首页> 美国卫生研究院文献>The Journal of Physiology >Chronic hypoxia-induced upregulation of Ca2+-activated Cl− channel in pulmonary arterial myocytes: a mechanism contributing to enhanced vasoreactivity
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Chronic hypoxia-induced upregulation of Ca2+-activated Cl− channel in pulmonary arterial myocytes: a mechanism contributing to enhanced vasoreactivity

机译:慢性缺氧诱导的肺动脉心肌细胞中Ca2 +激活的Cl-通道上调:促进血管反应性的机制

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摘要

Chronic hypoxic pulmonary hypertension (CHPH) is associated with altered expression and function of cation channels in pulmonary arterial smooth muscle cells (PASMCs), but little is known for anion channels. The Ca2+-activated Cl channel (CaCC), recently identified as TMEM16A, plays important roles in pulmonary vascular function. The present study sought to determine the effects of chronic hypoxia (CH) on the expression and function of CaCCs in PASMCs, and their contributions to the vascular hyperreactivity in CHPH. Male Wistar rats were exposed to room air or 10% O2 for 3–4 weeks to generate CHPH. CaCC current (ICl.Ca) elicited by caffeine-induced Ca2+ release or by depolarization at a constant high [Ca2+]i (500 or 750 nm) was significantly larger in PASMCs of CH rats compared to controls. The enhanced ICl.Ca density in CH PASMCs was unrelated to changes in amplitude of Ca2+ release, Ca2+-dependent activation, voltage-dependent properties or calcineurin-dependent modulation of CaCCs, but was associated with increased TMEM16A mRNA and protein expression. Maximal contraction induced by serotonin, an important mediator of CHPH, was potentiated in endothelium-denuded pulmonary arteries of CH rats. The enhanced contractile response was prevented by the CaCC blockers niflumic acid and T16Ainh-A01, or by the L-type Ca2+ channel antagonist nifedipine. The effects of niflumic acid and nifedipine were non-additive. Our results demonstrate for the first time that CH increases ICl.Ca density, which is attributable to an upregulation of TMEM16A expression in PASMCs. The augmented CaCC activity in PASMCs may potentiate membrane depolarization and L-type channel activation in response to vasoconstrictors and enhance pulmonary vasoreactivity in CHPH.
机译:慢性低氧性肺动脉高压(CHPH)与肺动脉平滑肌细胞(PASMC)中阳离子通道的表达和功能改变有关,但阴离子通道知之甚少。最近被鉴定为TMEM16A的Ca 2 + 激活的Cl -通道(CaCC)在肺血管功能中起重要作用。本研究试图确定慢性缺氧(CH)对PASMCs中CaCCs表达和功能的影响,以及它们对CHPH中血管高反应性的影响。将雄性Wistar大鼠暴露于室内空气或10%O2中3–4周以产生CHPH。由咖啡因诱导的Ca 2 + 释放或在恒定高[Ca 2 + ] i(500或750 nm)下去极化引起的CaCC电流(ICl.Ca)为与对照组相比,CH大鼠的PASMCs明显更大。 CH PASMCs的ICl.Ca密度增加与Ca 2 + 释放幅度,Ca 2 + 依赖性激活,电压依赖性或钙调神经磷酸酶依赖性的变化无关调节CaCCs,但与增加TMEM16A mRNA和蛋白表达有关。在CH大鼠的内皮剥夺的肺动脉中,由5-羟色胺(CHPH的重要介体)诱导的最大收缩被增强。 CaCC阻断剂尼氟酸和T16Ainh-A01或L型Ca 2 + 通道拮抗剂硝苯地平阻止了收缩反应的增强。尼氟酸和硝苯地平的作用是不可累加的。我们的结果首次证明CH增加ICl.Ca密度,这归因于PASMCs中TMEM16A表达的上调。 PASMCs中CaCC活性的增强可能增强膜去极化和响应血管收缩剂的L型通道激活,并增强CHPH中的肺血管反应性。

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