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首页> 外文期刊>Bioscience Reports >Regulation of natriuretic peptide receptor-A gene expression and stimulation of its guanylate cyclase activity by transcription factor Ets-1
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Regulation of natriuretic peptide receptor-A gene expression and stimulation of its guanylate cyclase activity by transcription factor Ets-1

机译:转录因子Ets-1调节利钠肽受体A基因表达并刺激鸟苷酸环化酶活性

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摘要

ANP (atrial natriuretic peptide) exerts its biological effects by binding to GC (guanylate cyclase)-A/NPR (natriuretic peptide receptor)-A, which generates the second messenger cGMP The molecular mechanism mediating Npr1 (coding for GC-A/NPRA) gene regulation and expression is not well understood. The objective of the present study was to elucidate the mechanism by which Ets-1 [Ets (E twenty-six) transformation-specific sequence] contributes to the regulation of Npr1 gene transcription and expression. Chromatin immunoprecipitation and gel-shift assays confirmed the in vivo and in vitro binding of Ets-1 to the Npr1 promoter. Overexpression of Ets-1 enhanced significantly Npr1 mRNA levels, protein expression, GC activity and ANP-stimulated intracellular accumulation of cGMP in transfected cells. Depletion of endogenous Ets-1 by siRNA (small interfering RNA) dramatically decreased promoter activity by 80%. Moreover, methylation of the Npr1 promoter region (-356 to +55) reduced significantly the promoter activity and hypermethylation around the Ets-1 binding sites directly reduced Ets-1 binding to the Npr1 promoter. Collectively, the present study demonstrates that Npr1 gene transcription and GC activity of the receptor are critically controlled by Ets-1 in target cells.
机译:心钠素(ANP)通过结合GC(鸟苷酸环化酶)-A / NPR(利钠肽受体)-A发挥其生物学作用,从而生成第二个信使cGMP介导Npr1(编码GC-A / NPRA)的分子机制。基因调控和表达尚不十分清楚。本研究的目的是阐明Ets-1 [Ets(E二十六)转化特异性序列]有助于调节Npr1基因转录和表达的机制。染色质的免疫沉淀和凝胶迁移分析证实了Ets-1与Npr1启动子的体内和体外结合。 Ets-1的过表达显着增强了转染细胞中Npr1 mRNA水平,蛋白表达,GC活性和ANP刺激的cGMP细胞内积累。 siRNA(小干扰RNA)耗尽内源性Ets-1会使启动子活性急剧降低80%。此外,Npr1启动子区域的甲基化(-356至+55)显着降低了启动子活性,而Ets-1结合位点附近的甲基化水平则直接降低了Ets-1与Npr1启动子的结合。总体而言,本研究表明靶细胞中的Ets-1严格控制Npr1基因的转录和受体的GC活性。

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