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大电导电压和 Ca2+ 激活的 K+ 通道调节人膀胱平滑肌功能。

Large-conductance voltage- and Ca2+-activated K+ channels regulate human detrusor smooth muscle function.

机构信息

Department of Pharmaceutical and Biomedical Sciences, South Carolina College of Pharmacy, University of South Carolina, Columbia, 29208, USA.

出版信息

Am J Physiol Cell Physiol. 2011 Oct;301(4):C903-12. doi: 10.1152/ajpcell.00495.2010. Epub 2011 Jun 22.

Abstract

The large-conductance voltage- and Ca(2+)-activated K(+) (BK) channel is expressed in many smooth muscle types, but its role in human detrusor smooth muscle (DSM) is unclear. With a multidisciplinary approach spanning channel molecules, single-channel activity, freshly isolated human DSM cells, intact DSM preparations, and the BK channel specific inhibitor iberiotoxin, we elucidated human DSM BK channel function and regulation. Native human DSM tissues were obtained during open surgeries from patients with no preoperative history of overactive bladder. RT-PCR experiments on single human DSM cells showed mRNA expression of BK channel α-, β(1)-, and β(4)-subunits. Western blot and immunocytochemistry confirmed BK channel α, β(1), and β(4) protein expression. Native human BK channel properties were described using the perforated whole cell configuration of the patch-clamp technique. In freshly isolated human DSM cells, BK channel blockade with iberiotoxin inhibited a significant portion of the total voltage step-induced whole cell K(+) current. From single BK channel recordings, human BK channel conductance was calculated to be 136 pS. Voltage-dependent iberiotoxin- and ryanodine-sensitive transient BK currents were identified in human DSM cells. In current-clamp mode, iberiotoxin inhibited the hyperpolarizing membrane potential transients and depolarized the cell resting membrane potential. Isometric DSM tension recordings revealed that BK channels principally control the contractions of isolated human DSM strips. Collectively, our results indicate that BK channels are fundamental regulators of DSM excitability and contractility and may represent new targets for pharmacological or genetic control of urinary bladder function in humans.

摘要

大电导电压和钙激活钾(BK)通道在许多平滑肌类型中表达,但它在人膀胱平滑肌(DSM)中的作用尚不清楚。通过跨越通道分子、单通道活性、新鲜分离的人 DSM 细胞、完整的 DSM 制剂以及 BK 通道特异性抑制剂 Iberiotoxin 的多学科方法,我们阐明了人 DSM BK 通道的功能和调节。在没有术前膀胱过度活动症病史的患者的开放性手术中获得了天然人 DSM 组织。对单个人类 DSM 细胞进行 RT-PCR 实验显示 BK 通道 α、β(1)和β(4)亚基的 mRNA 表达。Western blot 和免疫细胞化学证实了 BK 通道 α、β(1)和β(4)蛋白的表达。使用膜片钳技术的穿孔全细胞构型描述了天然人 BK 通道特性。在新鲜分离的人 DSM 细胞中,Iberiotoxin 对 BK 通道的阻断抑制了总电压阶跃诱导的全细胞 K+电流的很大一部分。从单 BK 通道记录中计算出人 BK 通道的电导为 136 pS。在人 DSM 细胞中鉴定出电压依赖性 Iberiotoxin 和 Ryanodine 敏感的瞬时 BK 电流。在电流钳模式下,Iberiotoxin 抑制了超极化膜电位瞬变并使细胞静息膜电位去极化。等长 DSM 张力记录显示,BK 通道主要控制分离的人 DSM 条带的收缩。总之,我们的结果表明,BK 通道是 DSM 兴奋性和收缩性的基本调节剂,可能代表人类膀胱功能药理学或遗传控制的新靶点。

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