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首页> 外文期刊>American Journal of Physiology >Activation of muscarinic M3 receptors inhibits large-conductance voltage- and Ca2+-activated K+ channels in rat urinary bladder smooth muscle cells
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Activation of muscarinic M3 receptors inhibits large-conductance voltage- and Ca2+-activated K+ channels in rat urinary bladder smooth muscle cells

机译:毒蕈碱M3受体的激活抑制大鼠膀胱平滑肌细胞中的大电导电压和Ca2 +激活的K +通道

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摘要

Large conductance voltage- and Ca2+-activated K+ (BK) channels are key regulators of detrusor smooth muscle (DSM) contraction and relaxation during urine voiding and storage. Here, we explored whether BK channels are regulated by muscarinic receptors (M-Rs) in native freshly isolated rat DSM cells under physiological conditions using the perforated whole cell patch-clamp technique and pharmacological inhibitors. M-R activation with carbachol (1 μM) initially evoked large transient outward BK currents, followed by inhibition of the spontaneous transient outward BK currents (STBKCs) in DSM cells. Carbachol (1 μM) also inhibited the amplitude and frequency of spontaneous transient hyperpolarizations (STHs) and depolarized the DSM cell membrane potential. Selective inhibition of the muscarinic M3 receptors (M3-Rs) with 4-diphenylacetoxy-N-methylpiperidine (4-DAMP; 0.1 μM), but not muscarinic M2 receptors with methoctramine (1 μM), blocked the carbachol inhibitory effects on STBKCs. Furthermore, blocking the inositol 1,4,5-triphosphate (IP3) receptors with xestospongin-C (1 μM) inhibited the carbachol-induced large transient outward BK currents without affecting carbachol inhibitory effects on STBKCs. Upon pharmacological inhibition of all known cellular sources of Ca2+ for BK channel activation, carbachol (1 μM) did not affect the voltage-step-induced steady-state BK currents, suggesting that the muscarinic effects in DSM cells are mediated by mobilization of intracellular Ca2+. In conclusion, our findings provide strong evidence that activation of M3-Rs leads to inhibition of the STBKCs, STHs, and depolarization of DSM cells. Collectively, the data suggest the existence of functional interactions between BK channels and M3-Rs at a cellular level in DSM.
机译:大电导电压激活和Ca2 +激活的K +(BK)通道是尿液排尿和储存过程中逼尿肌平滑肌(DSM)收缩和松弛的关键调节器。在这里,我们探讨了在自然条件下,使用穿孔的全细胞膜片钳技术和药理抑制剂,在天然新鲜分离的大鼠DSM细胞中,毒蕈碱受体(M-Rs)是否会调节BK通道。最初,用卡巴胆碱(1μM)激活M-R会引起大的瞬时向外BK电流,然后抑制DSM细胞中的自发瞬时向外BK电流(STBKC)。卡巴胆碱(1μM)还抑制自发性瞬时超极化(STH)的幅度和频率,并使DSM细胞膜电位去极化。用4-二苯基乙酰氧基-N-甲基哌啶(4-DAMP; 0.1μM)对毒蕈碱M3受体(M3-Rs)的选择性抑制作用,而不是用甲辛曲明(1μM)对毒蕈碱M2受体的选择性抑制作用,阻断了卡巴胆碱对STBKCs的抑制作用。此外,用异源皂苷-C(1μM)阻断肌醇1,4,5-三磷酸(IP3)受体抑制了卡巴胆碱诱导的大的瞬时向外BK电流,而不影响卡巴胆碱对STBKC的抑制作用。在药理学上抑制所有已知的Ca2 +细胞来源以激活BK通道后,卡巴胆碱(1μM)不会影响电压阶跃诱导的稳态BK电流,这表明DSM细胞中的毒蕈碱效应是由细胞内Ca2 +的动员介导的。 。总之,我们的发现提供了有力的证据,表明M3-Rs的激活导致STBKCs,STHs的抑制和DSM细胞的去极化。总体而言,数据表明在DSM的细胞水平上BK通道和M3-R之间存在功能性相互作用。

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