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FHL2、UBC9和PIAS1是新型雌激素受体α相互作用蛋白。

FHL2, UBC9, and PIAS1 are novel estrogen receptor alpha-interacting proteins.

作者信息

Kobayashi Sakiko, Shibata Hirotaka, Yokota Kenichi, Suda Noriko, Murai Ayano, Kurihara Isao, Saito Ikuo, Saruta Takao

机构信息

Department of Internal Medicine, School of Medicine, Keio University, Tokyo, Japan.

出版信息

Endocr Res. 2004 Nov;30(4):617-21. doi: 10.1081/erc-200043789.

Abstract

Estrogen plays important roles in the pathophysiology of atherosclerosis and cardiovascular diseases mediated by estrogen receptor alpha (ERalpha). To elucidate the molecular mechanisms, we screened ERalpha-interacting proteins from a human heart cDNA library using a yeast two-hybrid system, and identified the four and a half of LIM-only protein 2 (FHL2). FHL2 interacted with ERalpha in the presence of 17beta-estradiol, but not of tamoxifen or raloxifene in yeast. FHL2 mainly interacted with N-terminal A/B domain of ERalpha but not C-terminal ligand-binding domain. However, overexpression of full-length FHL2 did not affect ERalpha-dependent transcriptional activities of a reporter containing 3 copies of estrogen response element in COS-1 cells. Since tissue distribution of FHL2 was highly restricted to the heart, the function of FHL2 may be observed in a cell type- or promoter-specific manner. We have also detected strong interactions of ERalpha with Ubc9 and PIAS1 in yeast. Ubc9 and PIAS1, small ubiquitin-related modifier-1 (SUMO-1) conjugating enzyme and ligase, respectively, markedly interacted with ERalpha in a 17beta-estradiol-dependent manner. These proteins mainly interacted with the DNA-binding and ligand-binding domains of ERalpha. Overexpression of Ubc9 or PIAS1 potentiated ERalpha-mediated transcriptional activities in COS-1 cells in a dose-dependent manner, indicating that both Ubc9 and PIAS1 function as coactivators of ERalpha. In addition, the SUMOylation-defective mutant, Ubc9 (C93S) continued to enhance ERalpha-dependent transcriptional activities. These findings suggest that coactivator abilities and SUMOylation capacities of Ubc9 and PIAS1 are separable and distinct. The present studies indicate that ERalpha exhibit tissue-specific functions utilizing multiple tissue-restricted receptor-interacting proteins.

摘要

雌激素在由雌激素受体α(ERα)介导的动脉粥样硬化和心血管疾病的病理生理学中发挥重要作用。为了阐明其分子机制,我们使用酵母双杂交系统从人心脏cDNA文库中筛选与ERα相互作用的蛋白,并鉴定出仅含四个半LIM结构域的蛋白2(FHL2)。在酵母中,FHL2在17β-雌二醇存在下与ERα相互作用,但在他莫昔芬或雷洛昔芬存在下则不相互作用。FHL2主要与ERα的N端A/B结构域相互作用,而不与C端配体结合结构域相互作用。然而,全长FHL2的过表达并不影响COS-1细胞中含有3个雌激素反应元件拷贝的报告基因的ERα依赖性转录活性。由于FHL2的组织分布高度局限于心脏,FHL2的功能可能以细胞类型或启动子特异性的方式被观察到。我们还在酵母中检测到ERα与Ubc9和PIAS1之间有强烈的相互作用。Ubc9和PIAS1分别是小泛素相关修饰物-1(SUMO-1)缀合酶和连接酶,它们以17β-雌二醇依赖性方式与ERα显著相互作用。这些蛋白主要与ERα的DNA结合和配体结合结构域相互作用。Ubc9或PIAS1的过表达以剂量依赖性方式增强了COS-1细胞中ERα介导的转录活性,表明Ubc9和PIAS1均作为ERα的共激活因子发挥作用。此外,SUMO化缺陷突变体Ubc9(C93S)持续增强ERα依赖性转录活性。这些发现表明,Ubc9和PIAS1的共激活因子能力和SUMO化能力是可分离且不同的。本研究表明,ERα利用多种组织限制性受体相互作用蛋白表现出组织特异性功能。

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