Locus-specific ChIP combined with NGS analysis reveals genomic regulatory regions that physically interact with the Pax5 promoter in a chicken B cell line

T. Fujita, Fusako Kitaura, Miyuki Yuno, Yutaka Suzuki, S. Sugano, H. Fujii
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引用次数: 11

Abstract

Chromosomal interactions regulate genome functions, such as transcription, via dynamic chromosomal organization in the nucleus. In this study, we identified genomic regions that physically bind to the promoter region of the Pax5 gene in the chicken B-cell line DT40, with the goal of obtaining mechanistic insight into transcriptional regulation through chromosomal interaction. Using insertional chromatin immunoprecipitation (iChIP) in combination with next-generation sequencing (NGS) (iChIP-Seq), we found that the Pax5 promoter bound to multiple genomic regions. The identified chromosomal interactions were independently confirmed by in vitro engineered DNA-binding molecule-mediated ChIP (in vitro enChIP) in combination with NGS (in vitro enChIP-Seq). Comparing chromosomal interactions in wild-type DT40 with those in a macrophage-like counterpart, we found that some of the identified chromosomal interactions were organized in a B cell–specific manner. In addition, deletion of a B cell–specific interacting genomic region in chromosome 11, which was marked by active enhancer histone modifications, resulted in moderate but significant down-regulation of Pax5 transcription. Together, these results suggested that Pax5 transcription in DT40 cells is regulated by inter-chromosomal interactions. Moreover, these analyses showed that iChIP-Seq and in vitro enChIP-Seq are useful for non-biased identification of functional genomic regions that physically interact with a locus of interest.
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基因座特异性ChIP结合NGS分析揭示了鸡B细胞系中与Pax5启动子物理相互作用的基因组调控区域
染色体相互作用通过细胞核内的动态染色体组织调节基因组功能,如转录。在本研究中,我们确定了鸡b细胞系DT40中与Pax5基因启动子区域物理结合的基因组区域,目的是通过染色体相互作用获得转录调控的机制。利用插入染色质免疫沉淀(iChIP)和下一代测序(iChIP- seq)技术,我们发现Pax5启动子与多个基因组区域结合。鉴定的染色体相互作用通过体外工程dna结合分子介导的ChIP (in vitro enChIP)联合NGS (in vitro enChIP- seq)独立证实。将野生型DT40的染色体相互作用与巨噬细胞样的染色体相互作用进行比较,我们发现一些已鉴定的染色体相互作用是以B细胞特异性方式组织的。此外,11号染色体上一个以活性增强子组蛋白修饰为标志的B细胞特异性相互作用基因组区域的缺失,导致Pax5转录适度但显著下调。总之,这些结果表明Pax5在DT40细胞中的转录受染色体间相互作用的调节。此外,这些分析表明,iChIP-Seq和体外enchhip - seq可用于无偏倚地鉴定与感兴趣位点物理相互作用的功能基因组区域。
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