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The DNA mismatch repair gene hMSH2 is a potent coactivator of oestrogen receptor α

机译:DNA错配修复基因hMSH2是雌激素受体α的有效共激活因子

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摘要

The DNA mismatch repair gene is a key regulator in the elimination of base–base mismatches and insertion/deletion loops (IDLs). Human MutS homologue 2 (hMSH2), originally identified as a human homologue of the bacterial MutS, is a tumour suppressor gene frequently mutated in hereditary nonpolyposis colorectal cancer. Hereditary nonpolyposis colorectal cancer is characterised by the early onset of colorectal cancer and the development of extracolonic cancers such as endometrial, ovarian, and urological cancers. Oestrogen receptor (ER) α and β are members of a nuclear receptor (NR) superfamily. Ligand-dependent transcription of ER is regulated by the p160 steroid receptor coactivator family, the thyroid hormone receptor-associated proteins/the vitamin D receptor-interacting proteins (TRAP/DRIP) mediator complex, and the TATA box-binding protein (TBP)-free TBP associated factor complex (TFTC) type histone acetyltransferase complex. Here, we report the interaction between ER α/β and hMSH2. Immunoprecipitation and glutathione-S-transferase pulldown assay revealed that ER α and hMSH2 interacted in a ligand-dependent manner, whereas ER β and hMSH2 interacted in a ligand-independent manner. Oestrogen receptor α/β bound to hMSH2 through the hMSH3/hMSH6 interaction domain of hMSH2. In a transient expression assay, hMSH2 potentiated the transactivation function of liganded ER α, but not that of ER β. These results suggest that hMSH2 may play an important role as a putative coactivator in ER α dependent gene expression.
机译:DNA错配修复基因是消除碱基错配和插入/缺失环(IDL)的关键调控因子。人类MutS同源物2(hMSH2),最初被鉴定为细菌MutS的人类同源物,是一种肿瘤抑制基因,经常在遗传性非息肉病性结直肠癌中突变。遗传性非息肉性大肠癌的特征是大肠癌的早期发作和结肠外癌的发展,例如子宫内膜癌,卵巢癌和泌尿系统癌。雌激素受体(ER)α和β是核受体(NR)超家族的成员。 ER的配体依赖性转录受p160类固醇受体共激活因子家族,甲状腺激素受体相关蛋白/维生素D受体相互作用蛋白(TRAP / DRIP)介导复合体和TATA盒结合蛋白(TBP)调控。游离TBP相关因子复合物(TFTC)型组蛋白乙酰转移酶复合物。在这里,我们报告ERα/β和hMSH2之间的相互作用。免疫沉淀和谷胱甘肽-S-转移酶下拉分析表明,ERα和hMSH2以配体依赖性方式相互作用,而ERβ和hMSH2以配体依赖性方式相互作用。雌激素受体α/β通过hMSH2的hMSH3 / hMSH6相互作用域与hMSH2结合。在瞬时表达测定中,hMSH2增强了配体ERα的反式激活功能,但不增强ERβ的反式激活功能。这些结果表明,hMSH2可能在ERα依赖性基因表达中作为推定的共激活因子发挥重要作用。

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