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Distinct features of lamin A-interacting chromatin domains mapped by ChIP-sequencing from sonicated or micrococcal nuclease-digested chromatin

机译:超声或微球菌核酸酶消化的染色质通过ChIP测序定位的层粘连蛋白A相互作用染色质域的不同特征。

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摘要

The nuclear lamina has been shown to interact with the genome through lamina-associated domains (LADs). LADs have been identified by DamID, a proximity labeling assay, and more recently by chromatin immunoprecipitation-sequencing (ChIP-seq) of A- and B-type lamins. LADs form megabase-size domains at the nuclear periphery, they are gene-poor and mostly heterochromatic. Here, we show that the mode of chromatin fragmentation for ChIP, namely bath sonication or digestion with micrococcal nuclease (MNase), leads to the discovery of common but also distinct sets of lamin-interacting domains, or LiDs. Using ChIP-seq, we show the existence of lamin A/C (LMNA) LiDs with distinct gene contents, histone composition enrichment and relationships to lamin B1-interacting domains. The extent of genome coverage of lamin A/C (LMNA) LiDs in sonicated or MNase-digested chromatin is similar (∼730 megabases); however over half of these domains are uniquely detected in sonicated or MNase-digested chromatin. Sonication-specific LMNA LiDs are gene-poor and devoid of a broad panel of histone modifications, while MNase-specific LMNA LiDs are of higher gene density and are enriched in H3K9me3, H3K27me3 and in histone variant H2A.Z. LMNB1 LiDs are gene-poor and show no or little enrichment in these marks. Comparison of published LMNB1 DamID LADs with LMNB1 and LMNA LiDs identified here by ChIP-seq further shows that LMNA can associate with ‘open’ chromatin domains displaying euchromatin characteristics, and which are not associated with LMNB1. The differential genomic and epigenetic properties of lamin-interacting domains reflect the existence of distinct LiD populations identifiable in different chromatin contexts, including nuclease-accessible regions presumably localized in the nuclear interior.
机译:已经证明核层通过层相关域(LAD)与基因组相互作用。 LAD已通过DamID,邻近标记测定法和最近通过A型和B型lamin的染色质免疫沉淀测序(ChIP-seq)进行了鉴定。 LAD在核外围形成兆碱基大小的结构域,它们基因贫乏且大多为异色。在这里,我们显示了ChIP的染色质片段化模式,即浴超声处理或用微球菌核酸酶(MNase)消化,导致发现了常见但又不同的层粘连蛋白相互作用域或LiDs。使用ChIP-seq,我们显示了具有不同基因含量,组蛋白成分富集和与lamin B1相互作用域相关的lamin A / C(LMNA)LiDs的存在。超声处理或MNase消化的染色质中的lamin A / C(LMNA)LiDs的基因组覆盖范围相似(约730兆碱基);但是,这些域的一半以上是在超声处理或MNase消化的染色质中唯一检测到的。超声处理特异的LMNA LiDs基因贫乏且缺乏广泛的组蛋白修饰,而MNase特异的LMNA LiDs基因密度更高,并且富含H3K9me3,H3K27me3和组蛋白变体H2A.Z。 LMNB1 LiDs基因贫乏,并且在这些标记中没有或几乎没有富集。通过ChIP-seq在此处比较的已发布LMNB1 DamID LAD与LMNB1和LMNA LiD的比较进一步表明,LMNA可以与显示常染色质特征的“开放”染色质域关联,而与LMNB1不关联。层粘连蛋白相互作用域的差异基因组学和表观遗传学特性反映了在不同染色质环境中可识别的独特LiD种群的存在,包括可能位于核内部的核酸酶可及区域。

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