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Bromodomain inhibition of the coactivators CBP/EP300 facilitate cellular reprogramming

机译:溴琼瘤抑制共觉器CBP / EP300促进细胞重编程

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摘要

Silencing of the somatic cell type-specific genes is a critical yet poorly understood step in reprogramming. To uncover pathways that maintain cell identity, we performed a reprogramming screen using inhibitors of chromatin factors. Here, we identify acetyl-lysine competitive inhibitors targeting the bromodomains of coactivators CREB (cyclic-AMP response element binding protein) binding protein (CBP) and E1A binding protein of 300 kDa (EP300) as potent enhancers of reprogramming. These inhibitors accelerate reprogramming, are critical during its early stages and, when combined with DOT1L inhibition, enable efficient derivation of human induced pluripotent stem cells (iPSCs) with OCT4 and SOX2. In contrast, catalytic inhibition of CBP/EP300 prevents iPSC formation, suggesting distinct functions for different coactivator domains in reprogramming. CBP/EP300 bromodomain inhibition decreases somatic-specific gene expression, histone H3 lysine 27 acetylation (H3K27Ac) and chromatin accessibility at target promoters and enhancers. The master mesenchymal transcription factor PRRX1 is one such functionally important target of CBP/EP300 bromodomain inhibition. Collectively, these results show that CBP/EP300 bromodomains sustain cell-type-specific gene expression and maintain cell identity.
机译:沉默细胞类型特异性基因是重新编程的关键尚未理解的步骤。为了揭示维持细胞标识的途径,我们使用染色质因子的抑制剂进行了重编程屏幕。在此,我们鉴定靶向乙酰赖氨酸竞争性抑制剂,其靶向共觉器CREB(环-AMP响应元结合蛋白)结合蛋白(CBP)和300kDa(EP300)的E1A结合蛋白作为重新编程的有效增强剂。这些抑制剂加速重编程,在其早期阶段至关重要,并且当与DOT1L抑制结合时,使人诱导的人诱导的多能干细胞(IPSC)与OCT4和SOX2有效衍生。相比之下,CBP / EP300的催化抑制阻止IPSC形成,表明不同的共同激活域在重编程中的不同功能。 CBP / EP300溴琼瘤抑制减少了体细胞特异性基因表达,组蛋白H3赖氨酸27乙酰化(H3K27Ac)和染色质促进剂和增强剂的染色质可接近性。母间充质转录因子PRRX1是CBP / EP300溴染色瘤抑制的一种这种功能重要目标。总的来说,这些结果表明,CBP / EP300溴染色体维持细胞型特异性基因表达并维持细胞标识。

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