Wang J, Juhaszova M, Rubin L J, Yuan X J
Department of Medicine, University of Maryland School of Medicine, Baltimore 21201, USA.
J Clin Invest. 1997 Nov 1;100(9):2347-53. doi: 10.1172/JCI119774.
Activity of voltage-gated K+ channels (KV) in pulmonary arterial smooth muscle cells (PASMC) is pivotal in controlling membrane potential, cytoplasmic free Ca2+ concentration ([Ca2+]cyt, and pulmonary vasomotor tone. Acute hypoxia selectively inhibits KV channels, depolarizes PASMC, raises [Ca2+]cyt, and causes pulmonary vasoconstriction and vascular remodeling. Prolonged hypoxia (24-60 h) decreased significantly the mRNA levels of KV channel alpha subunits, KV1.2 and KV1.5. Consistently, the protein levels of KV1.2 and KV1.5 were also decreased significantly by hypoxia (48-72 h). Nevertheless, hypoxia affected negligibly the mRNA levels of KV channel beta subunits (KVbeta1, KVbeta2, and KVbeta3). The native K+ channels are composed of pore-forming alpha and auxiliary beta subunits. Assembly of KV beta subunits with alpha subunits confers rapid inactivation on the slowly or non-inactivating delayed rectifier KV channels. KV beta subunits also function as an open-channel blocker of KV channels. Thus, the diminished transcription and expression of KV alpha subunits may reduce the number of KV channels and decrease KC currents. Unchanged transcription of KV beta subunits may increase the fraction of the KV channel alpha subunits that are associated with beta subunits and further reduce the total KV currents. These data demonstrate a novel mechanism by which chronic hypoxia may cause pulmonary vasoconstriction and hypertension.
肺动脉平滑肌细胞(PASMC)中电压门控钾离子通道(KV)的活性在控制膜电位、细胞质游离钙离子浓度([Ca2+]cyt)和肺血管舒缩张力方面起着关键作用。急性缺氧选择性抑制KV通道,使PASMC去极化,升高[Ca2+]cyt,并导致肺血管收缩和血管重塑。长时间缺氧(24 - 60小时)显著降低了KV通道α亚基KV1.2和KV1.5的mRNA水平。同样,缺氧(48 - 72小时)也显著降低了KV1.2和KV1.5的蛋白质水平。然而,缺氧对KV通道β亚基(KVbeta1、KVbeta2和KVbeta3)的mRNA水平影响可忽略不计。天然钾离子通道由形成孔道的α亚基和辅助性β亚基组成。KVβ亚基与α亚基的组装赋予缓慢或非失活的延迟整流KV通道快速失活特性。KVβ亚基还可作为KV通道的开放通道阻滞剂。因此,KVα亚基转录和表达的减少可能会减少KV通道的数量并降低钾离子电流。KVβ亚基转录不变可能会增加与β亚基相关的KV通道α亚基的比例,并进一步降低总的KV电流。这些数据证明了一种新的机制,通过该机制慢性缺氧可能导致肺血管收缩和高血压。