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Dexamethasone Induces Cardiomyocyte Terminal Differentiation via Epigenetic Repression of Cyclin D2 Gene

机译:地塞米松通过Cyclin D2基因的表观遗传抑制诱导心肌终末分化

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摘要

Dexamethasone treatment of newborn rats inhibited cardiomyocyte proliferation and stimulated premature terminal differentiation of cardiomyocytes in the developing heart. Yet mechanisms remain undetermined. The present study tested the hypothesis that the direct effect of glucocorticoid receptor-mediated epigenetic repression of cyclin D2 gene in the cardiomyocyte plays a key role in the dexamethasone-mediated effects in the developing heart. Cardiomyocytes were isolated from 2-day-old rats. Cells were stained with a cardiomyocyte marker α-actinin and a proliferation marker Ki67. Cyclin D2 expression was evaluated by Western blot and quantitative real-time polymerase chain reaction. Promoter methylation of CcnD2 was determined by methylated DNA immunoprecipitation (MeDIP). Overexpression of Cyclin D2 was conducted by transfection of FlexiCcnD2 (+CcnD2) construct. Treatment of cardiomyocytes isolated from newborn rats with dexamethasone for 48 hours significantly inhibited cardiomyocyte proliferation with increased binucleation and decreased cyclin D2 protein abundance. These effects were blocked with Ru486 (mifepristone). In addition, the dexamethasone treatment significantly increased cyclin D2 gene promoter methylation in newborn rat cardiomyocytes. 5-Aza-2'-deoxycytidine inhibited dexamethasone-mediated promoter methylation, recovered dexamethasone-induced cyclin D2 gene repression, and blocked the dexamethasone-elicited effects on cardiomyocyte proliferation and binucleation. In addition, the overexpression of cyclin D2 restored the dexamethasone-mediated inhibition of proliferation and increase in binucleation in newborn rat cardiomyocytes. The results demonstrate that dexamethasone acting on glucocorticoid receptors has a direct effect and inhibits proliferation and stimulates premature terminal differentiation of cardiomyocytes in the developing heart via epigenetic repression of cyclin D2 gene.
机译:新生鼠的地塞米松治疗可抑制发育中心脏中心肌细胞的增殖并刺激心肌细胞的过早终末分化。然而,机制仍然不确定。本研究检验了以下假设:心肌细胞中糖皮质激素受体介导的细胞周期蛋白D2基因表观遗传抑制的直接作用在心脏的地塞米松介导的作用中起着关键作用。从2天大的大鼠中分离出心肌细胞。细胞用心肌细胞标记物α-肌动蛋白和增殖标记物Ki67染色。通过蛋白质印迹和定量实时聚合酶链反应评估细胞周期蛋白D2的表达。 CcnD2的启动子甲基化通过甲基化的DNA免疫沉淀(MeDIP)确定。通过转染FlexiCcnD2(+ CcnD2)构建体进行Cyclin D2的过表达。地塞米松治疗新生大鼠心肌细胞48小时,可显着抑制心肌细胞增殖,并增加双核化程度并降低细胞周期蛋白D2蛋白的丰度。这些作用被Ru486(米非司酮)阻断。另外,地塞米松治疗显着增加新生大鼠心肌细胞中cyclin D2基因启动子的甲基化。 5-Aza-2'-脱氧胞苷抑制地塞米松介导的启动子甲基化,恢复地塞米松诱导的细胞周期蛋白D2基因阻遏,并阻止地塞米松引起的对心肌细胞增殖和双核的作用。此外,细胞周期蛋白D2的过表达恢复了地塞米松介导的新生大鼠心肌细胞增殖抑制和双核增加。结果表明,作用于糖皮质激素受体的地塞米松具有直接作用,并通过细胞周期蛋白D2基因的表观遗传抑制作用抑制发育中心脏中心肌细胞的过早分化。

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