1 CAS Key Laboratory of Receptor Research, Department of Neuropharmacology, Shanghai Institute of Materia Medica, University of Chinese Academy of Sciences, Shanghai, China.
2 Department of Neuropharmacology, Shanghai Institute of Materia Medica, University of Chinese Academy of Sciences, Beijing, China.
Stem Cells Dev. 2019 May 15;28(10):649-658. doi: 10.1089/scd.2018.0258. Epub 2019 Apr 25.
Epigenetic modifications play an important role in neural development. Trimethylated histone H3 at lysine 27 (H3K27me3) is a repressive epigenetic marker that mediates tissue development. In this study, we demonstrate that H3K27me3 and histone methyl transferase Ezh2 regulated the development of dopaminergic (DA) neurons in vitro and in vivo. We found that H3K27me3 increased during differentiation of ventral midbrain-derived neural stem cells (VM-NSCs). However, histone demethylase selective inhibitor GSK-J1 increased H3K27me3 level and decreased the expression of tyrosine hydroxylase. Treated with Ezh2-selective inhibitor EPZ005687 repressed the trimethylation of H3K27 and enhanced differentiation of DA neurons in VM-NSCs cultures. Furthermore, Ezh2 inhibition promoted the expression of DA neurons developmental-related factors by modifying H3K27 trimethylation on the relevant promoter regions. Moreover, the effect of Ezh2 inhibition-mediated DA neurons differentiation was blocked by the expression of shRNA specific for . In vivo, Ezh2 decreased and resulted in a reduction of H3K27me3 in developing midbrain. Deletion of by RNA interference approach promoted differentiation of DA neurons during midbrain development. Overexpression of enhanced cell self-renewal and did not affect differentiation of DA neurons.
表观遗传修饰在神经发育中发挥着重要作用。组蛋白 H3 赖氨酸 27 三甲基化 (H3K27me3) 是一种抑制性的表观遗传标记,介导组织发育。在这项研究中,我们证明 H3K27me3 和组蛋白甲基转移酶 Ezh2 调控了体外和体内多巴胺能 (DA) 神经元的发育。我们发现 H3K27me3 在腹侧中脑源性神经干细胞 (VM-NSCs) 的分化过程中增加。然而,组蛋白去甲基化酶选择性抑制剂 GSK-J1 增加了 H3K27me3 水平,降低了酪氨酸羟化酶的表达。用 Ezh2 选择性抑制剂 EPZ005687 处理可抑制 H3K27 的三甲基化,增强 VM-NSCs 培养物中 DA 神经元的分化。此外,Ezh2 抑制通过修饰相关启动子区域上的 H3K27 三甲基化来促进 DA 神经元发育相关因子的表达。此外,Ezh2 抑制介导的 DA 神经元分化的作用被针对 的 shRNA 的表达所阻断。在体内,Ezh2 减少导致发育中中脑的 H3K27me3 减少。通过 RNA 干扰方法敲除 促进中脑发育过程中 DA 神经元的分化。过表达 增强了细胞自我更新能力,并不影响 DA 神经元的分化。