3R3 to regulate Ca2+ store release-induced Ca2+ entry in endothelial cells

机译:Caveolin-1支架结构域与TRPC1和IP3R3相互作用以调节Ca2 +存储释放诱导的Ca2 +进入内皮细胞

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摘要

Caveolin-1 (Cav-1) regulates agonist-induced Ca2+ entry in endothelial cells; however, how Cav-1 regulates this process is poorly understood. Here, we describe that Cav-1 scaffold domain (NH2-terminal residues 82–101; CSD) interacts with transient receptor potential canonical channel 1 (TRPC1) and inositol 1,4,5-trisphosphate receptor 3 (IP3R3) to regulate Ca2+ entry. We have shown previously that the TRPC1 COOH-terminal residues 781-789 bind to CSD. In the present study, we show that the TRPC1 COOH-terminal residues 781-789 truncated (TRPC1-CΔ781-789) mutant expression abolished Ca2+ store release-induced Ca2+ influx in human dermal microvascular endothelial cell line (HMEC) and human embryonic kidney (HEK-293) cells. To understand the basis of loss of Ca2+ influx, we determined TRPC1 binding to IP3R3. We observed that the wild-type (WT)-TRPC1 but not TRPC1-CΔ781-789 effectively interacted with IP3R3. Similarly, WT-TRPC1 interacted with Cav-1, whereas TRPC1-CΔ781-789 binding to Cav-1 was markedly suppressed. We also assessed the direct binding of Cav-1 with TRPC1 and observed that the WT-Cav-1 but not the Cav-1ΔCSD effectively interacted with TRPC1. Since the interaction between TRPC1 and Cav-1ΔCSD was reduced, we measured Ca2+ store release-induced Ca2+ influx in Cav-1ΔCSD-transfected cells. Surprisingly, Cav-1ΔCSD expression showed a gain-of-function in Ca2+ entry in HMEC and HEK-293 cells. We observed a similar gain-of-function in Ca2+ entry when Cav-1ΔCSD was expressed in lung endothelial cells of Cav-1 knockout mice. Immunoprecipitation results revealed that WT-Cav-1 but not Cav-1ΔCSD interacted with IP3R3. Furthermore, we observed using confocal imaging the colocalization of IP3R3 with WT-Cav-1 but not with Cav-1ΔCSD on Ca2+ store release in endothelial cells. These findings suggest that CSD interacts with TRPC1 and IP3R3 and thereby regulates Ca2+ store release-induced Ca2+ entry in endothelial cells.
机译:Caveolin-1(Cav-1)调节激动剂诱导的Ca2 +进入内皮细胞。然而,人们对Cav-1如何调节这一过程了解甚少。在这里,我们描述了Cav-1支架结构域(NH2末端残基82-101; CSD)与瞬时受体潜在规范通道1(TRPC1)和肌醇1,4,5-三磷酸受体3(IP3R3)相互作用来调节Ca2 +的进入。先前我们已经表明,TRPC1 COOH末端残基781-789与CSD结合。在本研究中,我们显示了TRPC1 COOH末端残基781-789被截短的(TRPC1-CΔ781-789)突变表达消除了Ca2 +存储释放诱导的Ca2 +流入人类皮肤微血管内皮细胞系(HMEC)和人类胚胎肾脏( HEK-293)细胞。为了了解丢失Ca2 +流入的基础,我们确定了TRPC1与IP3R3的结合。我们观察到野生型(WT)-TRPC1而不是TRPC1-CΔ781-789与IP3R3有效相互作用。同样,WT-TRPC1与Cav-1相互作用,而TRPC1-CΔ781-789与Cav-1的结合被显着抑制。我们还评估了Cav-1与TRPC1的直接结合,并观察到WT-Cav-1而不是Cav-1ΔCSD与TRPC1有效地相互作用。由于TRPC1和Cav-1ΔCSD之间的相互作用减少了,因此我们在Cav-1ΔCSD转染的细胞中测量了Ca2 +存储释放诱导的Ca2 +内流。令人惊讶的是,Cav-1ΔCSD表达在HMEC和HEK-293细胞的Ca2 +进入中显示出功能增强。当在Cav-1基因敲除小鼠的肺内皮细胞中表达Cav-1ΔCSD时,我们观察到了Ca2 +进入中类似的功能增强。免疫沉淀结果表明,WT-Cav-1与IP3R3不相互作用。此外,我们使用共聚焦成像观察到IP3R3与WT-Cav-1的共定位,而不与Cav-1ΔCSD的共定位在内皮细胞中的Ca2 +存储释放上。这些发现表明,CSD与TRPC1和IP3R3相互作用,从而调节内皮细胞中Ca2 +存储释放诱导的Ca2 +进入。

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