首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The BTB-domain transcription factor ZBTB2 recruits chromatin remodelers and a histone chaperone during the exit from pluripotency
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The BTB-domain transcription factor ZBTB2 recruits chromatin remodelers and a histone chaperone during the exit from pluripotency

机译:BTB结构域转录因子ZBTB2在从多能性出口期间促进染色蛋白重新耦合器和组蛋白伴侣

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摘要

Transcription factors (TFs) harboring broad-complex, tramtrack, and bric-a-brac (BTB) domains play important roles in development and disease. These BTB domains are thought to recruit transcriptional modulators to target DNA regions. However, a systematic molecular understanding of the mechanism of action of this TF family is lacking. Here, we identify the zinc finger BTB-TF Zbtb2 from a genetic screen for regulators of exit from pluripotency and demonstrate that its absence perturbs embryonic stem cell differentiation and the gene expression dynamics underlying peri-implantation development. We show that ZBTB2 binds the chromatin remodeler Ep400 to mediate downstream transcription. Independently, the BTB domain directly interacts with nucleosome remodeling and deacetylase and histone chaperone histone regulator A. Nucleosome remodeling and deacetylase recruitment is a common feature of BTB TFs, and based on phylogenetic analysis, we propose that this is a conserved evolutionary property. Binding to UBN2, in contrast, is specific to ZBTB2 and requires a C-terminal extension of the BTB domain. Taken together, this study identifies a BTB-domain TF that recruits chromatin modifiers and a histone chaperone during a developmental cell state transition and defines unique and shared molecular functions of the BTB-domain TF family.
机译:转录因子(TF)窝藏广泛复杂,tramtrack,以及金砖四国一古玩(BTB)域发挥发育和疾病的重要作用。这些BTB结构域被认为招募转录调节剂以靶向DNA区域。然而,缺乏对这种TF系列的作用机制的系统性分子理解。在这里,我们从一个遗传筛选用于从多能性的出口调节器识别锌指BTB-TF Zbtb2和证明其不存在扰乱胚胎干细胞的分化和基因表达动力学底层围植入发展。我们表明ZBTB2将染色质Remodeler EP400结合以介导下游转录。独立地,BTB结构域直接与核心重塑和脱乙酰酶和组蛋白伴侣组蛋白调节剂A.核小体重塑和脱乙酰酶募集是BTB TFS的常见特征,并基于系统发育分析,我们提出这是一种保守的进化性。相反,与UBN2的绑定是特定于ZBTB2的并且需要BTB域的C末端扩展。该研究占据了在发育细胞状态转变期间促进染色质调节剂和组蛋白伴侣的BTB结构域TF,并限定了BTB域TF家族的独特和共同的分子功能。

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