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高度紧凑的巨核基因组中的广泛组蛋白标记。

Broad domains of histone marks in the highly compact macronuclear genome.

机构信息

Molecular Cell Biology and Microbiology, Faculty for Mathematics and Natural Sciences, University of Wuppertal, 42219 Wuppertal, Germany.

Molecular Cell Dynamics, Centre for Human and Molecular Biology, Saarland University, 66123 Saarbrücken, Germany.

出版信息

Genome Res. 2022 Apr;32(4):710-725. doi: 10.1101/gr.276126.121. Epub 2022 Mar 9.

DOI:10.1101/gr.276126.121
PMID:35264449
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8997361/
Abstract

The unicellular ciliate contains a large vegetative macronucleus with several unusual characteristics, including an extremely high coding density and high polyploidy. As macronculear chromatin is devoid of heterochromatin, our study characterizes the functional epigenomic organization necessary for gene regulation and proper Pol II activity. Histone marks (H3K4me3, H3K9ac, H3K27me3) reveal no narrow peaks but broad domains along gene bodies, whereas intergenic regions are devoid of nucleosomes. Our data implicate H3K4me3 levels inside ORFs to be the main factor associated with gene expression, and H3K27me3 appears in association with H3K4me3 in plastic genes. Silent and lowly expressed genes show low nucleosome occupancy, suggesting that gene inactivation does not involve increased nucleosome occupancy and chromatin condensation. Because of a high occupancy of Pol II along highly expressed ORFs, transcriptional elongation appears to be quite different from that of other species. This is supported by missing heptameric repeats in the C-terminal domain of Pol II and a divergent elongation system. Our data imply that unoccupied DNA is the default state, whereas gene activation requires nucleosome recruitment together with broad domains of H3K4me3. In summary, gene activation and silencing in run counter to the current understanding of chromatin biology.

摘要

单细胞纤毛虫含有一个具有几个不寻常特征的大型营养体巨核,包括极高的编码密度和高多倍性。由于巨核染色质不含异染色质,我们的研究描述了基因调控和适当的 Pol II 活性所需的功能表观基因组组织。组蛋白标记(H3K4me3、H3K9ac、H3K27me3)没有显示狭窄的峰,而是沿着基因体呈现宽阔的域,而基因间区域没有核小体。我们的数据表明,ORF 内的 H3K4me3 水平是与基因表达相关的主要因素,而 H3K27me3 似乎与可塑基因中的 H3K4me3 相关联。沉默和低表达的基因显示出低核小体占有率,表明基因失活不涉及核小体占有率的增加和染色质浓缩。由于高度表达的 ORF 上 Pol II 的高占有率,转录延伸似乎与其他物种非常不同。这得到了 Pol II C 末端结构域中缺失七聚体重复和发散延伸系统的支持。我们的数据表明,未占据的 DNA 是默认状态,而基因激活需要核小体募集以及 H3K4me3 的宽阔域。总之,在 中,基因的激活和沉默与当前对染色质生物学的理解背道而驰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77e2/8997361/2097ee586167/710f08.jpg
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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77e2/8997361/d5d62d2c3f0a/710f01.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77e2/8997361/127f0f424db4/710f02.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77e2/8997361/2659c59c452e/710f03.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77e2/8997361/7e245dc4ef79/710f04.jpg
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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77e2/8997361/2097ee586167/710f08.jpg

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