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Proximal genomic localization of STAT1 binding and regulated transcriptional activity

机译:STAT1结合的近端基因组定位和调控的转录活性

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Background Signal transducer and activator of transcription (STAT) proteins are key regulators of gene expression in response to the interferon (IFN) family of anti-viral and anti-microbial cytokines. We have examined the genomic relationship between STAT1 binding and regulated transcription using multiple tiling microarray and chromatin immunoprecipitation microarray (ChIP-chip) experiments from public repositories. Results In response to IFN-γ, STAT1 bound proximally to regions of the genome that exhibit regulated transcriptional activity. This finding was consistent between different tiling microarray platforms, and between different measures of transcriptional activity, including differential binding of RNA polymerase II, and differential mRNA transcription. Re-analysis of tiling microarray data from a recent study of IFN-γ-induced STAT1 ChIP-chip and mRNA expression revealed that STAT1 binding is tightly associated with localized mRNA transcription in response to IFN-γ. Close relationships were also apparent between STAT1 binding, STAT2 binding, and mRNA transcription in response to IFN-α. Furthermore, we found that sites of STAT1 binding within the Encyclopedia of DNA Elements (ENCODE) region are precisely correlated with sites of either enhanced or diminished binding by the RNA polymerase II complex. Conclusion Together, our results indicate that STAT1 binds proximally to regions of the genome that exhibit regulated transcriptional activity. This finding establishes a generalized basis for the positioning of STAT1 binding sites within the genome, and supports a role for STAT1 in the direct recruitment of the RNA polymerase II complex to the promoters of IFN-γ-responsive genes.
机译:背景技术信号转导子和转录激活子(STAT)蛋白是响应抗病毒和抗微生物细胞因子干扰素(IFN)家族的基因表达的关键调节因子。我们使用公共存储库中的多个平铺微阵列和染色质免疫沉淀微阵列(ChIP芯片)实验,研究了STAT1结合与调控转录之间的基因组关系。结果响应于IFN-γ,STAT1在近端结合到基因组具有调节转录活性的区域。这一发现在不同的平铺微阵列平台之间,以及在不同的转录活性测量之间(包括RNA聚合酶II的差异结合和mRNA的差异转录)是一致的。从最近对IFN-γ诱导的STAT1 ChIP芯片和mRNA表达的研究中对切片微阵列数据进行的重新分析显示,STAT1结合与响应IFN-γ的局部mRNA转录紧密相关。 STAT1结合,STAT2结合和响应IFN-α的mRNA转录之间也存在密切关系。此外,我们发现DNA元素百科全书(ENCODE)区域内STAT1结合的位点与RNA聚合酶II复合物结合增强或减弱的位点精确相关。结论总之,我们的结果表明STAT1在近端结合到基因组区域,该区域显示出受调控的转录活性。这一发现为STAT1结合位点在基因组内的定位奠定了通用基础,并支持STAT1在将RNA聚合酶II复合物直接募集到IFN-γ反应基因的启动子中的作用。

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