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Reversine 通过表观遗传沉默 miR-133a 诱导谱系定型细胞的多能性。

Reversine induces multipotency of lineage-committed cells through epigenetic silencing of miR-133a.

机构信息

Research Center for Epigenome Regulation, School of Pharmacy, Sungkyunkwan University, Suwon 440-746, Republic of Korea.

College of Pharmacy, Yonsei Institute of Pharmaceutical Sciences, Yonsei University, Incheon 406-840, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2014 Feb 28;445(1):255-62. doi: 10.1016/j.bbrc.2014.02.002. Epub 2014 Feb 7.

Abstract

Reversine has been shown to induce dedifferentiation of C2C12 murine myoblasts into multipotent progenitor cells. However, little is known about the key regulators mediating the dedifferentiation induced by reversine. Here, we show that large scale miRNA gene expression profiling of reversine-treated C2C12 myoblasts identifies a down-regulated miRNA, miR-133a, involved in dedifferentiation of myoblasts. Reversine treatment results in up- and down-regulated miRNA profiles. Among miRNAs affected by reversine, the level of muscle-specific miR-133a, which has been shown to be up-regulated during muscle development and to suppress differentiation into other lineages, is markedly reduced by treatment of C2C12 myoblasts with reversine. In parallel, reversine decreases the expression and recruitment of myogenic factor, SRF, to the enhancer regions of miR-133a. Sequentially, down-regulation of miR-133a by reversine is accompanied by a decrease in active histone modifications including trimethylation of histone H3K4 and H3K36, phosphorylation of H3S10, and acetylation of H3K14 on the miR-133a promoter, leading to dissociation of RNA polymerase II from the promoter. Furthermore, inhibition of miR-133a by transfection of C2C12 myoblasts with miR-133a inhibitor increases the expression of osteogenic lineage marker, Ogn, and adipotenic lineage marker, ApoE, similar to that in response to reversine. In contrast, the co-overexpression of miR-133a mimic reversed the effect of reversine on C2C12 myoblast dedifferentiation. Taken together, the results indicate that reversine induces a multipotency of C2C12 myoblasts by suppression of miR-133a expression through depletion of active histone modifications, and suggest that miR-133a is a potential miRNA regulating the reversine-induced dedifferentiation. Collectively, our findings provide a mechanistic rationale for the application of reversine to dedifferentiation of somatic cells.

摘要

雷维辛已被证明可诱导 C2C12 鼠肌母细胞去分化为多能祖细胞。然而,关于雷维辛诱导去分化的关键调节因子知之甚少。在这里,我们显示大规模 miRNA 基因表达谱分析表明,雷维辛处理的 C2C12 肌母细胞中下调的 miRNA 是 miR-133a,它参与肌母细胞的去分化。雷维辛处理导致 miRNA 表达谱上调和下调。在受雷维辛影响的 miRNA 中,肌肉特异性 miR-133a 的水平明显降低,miR-133a 在肌肉发育过程中被证明上调,并抑制分化为其他谱系。同时,雷维辛降低了肌生成因子 SRF 募集到 miR-133a 增强子区域的表达。随后,雷维辛下调 miR-133a 伴随着活性组蛋白修饰的减少,包括组蛋白 H3K4 和 H3K36 的三甲基化、H3S10 的磷酸化以及 miR-133a 启动子上的 H3K14 乙酰化,导致 RNA 聚合酶 II 从启动子上解离。此外,用 miR-133a 抑制剂转染 C2C12 肌母细胞抑制 miR-133a 可增加成骨谱系标记物 Ogn 和脂肪形成谱系标记物 ApoE 的表达,与雷维辛的反应相似。相反,miR-133a 模拟物的共表达逆转了雷维辛对 C2C12 肌母细胞去分化的作用。总之,这些结果表明,雷维辛通过耗尽活性组蛋白修饰来抑制 miR-133a 的表达,从而诱导 C2C12 肌母细胞的多能性,并表明 miR-133a 是一种潜在的 miRNA 调节雷维辛诱导的去分化。总的来说,我们的研究结果为雷维辛应用于体细胞去分化提供了机制依据。

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