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首页> 外文期刊>Genome research >ZFX acts as a transcriptional activator in multiple types of human tumors by binding downstream from transcription start sites at the majority of CpG island promoters
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ZFX acts as a transcriptional activator in multiple types of human tumors by binding downstream from transcription start sites at the majority of CpG island promoters

机译:ZFX通过在大多数CpG岛启动子的转录开始点下游,作为多种人肿瘤的转录激活剂。

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摘要

High expression of the transcription factor ZFX is correlated with proliferation, tumorigenesis, and patient survival in multiple types of human cancers. However, the mechanism by which ZFX influences transcriptional regulation has not been determined. We performed ChIP-seq in four cancer cell lines (representing kidney, colon, prostate, and breast cancers) to identify ZFX binding sites throughout the human genome. We identified roughly 9000 ZFX binding sites and found that most of the sites are in CpG island promoters. Moreover, genes with promoters bound by ZFX are expressed at higher levels than genes with promoters not bound by ZFX. To determine if ZFX contributes to regulation of the promoters to which it is bound, we performed RNA-seq analysis after knockdown of ZFX by siRNA in prostate and breast cancer cells. Many genes with promoters bound by ZFX were down-regulated upon ZFX knockdown, supporting the hypothesis that ZFX acts as a transcriptional activator. Surprisingly, ZFX binds at +240 bp downstream from the TSS of the responsive promoters. Using Nucleosome Occupancy and Methylome Sequencing (NOMe-seq), we show that ZFX binds between the open chromatin region at the TSS and the first downstream nucleosome, suggesting that ZFX may play a critical role in promoter architecture. We have also shown that a closely related zinc finger protein ZNF711 has a similar binding pattern at CpG island promoters, but ZNF711 may play a subordinate role to ZFX. This functional characterization of ZFX provides important new insights into transcription, chromatin structure, and the regulation of the cancer transcriptome.
机译:转录因子ZFX的高表达与多种人类癌症中的增殖,肿瘤内酯和患者存活相关。然而,ZFX影响转录调节的机制尚未确定。我们在四种癌细胞系(代表肾,结肠,前列腺和乳腺癌)进行芯片SEQ,以鉴定整个人类基因组的ZFX结合位点。我们鉴定了大约9000个ZFX绑定站点,发现大多数地点都在CPG岛启动子中。此外,具有ZFX结合的启动子的基因在比具有不受ZFX结合的促进剂的基因的较高水平表达。为了确定ZFX是否有助于调节其束缚的启动子,通过前列腺和乳腺癌细胞的siRNA敲低Zfx后进行RNA-SEQ分析。在ZFX敲低时,将具有ZFX结合的启动子的许多基因抑制,支持ZFX作为转录活化剂的假设。令人惊讶的是,ZFX在响应促进剂的TSS下游+240bp下游。使用核小体占用和甲基杂物测序(NOME-SEQ),我们表明ZFX在TSS和第一下游核小组的开口染色质区之间结合,表明ZFX可能在启动子建筑中发挥关键作用。我们还表明,密切相关的锌指蛋白ZNF711在CpG岛启动子上具有类似的结合模式,但ZNF711可以在ZFX上发挥从属作用。这种ZFX的这种功能表征为转录,染色质结构和癌症转录组的调节提供了重要的新洞察。

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