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本文引用的文献

1
A new SGK1 knockout mouse.一种新的血清糖皮质激素调节激酶1基因敲除小鼠。
Am J Physiol Renal Physiol. 2008 Jun;294(6):F1296-7. doi: 10.1152/ajprenal.90245.2008. Epub 2008 Apr 23.
2
Epithelial Na+ channel activation and processing in mice lacking SGK1.缺乏SGK1的小鼠上皮钠通道的激活与加工
Am J Physiol Renal Physiol. 2008 Jun;294(6):F1298-305. doi: 10.1152/ajprenal.00579.2007. Epub 2008 Apr 2.
3
Circadian rhythm disorganization produces profound cardiovascular and renal disease in hamsters.昼夜节律紊乱会在仓鼠身上引发严重的心血管和肾脏疾病。
Am J Physiol Regul Integr Comp Physiol. 2008 May;294(5):R1675-83. doi: 10.1152/ajpregu.00829.2007. Epub 2008 Feb 13.
4
Aldosterone-induced increases in superoxide production counters nitric oxide inhibition of epithelial Na channel activity in A6 distal nephron cells.醛固酮诱导的超氧化物生成增加抵消了一氧化氮对A6远端肾单位细胞上皮钠通道活性的抑制作用。
Am J Physiol Renal Physiol. 2007 Nov;293(5):F1666-77. doi: 10.1152/ajprenal.00444.2006. Epub 2007 Sep 5.
5
Aldosterone induces circadian gene expression of clock genes in H9c2 cardiomyoblasts.醛固酮诱导H9c2心肌成纤维细胞中生物钟基因的昼夜节律性基因表达。
Heart Vessels. 2007 Jul;22(4):254-60. doi: 10.1007/s00380-006-0968-3. Epub 2007 Jul 20.
6
Aldosterone-induced Sgk1 relieves Dot1a-Af9-mediated transcriptional repression of epithelial Na+ channel alpha.醛固酮诱导的Sgk1减轻Dot1a-Af9介导的上皮性钠离子通道α的转录抑制。
J Clin Invest. 2007 Mar;117(3):773-83. doi: 10.1172/JCI29850.
7
Salt, sodium channels, and SGK1.盐、钠通道和血清糖皮质激素调节激酶1
J Clin Invest. 2007 Mar;117(3):592-5. doi: 10.1172/JCI31538.
8
Adrenal transcription regulatory genes modulated by angiotensin II and their role in steroidogenesis.受血管紧张素II调控的肾上腺转录调节基因及其在类固醇生成中的作用。
Physiol Genomics. 2007 Jun 19;30(1):26-34. doi: 10.1152/physiolgenomics.00187.2006. Epub 2007 Feb 27.
9
Transient, light-induced rhythmicity in mPer-deficient mice.mPer基因缺陷小鼠中的短暂光诱导节律性。
J Biol Rhythms. 2007 Feb;22(1):85-8. doi: 10.1177/0748730406296718.
10
Alignment of the transcription start site coincides with increased transcriptional activity from the human asparagine synthetase gene following amino acid deprivation of HepG2 cells.转录起始位点的定位与HepG2细胞氨基酸剥夺后人天冬酰胺合成酶基因转录活性的增加相吻合。
J Nutr. 2006 Oct;136(10):2463-7. doi: 10.1093/jn/136.10.2463.

昼夜节律时钟蛋白Period 1调节小鼠肾上皮钠通道的表达。

The circadian clock protein Period 1 regulates expression of the renal epithelial sodium channel in mice.

作者信息

Gumz Michelle L, Stow Lisa R, Lynch I Jeanette, Greenlee Megan M, Rudin Alicia, Cain Brian D, Weaver David R, Wingo Charles S

机构信息

VA Medical Center, Gainesville, Florida, USA.

出版信息

J Clin Invest. 2009 Aug;119(8):2423-34. doi: 10.1172/JCI36908. Epub 2009 Jul 1.

DOI:10.1172/JCI36908
PMID:19587447
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2719945/
Abstract

The mineralocorticoid aldosterone is a major regulator of sodium transport in target epithelia and contributes to the control of blood pressure and cardiac function. It specifically functions to increase renal absorption of sodium from tubular fluid via regulation of the alpha subunit of the epithelial sodium channel (alphaENaC). We previously used microarray technology to identify the immediate transcriptional targets of aldosterone in a mouse inner medullary collecting duct cell line and found that the transcript induced to the greatest extent was the circadian clock gene Period 1. Here, we investigated the role of Period 1 in mediating the downstream effects of aldosterone in renal cells. Aldosterone treatment stimulated expression of Period 1 (Per1) mRNA in renal collecting duct cell lines and in the rodent kidney. RNA silencing of Period 1 dramatically decreased expression of mRNA encoding alphaENaC in the presence or absence of aldosterone. Furthermore, expression of alphaENaC-encoding mRNA was attenuated in the renal medulla of mice with disruption of the Per1 gene, and these mice exhibited increased urinary sodium excretion. Renal alphaENaC-encoding mRNA was expressed in an apparent circadian pattern, and this pattern was dramatically altered in mice lacking functional Period genes. These results suggest a role for Period 1 in the regulation of the renal epithelial sodium channel and more broadly implicate the circadian clock in control of sodium balance.

摘要

盐皮质激素醛固酮是靶上皮细胞中钠转运的主要调节因子,有助于控制血压和心脏功能。它通过调节上皮钠通道(αENaC)的α亚基,特异性地增加肾小管液中钠的肾脏重吸收。我们之前利用微阵列技术在小鼠髓质集合管细胞系中鉴定醛固酮的直接转录靶点,发现诱导程度最大的转录本是生物钟基因Period 1。在此,我们研究了Period 1在介导醛固酮对肾细胞下游效应中的作用。醛固酮处理刺激了肾集合管细胞系和啮齿动物肾脏中Period 1(Per1)mRNA的表达。无论有无醛固酮,Period 1的RNA沉默都显著降低了编码αENaC的mRNA的表达。此外,在Per1基因缺失的小鼠肾髓质中,编码αENaC的mRNA表达减弱,并且这些小鼠表现出尿钠排泄增加。肾脏中编码αENaC的mRNA以明显的昼夜节律模式表达,而在缺乏功能性Period基因的小鼠中,这种模式发生了显著改变。这些结果表明Period 1在肾上皮钠通道的调节中发挥作用,更广泛地表明生物钟参与钠平衡的控制。