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PRMT5 抑制促进间充质基质细胞的成骨分化,并抑制基础干扰素刺激基因表达。

PRMT5 inhibition promotes osteogenic differentiation of mesenchymal stromal cells and represses basal interferon stimulated gene expression.

机构信息

Department of Oral Medicine, Infection and Immunity, Harvard School of Dental Medicine, Harvard University, Boston, USA.

Department of Oral Medicine, Infection and Immunity, Harvard School of Dental Medicine, Harvard University, Boston, USA.

出版信息

Bone. 2018 Dec;117:37-46. doi: 10.1016/j.bone.2018.08.025. Epub 2018 Sep 3.

Abstract

Protein arginine methyltransferases (PRMTs) catalyze symmetric and asymmetric methylation on arginine residues of multiple protein targets including histones and have essential roles in organismal development and disease. PRMT5 mediates symmetric di-methylation (sDMA) of arginine 2 (H3R2me2s) and arginine 8 on histone 3 (H3R8me2s), arginine 3 on histones 2A and 4 (H2A/H4R3me2s) as well as several non-histone substrates like Sm proteins. Here, we found that selective inhibition of PRMT5 in mesenchymal stromal cells (MSCs) led to a reduction in colony forming units (CFUs) and increased osteoblast differentiation. PRMT5 inhibition blocked global symmetric dimethylation of H3R8 and H4R3 but not on H3R2. Genome-wide expression analysis by total RNA sequencing of mesenchymal stromal cells undergoing osteogenic differentiation revealed significant reduction in the intrinsic expression of several interferon-stimulated genes (ISGs) upon PRMT5 inhibition. Effects of PRMT5 inhibition on basal ISG expression and osteogenic differentiation was effectively blocked by exogenous activation of type I IFN signaling. Together, these results indicate important functions for PRMT5 in the regulation of basal interferon gene expression in MSCs and in the control of differentiation potential of MSCs during osteogenic differentiation.

摘要

蛋白质精氨酸甲基转移酶(PRMTs)催化多种蛋白质靶标的精氨酸残基的对称和非对称甲基化,包括组蛋白,并在生物体发育和疾病中发挥重要作用。PRMT5 介导组蛋白 3 上精氨酸 2(H3R2me2s)和精氨酸 8(H3R8me2s)、组蛋白 2A 和 4 上精氨酸 3(H2A/H4R3me2s)以及 Sm 蛋白等几种非组蛋白底物的对称二甲基化(sDMA)。在这里,我们发现间质基质细胞(MSCs)中 PRMT5 的选择性抑制导致集落形成单位(CFUs)减少和成骨细胞分化增加。PRMT5 抑制阻断了 H3R8 和 H4R3 的全局对称二甲基化,但不阻断 H3R2。对间质基质细胞进行成骨分化的总 RNA 测序的全基因组表达分析显示,PRMT5 抑制后,几种干扰素刺激基因(ISGs)的内在表达显著降低。PRMT5 抑制对基础 ISG 表达和成骨分化的影响可被 I 型 IFN 信号的外源性激活有效阻断。综上所述,这些结果表明 PRMT5 在调节 MSCs 中基础干扰素基因表达和控制 MSCs 在成骨分化过程中的分化潜能方面具有重要功能。

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