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The class I-specific HDAC inhibitor MS-275 modulates the differentiation potential of mouse embryonic stem cells

机译:I类特异性HDaC抑制剂ms-275调节小鼠胚胎干细胞的分化潜能

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摘要

Exploitation of embryonic stem cells (ESC) for therapeutic use and biomedical applications is severely hampered by the risk of teratocarcinoma formation. Here, we performed a screen of selected epi-modulating compounds and demonstrate that a transient exposure of mouse ESC to MS-275 (Entinostat), a class I histone deacetylase inhibitor (HDAC), modulates differentiation and prevents teratocarcinoma formation. Morphological and molecular data indicate that MS-275-primed ESCs are committed towards neural differentiation, which is supported by transcriptome analyses. Interestingly, in vitro withdrawal of MS-275 reverses the primed cells to the pluripotent state. In vivo, MS275-primed ES cells injected into recipient mice give only rise to benign teratomas but not teratocarcinomas with prevalence of neural-derived structures. In agreement, MS-275-primed ESC are unable to colonize blastocysts. These findings provide evidence that a transient alteration of acetylation alters the ESC fate.
机译:畸胎瘤形成的风险严重阻碍了胚胎干细胞(ESC)用于治疗和生物医学应用的开发。在这里,我们进行了选定的Epi调节化合物的筛选,并证明了小鼠ESC瞬时暴露于MS-275(Entinostat),I类组蛋白脱乙酰基酶抑制剂(HDAC),调节分化并防止畸胎癌的形成。形态和分子数据表明,MS-275引发的ESC致力于神经分化,这受到转录组分析的支持。有趣的是,MS-275的体外撤回可使初免细胞恢复为多能状态。在体内,注射到受体小鼠中的MS275引发的ES细胞仅产生良性畸胎瘤,而不会引起畸胎瘤,其普遍存在神经源性结构。一致的是,由MS-275引发的ESC无法在囊胚中定殖。这些发现提供了证据,即乙酰化的短暂改变会改变ESC的命运。

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