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Tissue-specific histone modification and transcription factor binding in alpha globin gene expression.

机译:组织特异性组蛋白修饰和转录因子在α珠蛋白基因表达中的结合。

摘要

To address the mechanism by which the human globin genes are activated during erythropoiesis, we have used a tiled microarray to analyze the pattern of transcription factor binding and associated histone modifications across the telomeric region of human chromosome 16 in primary erythroid and nonerythroid cells. This 220-kb region includes the alpha globin genes and 9 widely expressed genes flanking the alpha globin locus. This un-biased, comprehensive analysis of transcription factor binding and histone modifications (acetylation and methylation) described here not only identified all known cis-acting regulatory elements in the human alpha globin cluster but also demonstrated that there are no additional erythroid-specific regulatory elements in the 220-kb region tested. In addition, the pattern of histone modification distinguished promoter elements from potential enhancer elements across this region. Finally, comparison of the human and mouse orthologous regions in a unique mouse model, with both regions coexpressed in the same animal, showed significant differences that may explain how these 2 clusters are regulated differently in vivo.
机译:为了解决在红细胞生成过程中激活人类球蛋白基因的机制,我们使用了平铺的微阵列来分析人类红细胞和非红细胞中人类16号染色体端粒区域的转录因子结合和相关组蛋白修饰的模式。这个220kb的区域包括α珠蛋白基因和9个广泛表达的基因,位于α珠蛋白基因座的侧面。本文对转录因子结合和组蛋白修饰(乙酰化和甲基化)进行了无偏见的全面分析,不仅确定了人类α球蛋白簇中所有已知的顺式作用调控元件,而且还表明没有额外的类红细胞特异性调控元件在测试的220 kb区域中。另外,组蛋白修饰的模式使启动子元件与整个区域中潜在的增强子元件区分开。最后,在独特的小鼠模型中人类和小鼠直系同源区域的比较(两个区域在同一只动物中共表达)显示出显着差异,这可以解释这两个簇在体内的调控方式不同。

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