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Chromatin is an ancient innovation conserved between Archaea and Eukarya

机译:染色质是古生菌和Eukarya之间保存的古老创新

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摘要

The eukaryotic nucleosome is the fundamental unit of chromatin, comprising a protein octamer that wraps ∼147 bp of DNA and has essential roles in DNA compaction, replication and gene expression. Nucleosomes and chromatin have historically been considered to be unique to eukaryotes, yet studies of select archaea have identified homologs of histone proteins that assemble into tetrameric nucleosomes. Here we report the first archaeal genome-wide nucleosome occupancy map, as observed in the halophile Haloferax volcanii. Nucleosome occupancy was compared with gene expression by compiling a comprehensive transcriptome of Hfx. volcanii. We found that archaeal transcripts possess hallmarks of eukaryotic chromatin structure: nucleosome-depleted regions at transcriptional start sites and conserved −1 and +1 promoter nucleosomes. Our observations demonstrate that histones and chromatin architecture evolved before the divergence of Archaea and Eukarya, suggesting that the fundamental role of chromatin in the regulation of gene expression is ancient.>DOI:
机译:真核生物核小体是染色质的基本单位,它包含包裹147 bp DNA的蛋白质八聚体,并且在DNA紧实,复制和基因表达中具有重要作用。核小体和染色质在历史上一直被认为是真核生物所独有的,但是对某些古细菌的研究已经鉴定出了组蛋白的同源物,这些蛋白可以组装成四聚体核小体。在这里,我们报告了第一个古细菌全基因组的核小体占据图,如在嗜盐菌Haloferax volcanii中观察到的。通过编译完整的Hfx转录组,将核小体的占有率与基因表达进行了比较。火山。我们发现古细菌转录本具有真核染色质结构的标志:转录起始位点的核小体耗尽区域,以及保守的-1和+1启动子核小体。我们的观察结果表明,组蛋白和染色质结构在古生菌和Eukarya分离之前就已经进化了,这表明染色质在基因表达调控中的基本作用是古老的。> DOI:

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