核受体转录调控的全局观点:基因表达、因子定位和DNA序列分析。

Miltiadis Kininis, W Lee Kraus
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引用次数: 111

摘要

最近对转录因子结合、组蛋白修饰和基因表达的基因组分析提供了核受体(nr)转录调控的全局视图,补充了现有的大量基因特异性研究文献。这些基因组研究显示,NRs与其他转录因子(如激活蛋白-1、Sp1和FOXA1)结合在启动子-近端和启动子-远端增强子上。这种结合促进了在启动子和增强子处介导组蛋白翻译后修饰的共调节因子的招募。最终,通过配体RNA的信号传导刺激RNA聚合酶II (Pol II)占用的变化或目标启动子处预载Pol II的激活。染色体环和/或Pol II跟踪可能是启动子-增强子通信的基础。有趣的是,NR信号的直接靶基因代表了NR配体调控的所有基因的有限子集,其余的通过次要效应进行调控。正如之前的基因特异性分析所表明的那样,nr介导的结果具有高度的细胞类型和启动子特异性,这突出了nr转录调控的复杂性以及基因组分析在识别共同模式方面的价值。总的来说,在哺乳动物基因组中,rna的定位模式和转录调控具有共同的主题。在这篇综述中,我们概述了从基因表达、因子定位和靶DNA序列的基因组分析中获得的对nr介导转录的理解的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A global view of transcriptional regulation by nuclear receptors: gene expression, factor localization, and DNA sequence analysis.

A global view of transcriptional regulation by nuclear receptors: gene expression, factor localization, and DNA sequence analysis.

A global view of transcriptional regulation by nuclear receptors: gene expression, factor localization, and DNA sequence analysis.

A global view of transcriptional regulation by nuclear receptors: gene expression, factor localization, and DNA sequence analysis.

Recent genomic analyses of transcription factor binding, histone modification, and gene expression have provided a global view of transcriptional regulation by nuclear receptors (NRs) that complements an existing large body of literature on gene-specific studies. The picture emerging from these genomic studies indicates that NRs bind at promoter-proximal and promoter-distal enhancers in conjunction with other transcription factors (e.g., activator protein-1, Sp1 and FOXA1). This binding promotes the recruitment of coregulators that mediate the posttranslational modification of histones at promoters and enhancers. Ultimately, signaling through liganded NRs stimulates changes in the occupancy of RNA polymerase II (Pol II) or the activation of preloaded Pol II at target promoters. Chromosomal looping and/or Pol II tracking may underlie promoter-enhancer communication. Interestingly, the direct target genes of NR signaling represent a limited subset of all the genes regulated by NR ligands, with the rest being regulated through secondary effects. As suggested by previous gene-specific analyses, NR-mediated outcomes are highly cell type- and promoter-specific, highlighting the complexity of transcriptional regulation by NRs and the value of genomic analyses for identifying commonly shared patterns. Overall, NRs share common themes in their patterns of localization and transcriptional regulation across mammalian genomes. In this review, we provide an overview of recent advances in the understanding of NR-mediated transcription garnered from genomic analyses of gene expression, factor localization, and target DNA sequences.

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