首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Histone hyperacetylation induces demethylation of reelin and 67-kDa glutamic acid decarboxylase promoters
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Histone hyperacetylation induces demethylation of reelin and 67-kDa glutamic acid decarboxylase promoters

机译:组蛋白高乙酰化诱导瑞林和67 kDa谷氨酸脱羧酶启动子脱甲基

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Reelin and glutamic acid decarboxylase 67 (GAD_(67)) expression down-regulation in GABAergic interneurons of mice exposed to protracted treatment with L-methionine (MET) is attributed to RELN and GAD_(67) promoter cytosine-5-hypermethylation. This process recruits various transcription repressor proteins [methyl-CpG binding protein (MeCP2) and histone deacetylases (HDACs)] leading to formation of transcriptionally inactive chromatin. Here, we tested the hypothesis that RELN and GAD_(67) promoter cytosine-5-hypermethylation induced by a protracted MET treatment is reversible and that repeated administration of HDAC inhibitors influences this process by an activation of DNA-cytosine-5-demeth-ylation. In the frontal cortices of mice receiving MET (5.2 mmol/kg twice a day for 7 days) and killed at 1, 2, 3, 6, and 9 days during MET washout, we measured RELN (base pairs -414 to -242) and GAD_(67) (base pairs -1133 to -942) promoter methylation and MeCP2 bound to methylated cytosines of RELN (base pairs -520 to -198) and GAD_(67) (base pairs -446 to -760) promoters. Levels of RELN and GAD_(67) promoter hypermethylation induced by 7 days of MET treatment declines by ≈50% after 6 days of MET withdrawal. When valproate (VPA) (2 mmol/kg) or MS-275 (0.015-0.12 mmol/kg), two structurally unrelated HDAC inhibitors, was given after MET treatment termination, VPA and MS-275 dramatically accelerated RELN and GAD_(67) promoter demethylation in 48-72 h. At these doses, VPA and MS-275 effectively increased the binding of acetylhistone-3 to RELN and GAD_(67) promoters, suggesting that histone-3 covalent modifications modulate DNA demethylation in terminally differentiated neurons, supporting the view that, directly or indirectly, HDAC inhibitors may facilitate DNA demethylation.
机译:长期暴露于L-蛋氨酸(MET)的小鼠GABA能神经元中Reelin和谷氨酸脱羧酶67(GAD_(67))表达下调归因于RELN和GAD_(67)启动子胞嘧啶5-高甲基化。该过程募集了各种转录阻遏蛋白[甲基-CpG结合蛋白(MeCP2)和组蛋白脱乙酰基酶(HDACs)],导致形成了无转录活性的染色质。在这里,我们测试了以下假设,即长期MET处理诱导的RELN和GAD_(67)启动子胞嘧啶5-高甲基化是可逆的,并且HDAC抑制剂的重复给药通过激活DNA-cytosine-5-demethylation来影响此过程。 。在接受MET(每天两次,两次5.2 mmol / kg,连续7天)并在MET冲洗期间分别于1、2、3、6和9天被杀死的小鼠的额皮质中,我们测量了RELN(碱基对-414至-242)和GAD_(67)(碱基对-1133至-942)启动子甲基化和MeCP2与RELN(碱基对-520至-198)和GAD_(67)(碱基对-446至-760)启动子的甲基化胞嘧啶结合。 MET撤药6天后,MET处理7天诱导的RELN和GAD_(67)启动子高甲基化水平降低了约50%。当MET治疗终止后,使用丙戊酸盐(VPA)(2 mmol / kg)或MS-275(0.015-0.12 mmol / kg)时,两种结构上无关的HDAC抑制剂被给予时,VPA和MS-275显着加速了RELN和GAD_(67)启动子在48-72小时内脱甲基。在这些剂量下,VPA和MS-275有效地增强了乙酰组蛋白3与RELN和GAD_(67)启动子的结合,表明组蛋白3的共价修饰可调节终末分化神经元中的DNA脱甲基,从而支持以下观点: HDAC抑制剂可能促进DNA脱甲基。

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