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首页> 外文期刊>American Journal of Physiology >Bone morphogenetic protein-2 upregulates expression and function of voltage-gated K+ channels in human pulmonary artery smooth muscle cells.
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Bone morphogenetic protein-2 upregulates expression and function of voltage-gated K+ channels in human pulmonary artery smooth muscle cells.

机译:骨形态发生蛋白2上调人肺动脉平滑肌细胞中电压门控性K +通道的表达和功能。

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摘要

Activity of voltage-gated K(+) (K(V)) channels in pulmonary artery smooth muscle cells (PASMC) plays an important role in control of apoptosis and proliferation in addition to regulating membrane potential and pulmonary vascular tone. Bone morphogenetic proteins (BMPs) inhibit proliferation and induce apoptosis in normal human PASMC, whereas dysfunctional BMP signaling and downregulated K(V) channels are involved in pulmonary vascular medial hypertrophy associated with pulmonary hypertension. This study evaluated the effect of BMP-2 on K(V) channel function and expression in normal human PASMC. BMP-2 (100 nM for 18-24 h) significantly (>2-fold) upregulated mRNA expression of KCNA5, KCNA7, KCNA10, KCNC3, KCNC4, KCNF1, KCNG3, KCNS1, and KCNS3 but downregulated (at least 2-fold) KCNAB1, KCNA2, KCNG2, and KCNV2. The most dramatic change was the >10-fold downregulation of KCNG2 and KCNV2, two electrically silent gamma-subunits that form heterotetramers with functional K(V) channel alpha-subunits (e.g., KCNB1-2). Furthermore, the amplitude and current density of whole cell K(V) currents were significantly increased in PASMC treated with BMP-2. It has been demonstrated that K(+) currents generated by KCNB1 and KCNG1 (or KCNG2) or KCNB1 and KCNV2 heterotetramers are smaller than those generated by KCNB1 homotetramers, indicating that KCNG2 and KCNV2 (2 subunits that were markedly downregulated by BMP-2) are inhibitors of functional K(V) channels. These results suggest that BMP-2 divergently regulates mRNA expression of various K(V) channel alpha-, beta-, and gamma-subunits and significantly increases whole cell K(V) currents in human PASMC. Finally, we present evidence that attenuation of c-Myc expression by BMP-2 may be involved in BMP-2-mediated increase in K(V) channel activity and regulation of K(V) channel expression. The increased K(V) channel activity may be involved in the proapoptotic and/or antiproliferative effects of BMP-2 on PASMC.
机译:肺动脉平滑肌细胞(PASMC)中的电压门控K(+)(K(V))通道的活动除调节膜电位和肺血管张力外,在控制细胞凋亡和增殖中也起着重要作用。骨形态发生蛋白(BMP)抑制增殖并诱导正常人PASMC中的凋亡,而功能异常的BMP信号传导和K(V)通道下调则参与了与肺动脉高压相关的肺血管内侧肥大。这项研究评估了BMP-2对正常人PASMC中K(V)通道功能和表达的影响。 BMP-2(100 nM持续18-24 h)显着(> 2倍)上调了KCNA5,KCNA7,KCNA10,KCNC3,KCNC4,KCNF1,KCNG3,KCNS1和KCNS3的mRNA表达,但下调了(至少2倍) KCNAB1,KCNA2,KCNG2和KCNV2。最显着的变化是KCNG2和KCNV2的下调> 10倍,这两个电沉默的γ亚基与功能性K(V)通道α亚基(例如KCNB1-2)形成异四聚体。此外,在用BMP-2处理的PASMC中,全细胞K(V)电流的幅度和电流密度显着增加。已经证明,由KCNB1和KCNG1(或KCNG2)或KCNB1和KCNV2异四聚体产生的K(+)电流小于由KCNB1同四聚体产生的电流,表明KCNG2和KCNV2(BMP-2显着下调了2个亚基)。是功能性K(V)通道的抑制剂。这些结果表明BMP-2差异性调节各种K(V)通道的α,β和gamma亚基的mRNA表达,并显着增加人PASMC中的全细胞K(V)电流。最后,我们目前提供的证据表明,BMP-2抑制c-Myc表达可能与BMP-2介导的K(V)通道活性增加和K(V)通道表达调控有关。增加的K(V)通道活性可能与BMP-2对PASMC的促凋亡和/或抗增殖作用有关。

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