Synthetic peptides corresponding to the Gap 26 and Gap 27 domains o'/> Connexin-mimetic peptides dissociate electrotonic EDHF-type signalling via myoendothelial and smooth muscle gap junctions in the rabbit iliac artery
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Connexin-mimetic peptides dissociate electrotonic EDHF-type signalling via myoendothelial and smooth muscle gap junctions in the rabbit iliac artery

机译:连接蛋白模拟肽通过兔动脉中的内皮和平滑肌间隙连接分离电渗EDHF型信号

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摘要

class="enumerated" style="list-style-type:decimal">Synthetic peptides corresponding to the Gap 26 and Gap 27 domains of the first and second extracellular loops of the major vascular connexins (Cx37, Cx40 and Cx43), designated as 43Gap 26, 40Gap 27, 37,40Gap 26 and 37,43Gap 27 according to Cx homology, were used to investigate the role of gap junctions in the spread of endothelial hyperpolarizations evoked by cyclopiazonic acid (CPA) through the wall of the rabbit iliac artery.Immunostaining and confocal microscopy demonstrated that gap junction plaques constructed from Cx37 and Cx40 were abundant in the endothelium, whereas Cx43 was the dominant Cx visualized in the media.None of the Cx-mimetic peptides affected endothelial hyperpolarizations evoked by CPA directly.When administered individually, 40Gap 27, 37,40Gap 26 and 37,43Gap 27, but not 43Gap 26, attenuated endothelium-dependent subintimal smooth muscle hyperpolarization. By contrast, only 43Gap 26 and 37,43Gap 27 reduced the spread of subintimal hyperpolarization through the media of the rabbit iliac artery. The site of action of the peptides therefore correlated closely with the expression of their target Cxs in detectable gap junction plaques.The findings provide further evidence that the EDHF phenomenon is electrotonic in nature, and highlight the contribution of myoendothelial and homocellular smooth muscle communication via gap junctions to arterial function.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 与主要血管连接蛋白(Cx37,Cx40和Cx43)第一和第二个细胞外环的Gap 26和Gap 27结构域相对应的合成肽,称为 43 Gap 26, 40 Gap 27, 37,40 Gap 26和 37,43 Gap 27来研究间隙连接在内皮超极化扩散中的作用 免疫染色和共聚焦显微镜显示,由Cx37和Cx40构成的间隙连接斑块在内皮细胞中丰富,而Cx43是可见的主要Cx 没有一个Cx模拟肽直接影响CPA引起的内皮超极化。 单独给药时, 40 Gap 27, 37,40 Gap 26和 37,43 Gap 27,但不是 43 Gap 26,减弱了内皮依赖性的内膜下平滑肌超极化。相比之下,只有 43 Gap 26和 37,43 Gap 27减少了内膜超极化通过兔rabbit动脉介质的扩散。因此,这些肽的作用位点与其可检测的间隙连接斑块中靶Cxs的表达密切相关。通过间隙连接与动脉功能实现同细胞平滑肌通讯。

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