Department of Biochemistry and Molecular Biology and Simmons Cancer Institute, Southern Illinois University School of Medicine, Carbondale, IL, 62901, USA.
Epigenetics Chromatin. 2018 Aug 17;11(1):46. doi: 10.1186/s13072-018-0217-x.
JARID2 is a non-catalytic member of the polycomb repressive complex 2 (PRC2), which is known to regulate developmental target genes in embryonic stem cells. Here, we provide mechanistic insight into the modulation of Wnt signaling by JARID2 during murine skeletal muscle differentiation.
We show that JARID2 is expressed in proliferating myoblasts, but downregulated upon muscle differentiation. Unexpectedly, depletion of JARID2 or the catalytic subunit of the PRC2 complex, EZH2, inhibited differentiation, suggesting that JARID2 and the PRC2 complex are required to initiate this process. Expression of the myogenic regulatory factors required to promote differentiation, MYOD and MYOG, was downregulated in the absence of JARID2, even though decreases in the methylation of histone H3 lysine 27 (H3K27) were observed on both promoters. We found that activation of the Wnt signaling pathway upregulated MYOD and restored differentiation. Activation of the Wnt pathway in JARID2 depleted cells caused β-catenin to translocate to the nucleus, where it bound to and activated the Myod1 promoter. We show that the Wnt antagonist SFRP1 is highly upregulated in the absence of JARID2 and is a direct target of JARID2 and the PRC2 complex. Ectopic expression of SFRP1 blocked MYOD and late muscle gene expression and inhibited the translocation of β-catenin to the nucleus. Finally, we show that JARID2 and SFRP1 are inversely correlated in melanoma, confirming that the JARID2-mediated repression of SFRP1 extends beyond skeletal muscle and has important implications in many cellular systems, including cancer.
We show that JARID2 and the PRC2 complex regulate muscle differentiation by modulating Wnt signaling through the direct repression of Wnt antagonists.
JARID2 是多梳抑制复合物 2(PRC2)的非催化成员,已知其在胚胎干细胞中调节发育靶基因。在这里,我们提供了 JARID2 在小鼠骨骼肌分化过程中调节 Wnt 信号的机制见解。
我们表明 JARID2 在增殖的成肌细胞中表达,但在肌肉分化时下调。出乎意料的是,JARID2 或 PRC2 复合物的催化亚基 EZH2 的耗竭抑制了分化,表明 JARID2 和 PRC2 复合物是启动该过程所必需的。促进分化所需的肌调节因子 MYOD 和 MYOG 的表达在没有 JARID2 的情况下下调,尽管在两个启动子上都观察到组蛋白 H3 赖氨酸 27(H3K27)的甲基化减少。我们发现 Wnt 信号通路的激活上调了 MYOD 并恢复了分化。在 JARID2 耗尽的细胞中激活 Wnt 通路导致β-catenin 易位到细胞核,在细胞核中它与 Myod1 启动子结合并激活该启动子。我们表明,在没有 JARID2 的情况下,Wnt 拮抗剂 SFRP1 高度上调,并且是 JARID2 和 PRC2 复合物的直接靶标。SFRP1 的异位表达阻断了 MYOD 和晚期肌肉基因表达,并抑制了β-catenin 易位到细胞核。最后,我们表明 JARID2 和 SFRP1 在黑色素瘤中呈负相关,证实 JARID2 介导的 SFRP1 抑制不仅限于骨骼肌,而且对许多细胞系统具有重要意义,包括癌症。
我们表明 JARID2 和 PRC2 复合物通过直接抑制 Wnt 拮抗剂来调节 Wnt 信号,从而调节肌肉分化。