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The small chromatin-binding protein p8 coordinates the association of anti-proliferative and pro-myogenic proteins at the myogenin promoter

机译:小染色质结合蛋白p8协调着 肌生成素启动子上的抗增殖和促肌原蛋白

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摘要

Quiescent muscle progenitors called satellite cells persist in adult skeletal muscle and, upon injury to muscle, re-enter the cell cycle and either undergo self-renewal or differentiate to regenerate lost myofibers. Using synchronized cultures of C2C12 myoblasts to model these divergent programs, we show that p8 (also known as Nupr1), a G1-induced gene, negatively regulates the cell cycle and promotes myogenic differentiation. p8 is a small chromatin protein related to the high mobility group (HMG) family of architectural factors and binds to histone acetyltransferase p300 (p300, also known as CBP). We confirm this interaction and show that p300-dependent events (Myc expression, global histone acetylation and post-translational acetylation of the myogenic regulator MyoD) are all affected in p8-knockdown myoblasts, correlating with repression of MyoD target-gene expression and severely defective differentiation. We report two new partners for p8 that support a role in muscle-specific gene regulation: p68 (Ddx5), an RNA helicase reported to bind both p300 and MyoD, and MyoD itself. We show that, similar to MyoD and p300, p8 and p68 are located at the myogenin promoter, and that knockdown of p8 compromises chromatin association of all four proteins. Thus, p8 represents a new node in a chromatin regulatory network that coordinates myogenic differentiation with cell-cycle exit.
机译:静止的肌肉祖细胞被称为卫星细胞,持续存在于成年骨骼肌中,一旦受到肌肉损伤,就会重新进入细胞周期,并进行自我更新或分化以再生失去的肌纤维。使用C2C12成肌细胞的同步培养物来建模这些不同的程序,我们显示p8(也称为Nupr1),一种G1诱导的基因,负调控细胞周期并促进成肌分化。 p8是一种小染色质蛋白,与建筑因子的高迁移率族(HMG)家族相关,并与组蛋白乙酰转移酶p300(p300,也称为CBP)结合。我们证实了这种相互作用,并表明p300依赖事件(Myc表达,成肌调节剂MyoD的整体组蛋白乙酰化和翻译后乙酰化)均在p8敲低的成肌细胞中受到影响,与抑制MyoD靶基因表达和严重缺陷有关。差异化。我们报道了p8的两个新伙伴,它们在肌肉特异性基因调控中发挥作用:p68(Ddx5),一种据报道可与p300和MyoD结合的RNA解旋酶,以及MyoD本身。我们显示,类似于MyoD和p300,p8和p68位于肌生成素启动子上,并且p8的敲低损害了所有四个蛋白质的染色质缔合。因此,p8代表了染色质调节网络中的一个新节点,该节点可协调肌原性分化与细胞周期退出。

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