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内皮细胞瞬时受体电位香草酸亚型4/连接蛋白43信号复合体调节阻力动脉的血管舒缩张力。

Endothelial TRPV4/Cx43 Signaling Complex Regulates Vasomotor Tone in Resistance Arteries.

作者信息

Burboa Pía C, Gaete Pablo S, Shu Ping, Araujo Priscila A, Beuve Annie V, Durán Walter N, Contreras Jorge E, Lillo Mauricio A

机构信息

Department of Pharmacology, Physiology and Neuroscience, Rutgers-New Jersey Medical School, Newark, NJ 07103, U.S.A.

Department of Physiology and Membrane Biology, School of Medicine, University of California Davis, Davis, CA, U.S.A.

出版信息

bioRxiv. 2024 Jul 25:2024.07.25.604930. doi: 10.1101/2024.07.25.604930.

Abstract

S-nitrosylation of Cx43 gap junction channels critically regulates communication between smooth muscle cells and endothelial cells. This posttranslational modification also induces the opening of undocked Cx43 hemichannels. However, its specific impact on vasomotor regulation remains unclear. Considering the role of endothelial TRPV4 channel activation in promoting vasodilation through nitric oxide (NO) production, we investigated the direct modulation of endothelial Cx43 hemichannels by TRPV4 channel activation. Using the proximity ligation assay, we identify that Cx43 and TRPV4 are found in close proximity in the endothelium of resistance arteries. In primary endothelial cell cultures from resistance arteries (ECs), GSK-induced TRPV4 activation enhances eNOS activity, increases NO production, and opens Cx43 hemichannels via direct S-nitrosylation. Notably, the elevated intracellular Ca levels caused by TRPV4 activation were reduced by blocking Cx43 hemichannels. In ex vivo mesenteric arteries, inhibiting Cx43 hemichannels reduced endothelial hyperpolarization without affecting NO production in ECs, underscoring a critical role of TRPV4/Cx43 signaling in endothelial electrical behavior. We perturbed the proximity of Cx43/TRPV4 by disrupting lipid rafts in ECs using β-cyclodextrin. Under these conditions, hemichannel activity, Ca influx, and endothelial hyperpolarization were blunted upon GSK stimulation. Intravital microscopy of mesenteric arterioles further demonstrated that inhibiting Cx43 hemichannels activity, NO production and disrupting endothelial integrity reduce TRPV4-induced relaxation. These findings underscore a new pivotal role of Cx43 hemichannel associated with TRPV4 signaling pathway in modulating endothelial electrical behavior and vasomotor tone regulation.

摘要

Cx43间隙连接通道的S-亚硝基化对平滑肌细胞与内皮细胞之间的通讯起着关键的调节作用。这种翻译后修饰还会诱导未对接的Cx43半通道开放。然而,其对血管舒缩调节的具体影响仍不清楚。考虑到内皮TRPV4通道激活在通过一氧化氮(NO)生成促进血管舒张中的作用,我们研究了TRPV4通道激活对内皮Cx43半通道的直接调节作用。使用邻近连接分析,我们发现在阻力动脉的内皮中Cx43和TRPV4紧密相邻。在来自阻力动脉的原代内皮细胞培养物(ECs)中,GSK诱导的TRPV4激活增强eNOS活性,增加NO生成,并通过直接S-亚硝基化开放Cx43半通道。值得注意的是,通过阻断Cx43半通道可降低由TRPV4激活引起的细胞内Ca水平升高。在离体肠系膜动脉中,抑制Cx43半通道可减少内皮超极化,而不影响ECs中的NO生成,这突出了TRPV4/Cx43信号在内皮电行为中的关键作用。我们使用β-环糊精破坏ECs中的脂筏,从而扰乱Cx43/TRPV4的邻近性。在这些条件下,GSK刺激后半通道活性、Ca内流和内皮超极化均减弱。肠系膜小动脉的活体显微镜检查进一步表明,抑制Cx43半通道活性、NO生成以及破坏内皮完整性会降低TRPV4诱导的舒张。这些发现突出了与TRPV4信号通路相关的Cx43半通道在调节内皮电行为和血管舒缩张力方面的新关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/182d/11291137/b19ac3715369/nihpp-2024.07.25.604930v1-f0001.jpg

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