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肾素增强子对于肾素表达在体内刺激下的充分反应至关重要。

Renin enhancer is crucial for full response in Renin expression to an in vivo stimulus.

作者信息

Markus M Andrea, Goy Christine, Adams David J, Lovicu Frank J, Morris Brian J

机构信息

Basic & Clinical Genomics Laboratory, School of Medical Sciences and Bosch Institute, Building F13, University of Sydney, NSW 2006, Australia.

出版信息

Hypertension. 2007 Nov;50(5):933-8. doi: 10.1161/HYPERTENSIONAHA.107.096891. Epub 2007 Sep 10.

Abstract

We showed recently that deletion of a strong enhancer located 2.7 kb upstream of the renin gene in mice produces a strain with mild hypotension and salt-sensitivity. Here we set out to compare responses in renin expression in kidney and extrarenal tissues in these "REKO" mice. REKO and wild-type mice were placed on a low NaCl/enalapril regimen for 1 week, and then Ren-1(c) mRNA and renin enzyme activities were measured in tissues and plasma. In untreated REKO mice, renin and Ren-1(c) mRNA were reduced significantly in kidney, submandibular gland, adrenal, heart, and brain. In situ hybridization indicated a marked reduction in Ren-1(c) mRNA in juxtaglomerular cells and granular ducts of submandibular gland. After the chronic stimulus response in renal Ren-1(c) mRNA in REKO mice was blunted by 54% compared with wild-type mice, and was accompanied by almost complete exhaustion of renin stores. Response in plasma renin was blunted by 47%, this being mirrored in heart (54% decline), in which renin is derived mostly from the bloodstream. In adrenal a 55% reduction was seen. These data are consistent with inability of REKO mice to adequately replenish renal renin stores during chronic stimulation of renin secretion. In conclusion, the renin enhancer is critical for replenishment of renin stores and response in renin to a chronic in vivo stimulus.

摘要

我们最近发现,删除小鼠肾素基因上游2.7 kb处的一个强增强子会产生一种具有轻度低血压和盐敏感性的品系。在此,我们着手比较这些“REKO”小鼠肾组织和肾外组织中肾素表达的反应。将REKO小鼠和野生型小鼠置于低氯化钠/依那普利方案下1周,然后测量组织和血浆中的Ren-1(c) mRNA和肾素酶活性。在未经处理的REKO小鼠中,肾、下颌下腺、肾上腺、心脏和脑中的肾素和Ren-1(c) mRNA显著降低。原位杂交显示,肾小球旁细胞和下颌下腺颗粒管中的Ren-1(c) mRNA明显减少。与野生型小鼠相比,REKO小鼠肾组织中Ren-1(c) mRNA的慢性刺激反应减弱了54%,并伴有肾素储备几乎完全耗尽。血浆肾素反应减弱了47%,心脏中也出现了类似情况(下降54%),心脏中的肾素主要来自血液。肾上腺中肾素减少了55%。这些数据表明,REKO小鼠在肾素分泌的慢性刺激过程中无法充分补充肾素储备。总之,肾素增强子对于肾素储备的补充以及肾素对慢性体内刺激的反应至关重要。

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