首页> 外文期刊>American Journal of Physiology >BK channel beta1-subunit regulation of calcium handling and constriction in tracheal smooth muscle.
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BK channel beta1-subunit regulation of calcium handling and constriction in tracheal smooth muscle.

机译:BK通道β1亚基调节气管平滑肌中钙处理和收缩。

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摘要

The large-conductance, Ca2+-activated K+ (BK) channels are regulators of voltage-dependent Ca2+ entry in many cell types. The BK channel accessory beta1-subunit promotes channel activation in smooth muscle and is required for proper tone in the vasculature and bladder. However, although BK channels have also been implicated in airway smooth muscle function, their regulation by the beta1-subunit has not been investigated. Utilizing the gene-targeted mice for the beta1-subunit gene, we have investigated the role of the beta1-subunit in tracheal smooth muscle. In mice with the beta1-subunit-knockout allele, BK channel activity was significantly reduced in excised tracheal smooth muscle patches and spontaneous BK currents were reduced in whole tracheal smooth muscle cells. Knockout of the beta1-subunit resulted in an increase in resting Ca2+ levels and an increase in the sustained component of Ca2+ influx after cholinergic signaling. Tracheal constriction studies demonstrate that the level of constriction is the same with knockout of the beta1-subunit and BK channel block with paxillin, indicating that BK channels contribute little to airway relaxation in the absence of the beta1-subunit. Utilizing nifedipine, we found that the increased constriction caused by knockout of the beta1-subunit could be accounted for by an increased recruitment of L-type voltage-dependent Ca2+ channels. These results indicate that the beta1-subunit is required in airway smooth muscle for control of voltage-dependent Ca2+ influx during rest and after cholinergic signaling in BK channels.
机译:在许多电池类型中,大电导、Ca2+ 激活的 K+ (BK) 通道是电压依赖性 Ca2+ 进入的调节剂。BK 通道辅助 β1 亚基促进平滑肌的通道激活,并且是脉管系统和膀胱正常张力所必需的。然而,尽管 BK 通道也与气道平滑肌功能有关,但尚未研究它们对 β1 亚基的调节。利用β1亚基基因的基因靶向小鼠,我们研究了β1亚基在气管平滑肌中的作用。在具有β1亚基敲除等位基因的小鼠中,切除的气管平滑肌斑块中的BK通道活性显着降低,整个气管平滑肌细胞中的自发BK电流降低。敲除 β1 亚基导致静息 Ca2+ 水平增加,胆碱能信号传导后 Ca2+ 内流的持续成分增加。气管收缩研究表明,用帕西林敲除 β1 亚基和 BK 通道阻滞的收缩水平相同,表明在没有 β1 亚基的情况下,BK 通道对气道松弛的贡献很小。利用硝苯地平,我们发现敲除β1亚基引起的收缩增加可以通过L型电压依赖性Ca2+通道的募集增加来解释。这些结果表明,气道平滑肌中需要β1亚基来控制休息期间和BK通道中胆碱能信号传导后的电压依赖性Ca2+流入。

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