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小鼠下尿路中细胞表达与一氧化氮敏感性鸟苷酸环化酶功能的相关性。

Correlation of cellular expression with function of NO-sensitive guanylyl cyclase in the murine lower urinary tract.

作者信息

Lies Barbara, Groneberg Dieter, Friebe Andreas

机构信息

A. Friebe: Physiologisches Institut, Universität Würzburg, Röntgenring 9, 97070 Würzburg, Germany.

出版信息

J Physiol. 2013 Nov 1;591(21):5365-75. doi: 10.1113/jphysiol.2013.262410. Epub 2013 Sep 9.

Abstract

The action of nitric oxide (NO) to stimulate NO-sensitive guanylyl cyclase (NO-GC), followed by production of cGMP, and eventually to cause smooth muscle relaxation is well known. In the lower urinary tract (LUT), in contrast to the cardiovascular system and the gastrointestinal tract, specific localization in combination with function of NO-GC has not been investigated to date. Consequently, little is known about the mechanisms regulating relaxation of the lower urinary tract in general and the role of NO-GC-expressing cells in particular. To study the distribution and function of NO-GC in the murine lower urinary tract, we used internal urethral sphincter and bladder detrusor from global (GCKO) and smooth muscle cell-specific (SM-GCKO) NO-GC knock-out mice for immunohistochemical analyses and organ bath experiments. In urethral sphincter, NO-GC-positive immunofluorescence was confined to smooth muscle cells (SMCs). Deletion of NO-GC in SMCs abolished NO-induced relaxation. In bladder detrusor, exposure to NO did not cause relaxation although immunohistochemistry uncovered the existence of NO-GC in the tissue. In contrast to the urethral sphincter, expression of NO-GC in bladder detrusor was limited to platelet-derived growth factor receptor α (PDGFRα)-positive interstitial cells. In conclusion, NO-GC found in SMCs of the urethral sphincter mediates NO-induced relaxation; bladder detrusor is unique as NO-GC is not expressed in SMCs and, thus, NO does not induce relaxation. Nevertheless, NO-GC expression was found in PDGFRα-positive interstitial cells of the murine bladder with an as yet unknown function. Further investigation is needed to clarify the role of NO-GC in the detrusor.

摘要

一氧化氮(NO)刺激NO敏感型鸟苷酸环化酶(NO-GC),随后产生环磷酸鸟苷(cGMP),最终导致平滑肌松弛,这一作用已广为人知。与心血管系统和胃肠道不同,下尿路(LUT)中NO-GC的特定定位及其功能至今尚未得到研究。因此,对于一般情况下调节下尿路松弛以及特别是表达NO-GC的细胞的作用,人们知之甚少。为了研究NO-GC在小鼠下尿路中的分布和功能,我们使用了来自全身(GCKO)和平滑肌细胞特异性(SM-GCKO)NO-GC基因敲除小鼠的尿道内括约肌和膀胱逼尿肌进行免疫组织化学分析和器官浴实验。在尿道括约肌中,NO-GC阳性免疫荧光仅限于平滑肌细胞(SMC)。SMC中NO-GC的缺失消除了NO诱导的松弛。在膀胱逼尿肌中,尽管免疫组织化学显示组织中存在NO-GC,但暴露于NO并未引起松弛。与尿道括约肌不同,膀胱逼尿肌中NO-GC的表达仅限于血小板衍生生长因子受体α(PDGFRα)阳性的间质细胞。总之,尿道括约肌SMC中发现的NO-GC介导NO诱导的松弛;膀胱逼尿肌具有独特性,因为SMC中不表达NO-GC,因此NO不会诱导松弛。然而,在小鼠膀胱的PDGFRα阳性间质细胞中发现了NO-GC表达,其功能尚不清楚。需要进一步研究以阐明NO-GC在逼尿肌中的作用。

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Neuroeffector apparatus in gastrointestinal smooth muscle organs.胃肠平滑肌器官的神经效应器装置。
J Physiol. 2010 Dec 1;588(Pt 23):4621-39. doi: 10.1113/jphysiol.2010.196030. Epub 2010 Oct 4.

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