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Characterization of the ZFX family of transcription factors that bind downstream of the start site of CpG island promoters

机译:CPG岛启动子突出位点下游的ZFX系列转录因子的表征

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摘要

Our study focuses on a family of ubiquitously expressed human C2H2 zinc finger proteins comprised of ZFX, ZFY and ZNF711. Although their protein structure suggests that ZFX, ZFY and ZNF711 are transcriptional regulators, the mechanisms by which they influence transcription have not yet been elucidated. We used CRISPR-mediated deletion to create bi-allelic knockouts of ZFX and/or ZNF711 in female HEK293T cells (which naturally lack ZFY). We found that loss of either ZFX or ZNF711 reduced cell growth and that the double knockout cells have major defects in proliferation. RNA-seq analysis revealed that thousands of genes showed altered expression in the double knockout clones, suggesting that these TFs are critical regulators of the transcriptome. To gain insight into how these TFs regulate transcription, we created mutant ZFX proteins and analyzed them for DNA binding and transactivation capability. We found that zinc fingers 11–13 are necessary and sufficient for DNA binding and, in combination with the N terminal region, constitute a functional transactivator. Our functional analyses of the ZFX family provides important new insights into transcriptional regulation in human cells by members of the large, but under-studied family of C2H2 zinc finger proteins.
机译:我们的研究重点介绍了由ZFX,ZFY和ZNF711组成的普遍表达的人C2H2锌手指蛋白质。虽然它们的蛋白质结构表明ZFX,ZFY和ZNF711是转录调节因子,但它们影响转录的机制尚未阐明。我们使用CRISPR介导的缺失来在女性HEK293T细胞中创建ZFX和/或ZNF711的双级等位基因敲除(其自然缺乏ZFY)。我们发现ZFX或ZNF711的丧失降低了细胞生长,并且双敲除细胞具有重大缺陷。 RNA-SEQ分析显示,成千上万的基因显示出双敲除克隆中的表达改变,表明这些TFS是转录组的临界调节剂。要深入了解这些TFS如何调节转录,我们创建了突变体ZFX蛋白并分析了它们进行DNA结合和转移能力。我们发现锌指11-13是必要的并且足以用于DNA结合,并且与N末端区域组合构成功能性转移剂。我们的ZFX家族的功能分析为人类细胞的转录调节提供了重要的新洞察的C2H2锌手指蛋白。

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