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Quantitative analysis reveals increased histone modifications and a broad oucleosome-free region bound by histone acetylases in highly expressed genes in human CD4+T cells

机译:定量分析显示,在人类CD4 + T细胞中高表达的基因中,组蛋白修饰的增加和组蛋白乙酰化酶结合的宽阔无脂质体区域

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Genome-wide mapping of nucleosomes and histone modifications revealed meaningful patterns. Despite advances in resolving the associations between chromatin and transcription, quantitative chromatin dynamics have not been well defined. We quantitatively determined differences in histone modifications, nucleosome positions, DNA methylation, and transcription factor binding in highly expressed and repressed genes in human CD4+ T cells. We showed that the first (— 1) nucleosome upstream of the transcription start site (TSS) is shifted to the 5' direction, thus forming a broad nucleosome-free region (NFR) near the TSS in highly expressed genes in CD4+ T cells. Moreover, the transcription factor YY1 and histone acetyltransferases bind the NFR with high affinity. Most of histone acetylations drastically increase in transcription activation (> 5 folds). We also suggested that single nucleotide polymorphisms (SNPs) occur at a much lower frequency in highly expressed genes than in repressed genes. Our analysis quantitatively revealed details of chromatin dynamics.
机译:全基因组的核小体和组蛋白修饰的映射揭示了有意义的模式。尽管在解决染色质和转录之间的联系方面取得了进展,但尚未很好地定义定量染色质动力学。我们定量测定了人类CD4 + T细胞中高表达和受压基因中组蛋白修饰,核小体位置,DNA甲基化和转录因子结合的差异。我们显示,转录起始位点(TSS)上游的第一个(-1)核小体移向5'方向,从而在CD4 + T细胞中高表达基因的TSS附近形成了一个宽阔的无核小体区域(NFR)。此外,转录因子YY1和组蛋白乙酰转移酶以高亲和力结合NFR。大多数组蛋白乙酰化会大大增加转录激活(> 5倍)。我们还建议,单核苷酸多态性(SNP)在高表达基因中的发生频率比在受压基因中低得多。我们的分析定量揭示了染色质动力学的细节。

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