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Heterochromatin compaction is regulated by Suv4-20h1 to maintains skeletal muscle stem cells quiescence

机译:Suv4-20h1调节异染色质的紧实以维持骨骼肌干细胞的静止

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摘要

In this report, Boonsanay and colleagues describe a novel mechanism of maintenance of skeletal muscle stem cells [also known as satellite cells (SCs)] quiescence via the di-methyltransferase Suv4-20h1, regulator of heterochromatin formation. Conditional ablation of Suv4-20h1 in SCs leads notably to the loss of the histone modification H4K20me2 on the distal regulatory element of Myod combined with a relocation of the Myod locus toward a central position in the nucleus. This switch in nuclear compartment is correlated with decreased facultative H3K27me3 associated heterochromatin, and an increase in spontaneously activated MYOD-expressing SCs in homeostatic muscles. Consequently, Suv4-20h1 knock-out SCs demonstrate compromised stem cell potential, as they fail to efficiently self-renew and replenish the SC pool upon muscle injury. Strikingly, restoring MYOD expression alone rescues the levels of facultative chromatin and reverses the loss-of-quiescence phenotype.
机译:在此报告中,Boonsanay及其同事描述了通过异染色质形成调节剂二甲基转移酶Suv4-20h1维持骨骼肌干细胞[也称为卫星细胞(SCs)]静止的新机制。 Suv4-20h1在SC中的条件消融明显导致Myod远端调控元件上的组蛋白修饰H4K20me2丢失,同时Myod基因座朝着细胞核的中心位置重新定位。核区室中的这种转换与兼性H3K27me3相关的异染色质减少以及稳态肌肉中自发激活的表达MYOD的SC的增加有关。因此,Suv4-20h1敲除的SC表现出受损的干细胞潜力,因为它们在肌肉受伤时无法有效地自我更新和补充SC库。令人惊讶的是,仅恢复MYOD表达就能挽救兼性染色质的水平并逆转静止丢失的表型。

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