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Impact of 3D genome organization, guided by cohesin and CTCF looping, on sex-biased chromatin interactions and gene expression in mouse liver

机译:3D基因组组织的影响,通过休谷蛋白和CTCF循环引导,对小鼠肝脏的性偏见染色质相互作用和基因表达

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Several thousand sex-differential distal enhancers have been identified in mouse liver; however, their links to sex-biased genes and the impact of any sex-differences in nuclear organization and chromatin interactions are unknown. To address these issues, we first characterized 1847 mouse liver genomic regions showing significant sex differential occupancy by cohesin and CTCF, two key 3D nuclear organizing factors. These sex-differential binding sites were primarily distal to sex-biased genes but rarely generated sex-differential TAD (topologically associating domain) or intra-TAD loop anchors, and were sometimes found in TADs without sex-biased genes. A substantial subset of sex-biased cohesin-non-CTCF binding sites, but not sex-biased cohesin-and-CTCF binding sites, overlapped sex-biased enhancers. Cohesin depletion reduced the expression of male-biased genes with distal, but not proximal, sex-biased enhancers by 10-fold, implicating cohesin in long-range enhancer interactions regulating sex-biased genes. Using circularized chromosome conformation capture-based sequencing (4C-seq), we showed that sex differences in distal sex-biased enhancer–promoter interactions are common. Intra-TAD loops with sex-independent cohesin-and-CTCF anchors conferred sex specificity to chromatin interactions indirectly, by insulating sex-biased enhancer–promoter contacts and by bringing sex-biased genes into closer proximity to sex-biased enhancers. Furthermore, sex-differential chromatin interactions involving sex-biased gene promoters, enhancers, and lncRNAs were associated with sex-biased binding of cohesin and/or CTCF. These studies elucidate how 3D genome organization impacts sex-biased gene expression in a non-reproductive tissue through both direct and indirect effects of cohesin and CTCF looping on distal enhancer interactions with sex-differentially expressed genes.
机译:在小鼠肝脏中鉴定了几千个性别差异远端增强剂;然而,它们与性偏见基因的联系以及核组织和染色质相互作用的任何性差异的影响是未知的。为了解决这些问题,我们首先表现了1847名小鼠肝脏基因组区域,通过COLEN和CTCF,两个关键的3D核组织因子显示出显着的性别差异占用。这些性别差异结合位点主要是性偏置基因的远端,但很少产生性别差异的TAD(拓扑相关域)或TAD循环锚,有时在没有性偏向基因的TAD中发现。性偏见的辅酶非CTCF结合位点的大量子集,但不是性偏见的辛酸和CTCF结合位点,重叠的性偏置增强剂。 Cohesin Fepletion通过> 10倍以下地减少了雄性偏置基因的表达,但不近似性,性偏向的增强剂,在调节性偏置基因的远程增强剂相互作用中暗示休宁。使用圆形化染色体构象捕获基于捕获的测序(4C-SEQ),我们表明远端性偏向的增强剂 - 启动子相互作用的性差异是常见的。 TAD内部与性无关的辅酶蛋白和CTCF锚围绕间接地赋予染色质相互作用的性特异性,通过绝缘性偏置的增强剂 - 启动子接触,并将性偏向的基因与性偏见的增强剂更接近。此外,涉及性偏见的基因启动子,增强剂和LNCRNA的性差异染色质相互作用与CONEN和/或CTCF的性偏置结合有关。这些研究阐明了3D基因组组织如何通过COLENIN和CTCF环路对与性差异表达基因的远端增强剂相互作用的直接和间接影响来影响非生殖组织中的性偏置基因表达。

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