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首页> 外文期刊>American Journal of Physiology >Role of Na+/Ca2+ exchange in regulating cytosolic Ca2+ in cultured human pulmonary artery smooth muscle cells.
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Role of Na+/Ca2+ exchange in regulating cytosolic Ca2+ in cultured human pulmonary artery smooth muscle cells.

机译:Na + / Ca2 +交换在调节人肺动脉平滑肌细胞中调节胞质Ca2 +中的作用。

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摘要

A rise in cytosolic Ca2+ concentration ([Ca2+]cyt) in pulmonary artery smooth muscle cells (PASMC) is an important stimulus for cell contraction, migration, and proliferation. Depletion of intracellular Ca2+ stores opens store-operated Ca2+ channels (SOC) and causes Ca2+ entry. Transient receptor potential (TRP) cation channels that are permeable to Na+ and Ca2+ are believed to form functional SOC. Because sarcolemmal Na+/Ca2+ exchanger has also been implicated in regulating [Ca2+]cyt, this study was designed to test the hypothesis that the Na+/Ca2+ exchanger (NCX) in cultured human PASMC is functionally involved in regulating [Ca2+]cyt by contributing to store depletion-mediated Ca2+ entry. RT-PCR and Western blot analyses revealed mRNA and protein expression for NCX1 and NCKX3 in cultured human PASMC. Removal of extracellular Na+, which switches the Na+/Ca2+ exchanger from the forward (Ca2+ exit) to reverse (Ca2+ entry) mode, significantly increased [Ca2+]cyt, whereas inhibition of the Na+/Ca2+ exchanger with KB-R7943 (10 microM) markedly attenuated the increase in [Ca2+]cyt via the reverse mode of Na+/Ca2+ exchange. Store depletion also induced a rise in [Ca2+]cyt via the reverse mode of Na+/Ca2+ exchange. Removal of extracellular Na+ or inhibition of the Na+/Ca2+ exchanger with KB-R7943 attenuated the store depletion-mediated Ca2+ entry. Furthermore, treatment of human PASMC with KB-R7943 also inhibited cell proliferation in the presence of serum and growth factors. These results suggest that NCX is functionally expressed in cultured human PASMC, that Ca2+ entry via the reverse mode of Na+/Ca2+ exchange contributes to store depletion-mediated increase in [Ca2+]cyt, and that blockade of the Na+/Ca2+ exchanger in its reverse mode may serve as a potential therapeutic approach for treatment of pulmonary hypertension.
机译:肺动脉平滑肌细胞(PASMC)中胞质Ca2 +浓度([Ca2 +] cyt)的增加是细胞收缩,迁移和增殖的重要刺激因素。细胞内Ca2 +储存库的耗尽打开了储存库操作的Ca2 +通道(SOC),并导致Ca2 +进入。 Na +和Ca2 +可渗透的瞬态受体电位(TRP)阳离子通道被认为可形成功能性SOC。由于肌膜Na + / Ca2 +交换子也参与了[Ca2 +] cyt的调节,因此本研究旨在检验以下假设:培养的人PASMC中Na + / Ca2 +交换子(NCX)在功能上涉及通过调节[Ca2 +] cyt存储耗尽介导的Ca2 +进入。 RT-PCR和蛋白质印迹分析揭示了培养的人PASMC中NCX1和NCKX3的mRNA和蛋白表达。去除细胞外Na +,将Na + / Ca2 +交换子从正向(Ca2 +退出)切换到反向(Ca2 +进入)模式,可显着增加[Ca2 +] cyt,而用KB-R7943(10 microM)抑制Na + / Ca2 +交换子。通过Na + / Ca2 +交换的反向模式显着减弱了[Ca2 +] cyt的增加。商店耗竭也通过Na + / Ca2 +交换的相反模式引起[Ca2 +] cyt升高。用KB-R7943去除细胞外Na +或抑制Na + / Ca2 +交换子可减弱存储耗竭介导的Ca2 +进入。此外,在血清和生长因子存在下,用KB-R7943处理人PASMC也可抑制细胞增殖。这些结果表明,NCX在培养的人PASMC中功能性表达,通过Na + / Ca2 +交换的反向模式进入Ca2 +有助于存储[Ca2 +] cyt耗竭介导的增加,并在其反向中阻断Na + / Ca2 +交换子。模式可能是治疗肺动脉高压的潜在治疗方法。

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