Biotech Research and Innovation Centre, University of Copenhagen, Denmark.
EMBO J. 2011 Nov 16;30(22):4586-600. doi: 10.1038/emboj.2011.383.
H3K4 methylation is associated with active transcription and in combination with H3K27me3 thought to keep genes regulating development in a poised state. The contribution of enzymes regulating trimethylation of lysine 4 at histone 3 (H3K4me3) levels to embryonic stem cell (ESC) self-renewal and differentiation is just starting to emerge. Here, we show that the H3K4me2/3 histone demethylase Jarid1b (Kdm5b/Plu1) is dispensable for ESC self-renewal, but essential for ESC differentiation along the neural lineage. By genome-wide location analysis, we demonstrate that Jarid1b localizes predominantly to transcription start sites of genes encoding developmental regulators, of which more than half are also bound by Polycomb group proteins. Virtually all Jarid1b target genes are associated with H3K4me3 and depletion of Jarid1b in ESCs leads to a global increase of H3K4me3 levels. During neural differentiation, Jarid1b-depleted ESCs fail to efficiently silence lineage-inappropriate genes, specifically stem and germ cell genes. Our results delineate an essential role for Jarid1b-mediated transcriptional control during ESC differentiation.
H3K4 甲基化与活跃的转录相关,与 H3K27me3 结合被认为可以使调控发育的基因保持在一个预备状态。调节组蛋白 H3 赖氨酸 4 三甲基化(H3K4me3)水平的酶对胚胎干细胞(ESC)自我更新和分化的贡献才刚刚开始显现。在这里,我们表明 H3K4me2/3 组蛋白去甲基化酶 Jarid1b(Kdm5b/Plu1)对于 ESC 的自我更新不是必需的,但对于 ESC 沿着神经谱系的分化是必需的。通过全基因组定位分析,我们证明了 Jarid1b 主要定位于编码发育调节剂的基因的转录起始位点,其中超过一半的基因也被 Polycomb 组蛋白结合。实际上,Jarid1b 的所有靶基因都与 H3K4me3 相关,并且在 ESC 中耗尽 Jarid1b 会导致 H3K4me3 水平的全局增加。在神经分化过程中,Jarid1b 耗尽的 ESC 无法有效地沉默谱系不当的基因,特别是干细胞和生殖细胞基因。我们的结果描绘了 Jarid1b 介导的转录控制在 ESC 分化过程中的重要作用。