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ARID4B对小鼠胚胎干细胞向中胚层和内胚层的分化至关重要,它将表观遗传学与多能性退出联系起来。

ARID4B is critical for mouse embryonic stem cell differentiation towards mesoderm and endoderm, linking epigenetics to pluripotency exit.

作者信息

Terzi Cizmecioglu Nihal, Huang Jialiang, Keskin Ezgi G, Wang Xiaofeng, Esen Idil, Chen Fei, Orkin Stuart H

机构信息

Department of Biological Sciences, Faculty of Arts and Sciences, Middle East Technical University, Ankara, Turkey.

State Key Laboratory of Cellular Stress Biology, Innovation Center for Cell Signaling Network, School of Life Sciences, Xiamen University, Xiamen, Fujian China.

出版信息

J Biol Chem. 2020 Dec 18;295(51):17738-17751. doi: 10.1074/jbc.RA120.015534.

Abstract

Distinct cell types emerge from embryonic stem cells through a precise and coordinated execution of gene expression programs during lineage commitment. This is established by the action of lineage specific transcription factors along with chromatin complexes. Numerous studies have focused on epigenetic factors that affect embryonic stem cells (ESC) self-renewal and pluripotency. However, the contribution of chromatin to lineage decisions at the exit from pluripotency has not been as extensively studied. Using a pooled epigenetic shRNA screen strategy, we identified chromatin-related factors critical for differentiation toward mesodermal and endodermal lineages. Here we reveal a critical role for the chromatin protein, ARID4B. Arid4b-deficient mESCs are similar to WT mESCs in the expression of pluripotency factors and their self-renewal. However, ARID4B loss results in defects in up-regulation of the meso/endodermal gene expression program. It was previously shown that Arid4b resides in a complex with SIN3A and HDACS 1 and 2. We identified a physical and functional interaction of ARID4B with HDAC1 rather than HDAC2, suggesting functionally distinct Sin3a subcomplexes might regulate cell fate decisions Finally, we observed that ARID4B deficiency leads to increased H3K27me3 and a reduced H3K27Ac level in key developmental gene loci, whereas a subset of genomic regions gain H3K27Ac marks. Our results demonstrate that epigenetic control through ARID4B plays a key role in the execution of lineage-specific gene expression programs at pluripotency exit.

摘要

在细胞谱系定向过程中,不同的细胞类型通过基因表达程序的精确协调执行从胚胎干细胞中产生。这是由谱系特异性转录因子与染色质复合物的作用所确立的。许多研究聚焦于影响胚胎干细胞(ESC)自我更新和多能性的表观遗传因素。然而,染色质在多能性退出时对细胞谱系决定的贡献尚未得到广泛研究。我们采用汇集表观遗传shRNA筛选策略,鉴定了对中胚层和内胚层谱系分化至关重要的染色质相关因子。在此,我们揭示了染色质蛋白ARID4B的关键作用。缺乏Arid4b的小鼠胚胎干细胞在多能性因子表达及其自我更新方面与野生型小鼠胚胎干细胞相似。然而,ARID4B的缺失导致中胚层/内胚层基因表达程序上调存在缺陷。先前研究表明,Arid4b与SIN3A以及HDAC1和2存在于一个复合物中。我们鉴定出ARID4B与HDAC1而非HDAC之间存在物理和功能相互作用,这表明功能不同的Sin3a亚复合物可能调控细胞命运决定。最后,我们观察到ARID4B缺陷导致关键发育基因位点的H3K27me3增加和H3K27Ac水平降低,而一部分基因组区域获得H3K27Ac标记。我们的结果表明通过ARID4B的表观遗传调控在多能性退出时谱系特异性基因表达程序的执行中起关键作用。

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