National Laboratory of Medical Molecular Biology, Department of Biochemistry and Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China.
J Cell Biochem. 2010 Aug 15;110(6):1457-63. doi: 10.1002/jcb.22703.
Covalent modifications of histone tails have fundamental roles in chromatin structure and function. Tri-methyl modification on lysine 27 of histone H3 (H3K27me3) usually correlates with gene repression that plays important roles in cell lineage commitment and development. Mash1 is a basic helix-loop-helix regulatory protein that plays a critical role in neurogenesis, where it expresses as an early marker. In this study, we have shown a decreased H3K27me3 accompanying with an increased demethylase of H3K27me3 (Jmjd3) at the promoter of Mash1 can elicit a dramatically efficient expression of Mash1 in RA-treated P19 cells. Over-expression of Jmjd3 in P19 cells also significantly enhances the RA-induced expression and promoter activity of Mash1. By contrast, the mRNA expression and promoter activity of Mash1 are significantly reduced, when Jmjd3 siRNA or dominant negative mutant of Jmjd3 is introduced into the P19 cells. Chromatin immunoprecipitation assays show that Jmjd3 is efficiently recruited to a proximal upstream region of Mash1 promoter that is overlapped with the specific binding site of Hes1 in RA-induced cells. Moreover, the association between Jmjd3 and Hes1 is shown in a co-Immunoprecipitation assay. It is thus likely that Jmjd3 is recruited to the Mash1 promoter via Hes1. Our results suggest that the demethylase activity of Jmjd3 and its mediator Hes1 for Mash1 promoter binding are both required for Jmjd3 enhanced efficient expression of Mash1 gene in the early stage of RA-induced neuronal differentiation of P19 cells.
组蛋白尾部的共价修饰在染色质结构和功能中起着重要作用。组蛋白 H3 赖氨酸 27 的三甲基化(H3K27me3)通常与基因抑制相关,在细胞谱系决定和发育中起着重要作用。Mash1 是一种基本螺旋-环-螺旋调节蛋白,在神经发生中起着关键作用,在神经发生中作为早期标志物表达。在这项研究中,我们发现 RA 处理的 P19 细胞中 Mash1 启动子处的 H3K27me3 去甲基化酶(Jmjd3)的表达增加伴随着 H3K27me3 的减少,从而导致 Mash1 的表达显著增加。Jmjd3 在 P19 细胞中的过表达也显著增强了 RA 诱导的 Mash1 表达和启动子活性。相比之下,当将 Jmjd3 siRNA 或 Jmjd3 的显性负突变引入 P19 细胞时,Mash1 的 mRNA 表达和启动子活性显著降低。染色质免疫沉淀分析表明,Jmjd3 有效地被招募到 Mash1 启动子的近端上游区域,该区域与 RA 诱导细胞中 Hes1 的特异性结合位点重叠。此外,在共免疫沉淀实验中显示了 Jmjd3 和 Hes1 之间的关联。因此,Jmjd3 可能通过 Hes1 被招募到 Mash1 启动子上。我们的结果表明,Jmjd3 的去甲基化酶活性及其介导的 Hes1 与 Mash1 启动子的结合对于 Jmjd3 在 RA 诱导的 P19 细胞神经分化早期增强 Mash1 基因的有效表达都是必需的。