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首页> 外文期刊>Nucleic acids research >A native chromatin purification system for epigenomic profiling in Caenorhabditis elegans
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A native chromatin purification system for epigenomic profiling in Caenorhabditis elegans

机译:秀丽隐杆线虫表观基因组分析的天然染色质纯化系统

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摘要

High-resolution mapping of chromatin features has emerged as an important strategy for understanding gene regulation and epigenetic inheritance. We describe an in vivo tagging system coupled to chromatin purification for genome-wide epigenetic profiling in Caenorhabditis elegans. In this system, we coexpressed the Escherichia coli biotin ligase enzyme (BirA), together with the C. elegans H3.3 gene fused to BioTag, a 23-amino-acid peptide serving as a biotinylation substrate for BirA, in vivo in worms. We found that the fusion BioTag::H3.3 was efficiently biotinylated in vivo. We developed methods to isolate chromatin under different salt extraction conditions, followed by affinity purification of biotinylated chromatin with streptavidin and genome-wide profiling with microarrays. We found that embryonic chromatin is differentially extracted with increasing salt concentrations. Interestingly, chromatin that remains insoluble after washing in 600 mM salt is enriched at 5′ and 3′ ends, suggesting the presence of large protein complexes that render chromatin insoluble at transcriptional initiation and termination sites. We also found that H3.3 landscapes from these salt fractions display consistent features that correlate with gene activity: the most highly expressed genes contain the most H3.3. This versatile two-component approach has the potential of facilitating genome-wide chromatin dynamics and regulatory site identification in C. elegans.
机译:染色质特征的高分辨率映射已成为理解基因调控和表观遗传的重要策略。我们描述了体内标记系统耦合染色质纯化的秀丽隐杆线虫的全基因组表观遗传学分析。在此系统中,我们共表达了大肠杆菌生物素连接酶(BirA),以及与线虫C.elegans H3.3基因融合,该标记物是BioTag的23个氨基酸肽,在蠕虫体内可作为BirA的生物素化底物。我们发现融合BioTag :: H3.3在体内被有效地生物素化。我们开发了在不同盐提取条件下分离染色质的方法,然后用链霉亲和素亲和纯化生物素化染色质,并用微阵列进行全基因组分析。我们发现,随着盐浓度的增加,胚胎染色质被差异提取。有趣的是,在600 mM盐中洗涤后仍保持不溶的染色质在5'和3'末端富集,表明存在大量蛋白质复合物,这些复合物使染色质在转录起始和终止位点不溶。我们还发现,这些盐馏分的H3.3风景区显示出与基因活性相关的一致特征:表达最高的基因包含最多的H3.3。这种多用途的两组分方法具有促进秀丽隐杆线虫全基因组染色质动力学和调控位点识别的潜力。

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