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Trrap-dependent histone acetylation specifically regulates cell-cycle gene transcription to control neural progenitor fate decisions

机译:捕集依赖的组蛋白乙酰化专门调节细胞周期基因转录,以控制神经祖细胞的命运决定

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摘要

Fate decisions in neural progenitor cells are orchestrated via multiple pathways, and the role of histone acetylation in these decisions has been ascribed to a general function promoting gene activation. Here, we show that the histone acetyltransferase (HAT) cofactor transformation/transcription domain-associated protein (Trrap) specifically regulates activation of cell-cycle genes, thereby integrating discrete cell-intrinsic programs of cell-cycle progression and epigenetic regulation of gene transcription in order to control neurogenesis. Deletion of Trrap impairs recruitment of HATs and transcriptional machinery specifically to E2F cell-cycle target genes, disrupting their transcription with consequent cell-cycle lengthening specifically within cortical apical neural progenitors (APs). Consistently, Trrap conditional mutants exhibit microcephaly because of premature differentiation of APs into intermediate basal progenitors and neurons, and overexpressing cell-cycle regulators in vivo can rescue these premature differentiation defects. These results demonstrate an essential and highly specific role for Trrap-mediated histone regulation in controlling cell-cycle progression and neurogenesis.
机译:神经祖细胞中的命运决定是通过多种途径进行的,而组蛋白乙酰化在这些决定中的作用已归因于促进基因激活的一般功能。在这里,我们显示了组蛋白乙酰转移酶(HAT)辅助因子转化/转录域相关蛋白(Trrap)专门调节细胞周期基因的激活,从而整合了细胞周期进程的离散细胞内在程序和基因转录的表观遗传调控。为了控制神经发生。删除Trrap会损害HAT的募集和转录机制,尤其是针对E2F细胞周期靶基因的转录,破坏它们的转录,从而延长细胞周期,尤其是在皮层顶神经祖细胞(AP)中。一致地,由于raps的过早分化为中间基底祖细胞和神经元,Trrap条件突变体表现出小头畸形,体内过表达细胞周期调节因子可以挽救这些过早的分化缺陷。这些结果证明了Trrap介导的组蛋白调节在控制细胞周期进程和神经发生中的重要和高度特异性的作用。

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