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水通道蛋白5在汗腺中的定位及利用基因敲除小鼠进行的功能分析。

Localization of aquaporin-5 in sweat glands and functional analysis using knockout mice.

作者信息

Song Yuanlin, Sonawane Nitin, Verkman A S

机构信息

Department of Medicine, Cardiovascular Research Institute, University of California, San Francisco, CA 94143-0521, USA.

出版信息

J Physiol. 2002 Jun 1;541(Pt 2):561-8. doi: 10.1113/jphysiol.2001.020180.

Abstract

Sweat secretion involves the transport of salt and water into the lumen of the secretory coil of the sweat gland. By analogy to salivary and submucosal glands, where fluid secretion is aquaporin-5 (AQP5) dependent, we postulated that aquaporin water channels might facilitate sweat secretion. Immunolocalization with specific antibodies revealed strong expression of AQP5 at the luminal membrane of secretory epithelial cells in sweat glands in mouse paw skin. Novel quantitative methods were developed to compare sweat secretion in wild-type mice and mice lacking AQP5. Total hindpaw sweat secretion was measured by proton nuclear magnetic resonance of sweat-derived (1)H(2)O in (2)H(2)O solvent, and sweat secretion from individual glands was measured by real-time video imaging of sweat droplet formation under oil. Sweat secretion rates after pilocarpine stimulation did not differ in wild-type mice (0.21 +/- 0.03 nl min(-1) gland(-1)) vs. mice lacking AQP5 (0.19 +/- 0.04 nl min(-1) gland(-1)). The lack of effect of AQP5 on sweat secretion rate was confirmed by microcapillary collections of sweat from defined regions of mouse paws. Also, as by direct counting of droplets, the number of functional sweat glands was not affected by AQP5 deletion. Sweat gland morphology was similar in wild-type and AQP5 null mice. From sweat coil geometry and gland secretion rate, the rate of fluid secretion was estimated to be 130 nl min(-1) cm(-2) of secretory epithelium, substantially lower than that of > 500 nl min(-1) cm(-2) in kidney proximal tubules and salivary glands, where active fluid absorption or secretion is aquaporin dependent. These results indicate the expression of AQP5 in sweat gland secretory epithelium, but provide direct evidence against its physiological involvement in sweat fluid secretion in mice.

摘要

汗液分泌涉及盐和水向汗腺分泌盘曲部管腔的转运。类比唾液腺和黏膜下腺,其液体分泌依赖水通道蛋白5(AQP5),我们推测水通道蛋白水通道可能促进汗液分泌。用特异性抗体进行免疫定位显示,AQP5在小鼠爪部皮肤汗腺分泌上皮细胞的管腔膜上有强烈表达。我们开发了新的定量方法来比较野生型小鼠和缺乏AQP5的小鼠的汗液分泌情况。通过在重水溶剂中对汗液衍生的氢水进行质子核磁共振来测量后爪总汗液分泌量,并通过油下汗滴形成的实时视频成像来测量单个腺体的汗液分泌量。毛果芸香碱刺激后,野生型小鼠(0.21±0.03 nl min⁻¹腺⁻¹)和缺乏AQP5的小鼠(0.19±0.04 nl min⁻¹腺⁻¹)的汗液分泌率没有差异。从小鼠爪部特定区域微量收集汗液证实了AQP5对汗液分泌率没有影响。此外,通过直接计数汗滴发现,功能性汗腺的数量不受AQP5缺失的影响。野生型小鼠和AQP5基因敲除小鼠的汗腺形态相似。根据汗腺盘曲部的几何形状和腺体分泌率,估计液体分泌率为130 nl min⁻¹ cm⁻²分泌上皮,远低于肾脏近端小管和唾液腺中大于500 nl min⁻¹ cm⁻²的分泌率,在这些器官中,活跃的液体吸收或分泌依赖水通道蛋白。这些结果表明AQP5在汗腺分泌上皮中有表达,但提供了直接证据证明其在小鼠汗液分泌中没有生理作用。

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