首页> 外文期刊>The Journal of Physiology >Perivascular tissue inhibits rho-kinase-dependent smooth muscle Ca2+ sensitivity and endothelium-dependent H2S signalling in rat coronary arteries
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Perivascular tissue inhibits rho-kinase-dependent smooth muscle Ca2+ sensitivity and endothelium-dependent H2S signalling in rat coronary arteries

机译:血管周组织抑制大鼠冠状动脉中依赖于激酶的平滑肌Ca2 +敏感性和内皮依赖性H2S信号传导

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Interactions between perivascular tissue (PVT) and the vascular wall modify artery tone and contribute to local blood flow regulation. Using isometric myography, fluorescence microscopy, membrane potential recordings and phosphospecific immunoblotting, we investigated the cellular mechanisms by which PVT affects constriction and relaxation of rat coronary septal arteries. PVT inhibited vasoconstriction to thromboxane, serotonin and (1)-adrenergic stimulation but not to depolarization with elevated extracellular [K+]. When PVT was wrapped around isolated arteries or placed at the bottom of the myograph chamber, a smaller yet significant inhibition of vasoconstriction was observed. Resting membrane potential, depolarization to serotonin or thromboxane stimulation, and resting and serotonin-stimulated vascular smooth muscle [Ca2+]-levels were unaffected by PVT. Serotonin-induced vasoconstriction was almost abolished by rho-kinase inhibitor Y-27632 and modestly reduced by protein kinase C inhibitor bisindolylmaleimide X. PVT reduced phosphorylation of myosin phosphatase targeting subunit (MYPT) at Thr850 by approximate to 40% in serotonin-stimulated arteries but had no effect on MYPT-phosphorylation in arteries depolarized with elevated extracellular [K+]. The net anti-contractile effect of PVT was accentuated after endothelial denudation. PVT also impaired vasorelaxation and endothelial Ca(2+)responses to cholinergic stimulation. Methacholine-induced vasorelaxation was mediated by NO and H2S, and particularly the H2S-dependent (dl-propargylglycine- and XE991-sensitive) component was attenuated by PVT. Vasorelaxation to NO- and H2S-donors was maintained in arteries with PVT. In conclusion, cardiomyocyte-rich PVT surrounding coronary arteries releases diffusible factors that reduce rho-kinase-dependent smooth muscle Ca2+ sensitivity and endothelial Ca(2+)responses. These mechanisms inhibit agonist-induced vasoconstriction and endothelium-dependent vasorelaxation and suggest new signalling pathways for metabolic regulation of blood flow.
机译:血管周围组织(PVT)与血管壁之间的相互作用会改变动脉张力并有助于局部血流调节。使用等轴测肌成像,荧光显微镜,膜电位记录和磷酸特异性免疫印迹,我们研究了PVT影响大鼠冠状动脉间隔动脉收缩和松弛的细胞机制。 PVT抑制血管收缩对血栓烷,5-羟色胺和(1)-肾上腺素的刺激,但不抑制细胞外[K +]升高引起的去极化。当PVT包裹在孤立的动脉周围或置于肌腱膜腔的底部时,观察到较小但显着的血管收缩抑制作用。静息膜电位,去极化至5-羟色胺或血栓烷刺激以及静息和5-羟色胺刺激的血管平滑肌[Ca2 +]水平不受PVT影响。血清素诱导的血管收缩几乎被rh-激酶抑制剂Y-27632所消除,而蛋白激酶C抑制剂bisindolylmaleimide X则被适度降低。PVT在Thr850处将血清素刺激的动脉中肌球蛋白磷酸酶靶向亚基(MYPT)的磷酸化降低了约40%,但对升高的细胞外[K +]去极化的动脉的MYPT磷酸化没有影响。内皮剥脱后,PVT的净抗收缩作用增强。 PVT还损害血管舒张和内皮Ca(2+)响应胆碱能刺激。甲胆碱诱导的血管舒张由NO和H2S介导,尤其是H2S依赖性(dl-炔丙基甘氨酸和XE991敏感)组分通过PVT减弱。 PVT维持动脉对NO和H2S供体的血管舒张。总之,心肌细胞富集的PVT围绕冠状动脉释放可扩散的因素,以减少rho激酶依赖性平滑肌Ca2 +敏感性和内皮Ca(2+)反应。这些机制抑制激动剂诱导的血管收缩和内皮依赖性血管舒张,并为血流代谢调节提供了新的信号途径。

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