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限水对小鼠肾髓质基因表达的影响:鉴定3βHSD4为集合管蛋白

Effects of water restriction on gene expression in mouse renal medulla: identification of 3betaHSD4 as a collecting duct protein.

作者信息

Cai Qi, Keck Maggie, McReynolds Matthew R, Klein Janet D, Greer Kevin, Sharma Kumar, Hoying James B, Sands Jeff M, Brooks Heddwen L

机构信息

Department of Physiology, College of Medicine, 1501 N Campbell Ave, University of Arizona, Tucson, AZ 85724-5051, USA.

出版信息

Am J Physiol Renal Physiol. 2006 Jul;291(1):F218-24. doi: 10.1152/ajprenal.00413.2005. Epub 2006 Feb 14.

Abstract

To identify novel gene targets of vasopressin regulation in the renal medulla, we performed a cDNA microarray study on the inner medullary tissue of mice following a 48-h water restriction protocol. In this study, 4,625 genes of the possible approximately 12,000 genes on the array were included in the analysis, and of these 157 transcripts were increased and 63 transcripts were decreased by 1.5-fold or more. Quantitative, real-time PCR measurements confirmed the increases seen for 12 selected transcripts, and the decreases were confirmed for 7 transcripts. In addition, we measured transcript abundance for many renal collecting duct proteins that were not represented on the array; aquaporin-2 (AQP2), AQP3, Pax-8, and alpha- and beta-Na-K-ATPase subunits were all significantly increased in abundance; the beta- and gamma-subunits of ENaC and the vasopressin type 1A receptor were significantly decreased. To correlate changes in mRNA expression with changes in protein expression, we carried out quantitative immunoblotting. For most of the genes examined, changes in mRNA abundances were not associated with concomitant protein abundance changes; however, AQP2 transcript abundance and protein abundance did correlate. Surprisingly, aldolase B transcript abundance was increased but protein abundance was decreased following 48 h of water restriction. Several transcripts identified by microarray were novel with respect to their expression in mouse renal medullary tissues. The steroid hormone enzyme 3beta-hydroxysteroid dehydrogenase 4 (3betaHSD4) was identified as a novel target of vasopressin regulation, and via dual labeling immunofluorescence we colocalized the expression of this protein to AQP2-expressing collecting ducts of the kidney. These studies have identified several transcripts whose abundances are regulated in mouse inner medulla in response to an increase in endogenous vasopressin levels and could play roles in the regulation of salt and water excretion.

摘要

为了确定肾髓质中血管加压素调节的新基因靶点,我们对经过48小时限水方案处理的小鼠肾内髓组织进行了cDNA微阵列研究。在本研究中,分析纳入了阵列上约12,000个可能基因中的4,625个基因,其中157个转录本增加,63个转录本减少了1.5倍或更多。定量实时PCR测量证实了12个选定转录本的增加,7个转录本的减少也得到了证实。此外,我们测量了阵列上未呈现的许多肾集合管蛋白的转录本丰度;水通道蛋白-2(AQP2)、AQP3、Pax-8以及α和β-Na-K-ATP酶亚基的丰度均显著增加;ENaC的β和γ亚基以及血管加压素1A型受体显著减少。为了将mRNA表达的变化与蛋白质表达的变化相关联,我们进行了定量免疫印迹分析。对于大多数检测的基因,mRNA丰度的变化与相应蛋白质丰度的变化无关;然而,AQP2转录本丰度和蛋白质丰度确实相关。令人惊讶的是,限水48小时后醛缩酶B转录本丰度增加但蛋白质丰度降低。通过微阵列鉴定的几个转录本在小鼠肾髓质组织中的表达是新发现的。类固醇激素酶3β-羟基类固醇脱氢酶4(3βHSD4)被确定为血管加压素调节的新靶点,通过双重标记免疫荧光我们将该蛋白的表达定位到肾脏中表达AQP2的集合管。这些研究确定了几个转录本,其丰度在小鼠内髓中因内源性血管加压素水平升高而受到调节,并可能在盐和水排泄的调节中发挥作用。

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