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Myocyte-specific enhancer factor 2 and thyroid hormone receptor associate and synergistically activate the alpha-cardiac myosin heavy-chain gene.

机译:心肌细胞特异性增强因子2和甲状腺激素受体结合并协同激活α-心脏肌球蛋白重链基因。

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The muscle-specific regulatory region of the alpha-cardiac myosin heavy-chain (MHC) gene contains the thyroid hormone response element (TRE) and two A/T-rich DNA sequences, designated A/T1 and A/T2, the putative myocyte-specific enhancer factor 2 (MEF2) binding sites. We investigated the roles of the TRE and MEF2 binding sites and the potential interaction between thyroid hormone receptor (TR) and MEF2 proteins regulating the alpha-MHC promoter. Deletion mutation analysis indicated that both the A/T2 motif and TRE were required for muscle-specific expression of the alpha-MHC gene. The alpha-MHC enhancer containing both the A/T2 motif and TRE was synergistically activated by coexpression of MEF2 and TR in nonmuscle cells, whereas neither factor by itself activated the alpha-MHC reporters. The reporter construct containing the A/T2 sequence and the TRE linked to a heterologous promoter also showed synergistic activation by coexpression of MEF2 and TR in nonmuscle cells. Moreover, protein binding assays demonstrated that MEF2 and TR specifically bound to one another in vitro and in vivo. The MADS domain of MEF2 and the DNA-binding domain of TR were necessary and sufficient to mediate their physical interaction. Our results suggest that the members of the MADS family (MEF2) and steroid receptor superfamily (TR) interact with one another to synergistically activate the alpha-cardiac MHC gene expression.
机译:α-心肌肌球蛋白重链(MHC)基因的肌肉特异性调节区包含甲状腺激素反应元件(TRE)和两个富含A / T的DNA序列,命名为A / T1和A / T2(假定的心肌细胞)特异性增强子因子2(MEF2)结合位点。我们研究了TRE和MEF2结合位点的作用以及甲状腺激素受体(TR)和调节α-MHC启动子的MEF2蛋白之间的潜在相互作用。缺失突变分析表明,肌肉特异性表达α-MHC基因需要A / T2基序和TRE。包含A / T2基序和TRE的α-MHC增强子在非肌肉细胞中通过MEF2和TR的共表达被协同激活,而两个因子本身都不激活α-MHC报道分子。含有A / T2序列和与异源启动子连接的TRE的报告基因构建体也通过在非肌肉细胞中共表达MEF2和TR表现出协同激活作用。此外,蛋白质结合测定法证明MEF2和TR在体外和体内特异性地彼此结合。 MEF2的MADS结构域和TR的DNA结合结构域对于介导它们的物理相互作用是必要和充分的。我们的结果表明,MADS家族(MEF2)和类固醇受体超家族(TR)的成员彼此相互作用,以协同激活α-心脏MHC基因表达。

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