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GREBP,一种 cGMP 反应元件结合蛋白,抑制利钠肽受体 1(NPR1/GCA)的转录。

GREBP, a cGMP-response element-binding protein repressing the transcription of natriuretic peptide receptor 1 (NPR1/GCA).

机构信息

Research Centre, Centre Hospitalier de l'Université de Montréal (CRCHUM), Montréal, Québec H1W 4A4, Canada.

出版信息

J Biol Chem. 2010 Jul 2;285(27):20926-39. doi: 10.1074/jbc.M109.061622. Epub 2010 May 5.

Abstract

NPR1/GCA (natriuretic peptide receptor 1/guanylyl cyclase A) expression is controlled by several agents, including ANP (atrial natriuretic peptide). After ANP stimulation, NPR1/GCA down-regulates the transcriptional activity of its gene via a cGMP-dependent mechanism. Because we previously identified a cis-acting element responsible for this cGMP sensitivity, we proceed here to explore novel putative protein binding to cGMP-response element (cGMP-RE). Using the yeast one-hybrid technique with a human kidney cDNA library, we identified a strong positive clone able to bind cGMP-RE. The clone was derived from 1083-bp-long cDNA of a gene of yet unknown function localized on human chromosome 1 (1p33.36). We named this new protein GREBP (for cGMP-response element-binding protein). DNA binding assays showed 18-fold higher cGMP-RE binding capacity than the controls, whereas an electromobility shift assay indicated a specific binding for the cGMP-RE, and chromatin immunoprecipitation confirmed the binding of GREBP to the element under physiological conditions. By acting on cGMP-RE, GREBP inhibited the expression of a luciferase-coupled NPR1 promoter construct. In H295R cells, ANP heightened GREBP expression by 60% after just 3 h of treatment while inhibiting NPR1/GCA expression by 30%. Silencing GREBP with specific small interfering RNA increased the activity of the luciferase-coupled NPR1 promoter and GCA/NPR1 mRNA levels. GREBP is a nuclear protein mainly expressed in the heart. We report here the existence of a human-specific gene that acts as a transcriptional repressor of the NPR1/GCA gene.

摘要

NPR1/GCA(利钠肽受体 1/鸟苷酸环化酶 A)的表达受多种因素调控,包括 ANP(心房利钠肽)。在 ANP 刺激后,NPR1/GCA 通过 cGMP 依赖性机制下调其基因的转录活性。由于我们之前已经确定了一个负责这种 cGMP 敏感性的顺式作用元件,我们在这里继续探索新的潜在蛋白与 cGMP 反应元件(cGMP-RE)结合。我们使用酵母单杂交技术,以人类肾脏 cDNA 文库为研究对象,鉴定出一个能够与 cGMP-RE 结合的强阳性克隆。该克隆源自尚未确定功能的人类 1 号染色体(1p33.36)上的一个基因,其 cDNA 长 1083bp。我们将这个新蛋白命名为 GREBP(cGMP 反应元件结合蛋白)。DNA 结合实验显示,GREBP 对 cGMP-RE 的结合能力比对照组高 18 倍,而电泳迁移率变动分析则表明其对 cGMP-RE 具有特异性结合,染色质免疫沉淀实验在生理条件下也证实了 GREBP 与元件的结合。通过作用于 cGMP-RE,GREBP 抑制了与 NPR1 启动子构建体偶联的荧光素酶的表达。在 H295R 细胞中,ANP 在治疗仅 3 小时后,GREBP 的表达增加了 60%,而 NPR1/GCA 的表达则降低了 30%。用特异性小干扰 RNA 沉默 GREBP 增加了与 NPR1 启动子偶联的荧光素酶的活性和 GCA/NPR1 mRNA 水平。GREBP 是一种主要在心脏中表达的核蛋白。我们在此报告了一种人类特异性基因的存在,该基因作为 NPR1/GCA 基因的转录抑制剂发挥作用。

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