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人逼尿肌过度活跃时双孔域(钾)机械门控钾通道TREK-1的表达改变与调节

Altered expression and modulation of the two-pore-domain (K) mechanogated potassium channel TREK-1 in overactive human detrusor.

作者信息

Pineda Ricardo H, Nedumaran Balachandar, Hypolite Joseph, Pan Xiao-Qing, Wilson Shandra, Meacham Randall B, Malykhina Anna P

机构信息

Division of Urology, Department of Surgery, University of Colorado Denver, Aurora, Colorado; and.

Division of Urology, Department of Surgery, University of Pennsylvania, Philadelphia, Pennsylvania.

出版信息

Am J Physiol Renal Physiol. 2017 Aug 1;313(2):F535-F546. doi: 10.1152/ajprenal.00638.2016. Epub 2017 May 24.

Abstract

Detrusor overactivity (DO) is the abnormal response of the urinary bladder to physiological stretch during the filling phase of the micturition cycle. The mechanisms of bladder smooth muscle compliance upon the wall stretch are poorly understood. We previously reported that the function of normal detrusor is regulated by TREK-1, a member of the mechanogated subfamily of two-pore-domain potassium (K) channels. In the present study, we aimed to identify the changes in expression and function of TREK-1 channels under pathological conditions associated with DO, evaluate the potential relationship between TREK-1 channels and cytoskeletal proteins in the human bladder, and test the possibility of modulation of TREK-1 channel expression by small RNAs. Expression of TREK-1 channels in DO specimens was 2.7-fold decreased compared with control bladders and was associated with a significant reduction of the recorded TREK-1 currents. Isolated DO muscle strips failed to relax when exposed to a TREK-1 channel opener. Immunocytochemical labeling revealed close association of TREK-1 channels with cell cytoskeletal proteins and caveolins, with caveolae microdomains being severely disrupted in DO specimens. Small activating RNA (saRNA) tested in vitro provided evidence that expression of TREK-1 protein could be partially upregulated. Our data confirmed a significant downregulation of TREK-1 expression in human DO specimens and provided evidence of close association between the channel, cell cytoskeleton, and caveolins. Upregulation of TREK-1 expression by saRNA could be a future step for the development of in vivo pharmacological and genetic approaches to treat DO in humans.

摘要

逼尿肌过度活动(DO)是排尿周期充盈期膀胱对生理牵张的异常反应。膀胱平滑肌在壁层牵张时的顺应性机制尚不清楚。我们之前报道过,正常逼尿肌的功能受TREK-1调节,TREK-1是两孔结构域钾(K)通道机械门控亚家族的成员。在本研究中,我们旨在确定与DO相关的病理条件下TREK-1通道表达和功能的变化,评估TREK-1通道与人膀胱细胞骨架蛋白之间的潜在关系,并测试小RNA调节TREK-1通道表达的可能性。与对照膀胱相比,DO标本中TREK-1通道的表达降低了2.7倍,并且与记录到的TREK-1电流显著减少有关。分离的DO肌肉条在暴露于TREK-1通道开放剂时未能松弛。免疫细胞化学标记显示TREK-1通道与细胞骨架蛋白和小窝蛋白密切相关,在DO标本中小窝微区严重破坏。体外测试的小激活RNA(saRNA)提供了证据表明TREK-1蛋白的表达可以部分上调。我们的数据证实了人类DO标本中TREK-1表达的显著下调,并提供了该通道、细胞骨架和小窝蛋白之间密切关联的证据。通过saRNA上调TREK-1表达可能是未来开发体内药理学和遗传学方法治疗人类DO的一个步骤。

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