State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.
J Biol Chem. 2013 Aug 16;288(33):23659-65. doi: 10.1074/jbc.M113.475608. Epub 2013 Jul 2.
PRC2 (Polycomb repressive complex 2) mediates epigenetic gene silencing by catalyzing the triple methylation of histone H3 Lys-27 (H3K27me3) to establish a repressive epigenetic state. PRC2 is involved in the regulation of many fundamental biological processes and is especially essential for embryonic stem cells. However, how the formation and function of PRC2 are regulated is largely unknown. Here, we show that a microRNA encoded by the imprinted Dlk1-Dio3 region of mouse chromosome 12, miR-323-3p, targets Eed (embryonic ectoderm development) mRNA, which encodes one of the core components of PRC2, the EED protein. Binding of miR-323-3p to Eed mRNA resulted in reduced EED protein abundance and cellular H3K27me3 levels, indicating decreased PRC2 activity. Such regulation seems to be conserved among mammals, at least between mice and humans. We demonstrate that induced pluripotent stem cells with varied developmental abilities had different miR-323-3p as well as EED and H3K27me3 levels, indicating that miR-323-3p may be involved in the regulation of stem cell pluripotency through affecting PRC2 activity. Mouse embryonic fibroblast cells had much higher miR-323-3p expression and nearly undetectable H3K27me3 levels. These findings identify miR-323-3p as a new regulator for PRC2 and provide a new approach for regulating PRC2 activity via microRNAs.
PRC2(多梳抑制复合物 2)通过催化组蛋白 H3 Lys-27(H3K27me3)的三甲基化来介导表观遗传基因沉默,从而建立抑制性表观遗传状态。PRC2 参与许多基本生物过程的调节,特别是对胚胎干细胞至关重要。然而,PRC2 的形成和功能如何被调节在很大程度上是未知的。在这里,我们表明,小鼠染色体 12 印记的 Dlk1-Dio3 区域编码的微小 RNA,miR-323-3p,靶向 Eed(胚胎外胚层发育)mRNA,该 mRNA 编码 PRC2 的核心组成部分之一,即 EED 蛋白。miR-323-3p 与 Eed mRNA 的结合导致 EED 蛋白丰度和细胞内 H3K27me3 水平降低,表明 PRC2 活性降低。这种调节似乎在哺乳动物中是保守的,至少在小鼠和人类之间是保守的。我们证明,具有不同发育能力的诱导多能干细胞具有不同的 miR-323-3p 以及 Eed 和 H3K27me3 水平,表明 miR-323-3p 可能通过影响 PRC2 活性参与干细胞多能性的调节。小鼠胚胎成纤维细胞具有更高的 miR-323-3p 表达和几乎检测不到的 H3K27me3 水平。这些发现确定了 miR-323-3p 是 PRC2 的一个新调节剂,并提供了一种通过 microRNAs 调节 PRC2 活性的新方法。