首页> 美国卫生研究院文献>The Journal of Physiology >Disruption of CFTR chloride channel alters mechanical properties and cAMP-dependent Cl− transport of mouse aortic smooth muscle cells
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Disruption of CFTR chloride channel alters mechanical properties and cAMP-dependent Cl− transport of mouse aortic smooth muscle cells

机译:CFTR氯离子通道的破坏改变了小鼠主动脉平滑肌细胞的机械性能和cAMP依赖的Cl-转运

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摘要

Chloride (Cl) channels expressed in vascular smooth muscle cells (VSMC) are important to control membrane potential equilibrium, intracellular pH, cell volume maintenance, contraction, relaxation and proliferation. The present study was designed to compare the expression, regulation and function of CFTR Cl channels in aortic VSMC from Cftr+/+ and Cftr/ mice. Using an iodide efflux assay we demonstrated stimulation of CFTR by VIP, isoproterenol, cAMP agonists and other pharmacological activators in cultured VSMC from Cftr+/+. On the contrary, in cultured VSMC from Cftr/ mice these agonists have no effect, showing that CFTR is the dominant Cl channel involved in the response to cAMP mediators. Angiotensin II and the calcium ionophore A23187 stimulated Ca2+-dependent Cl channels in VSMCs from both genotypes. CFTR was activated in myocytes maintained in medium containing either high potassium or 5-hydroxytryptamine (5-HT) and was inhibited by CFTRinh-172, glibenclamide and diphenylamine-2,2′-dicarboxylic acid (DPC). We also examined the mechanical properties of aortas. Arteries with or without endothelium from Cftr−/− mice became significantly more constricted (∼2-fold) than that of Cftr+/+ mice in response to vasoactive agents. Moreover, in precontracted arteries of Cftr+/+ mice, VIP and CFTR activators induced vasorelaxation that was altered in Cftr−/− mice. Our findings suggest a novel mechanism for regulation of the vascular tone by cAMP-dependent CFTR chloride channels in VSMC. To our knowledge this study is the first to report the phenotypic consequences of the loss of a Cl channel on vascular reactivity.
机译:在血管平滑肌细胞(VSMC)中表达的氯离子(Cl -)通道对于控制膜电位平衡,细胞内pH,细胞体积维持,收缩,松弛和增殖很重要。本研究旨在比较Cftr + / + 和Cftr -在主动脉VSMC中CFTR Cl -通道的表达,调控和功能 / -小鼠。使用碘化物流出试验,我们证明了Cftr + / + 在培养的VSMC中VIP,异丙肾上腺素,cAMP激动剂和其他药理激活剂对CFTR的刺激。相反,在从Cftr - / -小鼠培养的VSMC中,这些激动剂没有作用,表明CFTR是主要的Cl 通道涉及对cAMP介体的响应。血管紧张素II和钙离子载体A23187刺激了两种基因型VSMC中依赖于Ca 2 + +的Cl -通道。 CFTR在含有高钾或5-羟色胺(5-HT)的培养基中维持的心肌细胞中被激活,并被CFTRinh-172,格列本脲和二苯胺-2,2'-二羧酸(DPC)抑制。我们还检查了主动脉的机械性能。响应血管活性剂,来自Cftr -/-小鼠的有或没有内皮的动脉比Cftr + / + 小鼠的动脉明显更狭窄(约2倍)。此外,在Cftr + / + 小鼠的预收缩动脉中,VIP和CFTR激活剂诱导了血管舒张,而在Cftr -/-小鼠中血管舒张得到改变。我们的发现提示了VSMC中cAMP依赖性CFTR氯化物通道调节血管张力的新机制。据我们所知,该研究是第一个报道Cl -通道丧失对血管反应性的表型后果的研究。

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