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钙调蛋白与孤儿核受体Errgamma结合的特性分析。

Characterization of calmodulin binding to the orphan nuclear receptor Errgamma.

作者信息

Hentschke Moritz, Schulze Christian, Süsens Ute, Borgmeyer Uwe

机构信息

Zentrum für Molekulare Neurobiologie Hamburg (ZMNH), Universität Hamburg, Martinistrasse 52, D-20246 Hamburg, Germany.

出版信息

Biol Chem. 2003 Mar;384(3):473-82. doi: 10.1515/BC.2003.053.

Abstract

The estrogen receptor-related receptor gamma (ERRgamma/ ERR3/NR3B3), a member of the nuclear receptor superfamily, activates transcription in the absence of ligands. In order to identify ligand-independent mechanisms of activation, we tested whether calmodulin (CaM), a key regulator of numerous cellular processes and a predominant intracellular receptor for Ca2+-signals, interacts with ERRgamma. In vitro pull-down experiments with calmodulin-Sepharose demonstrated a Ca2+-dependent interaction with cellularly expressed ERRgamma. As shown by truncation analysis, the CaM binding site is highly unusual in that it is composed of two discontinuous elements. Moreover, by surface plasmon resonance (SPR) biosensor technology, we detected a direct interaction of immobilized bacterially expressed ERR-gamma fusion protein with Ca2+-calmodulin. This is best described by a model which assumes a conformational change of the initially formed complex to a more stable form. Whereas in vitro DNA binding was calmodulin-independent, transient transfection analysis revealed a Ca2+-influx-dependent ERRgamma-mediated transcriptional activation of a luciferase reporter gene. Thus, we propose that CaM acts as a mediator in the Ca2+-dependent modulation of ERRgamma.

摘要

雌激素受体相关受体γ(ERRγ/ERR3/NR3B3)是核受体超家族的成员之一,在没有配体的情况下激活转录。为了确定不依赖配体的激活机制,我们测试了钙调蛋白(CaM),一种众多细胞过程的关键调节因子和Ca2+信号的主要细胞内受体,是否与ERRγ相互作用。用钙调蛋白-琼脂糖进行的体外下拉实验证明了与细胞表达的ERRγ存在Ca2+依赖性相互作用。截断分析表明,CaM结合位点非常独特,它由两个不连续的元件组成。此外,通过表面等离子体共振(SPR)生物传感器技术,我们检测到固定化的细菌表达的ERR-γ融合蛋白与Ca2+-钙调蛋白之间的直接相互作用。这可以用一个模型来最好地描述,该模型假设最初形成的复合物发生构象变化,转变为更稳定的形式。虽然体外DNA结合不依赖于钙调蛋白,但瞬时转染分析显示,荧光素酶报告基因的ERRγ介导的转录激活依赖于Ca2+内流。因此,我们提出CaM在Ca2+依赖性调节ERRγ中起介导作用。

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