Transcriptionally active chromatin loops contain both 'active' and 'inactive' histone modifications that exhibit exclusivity at the level of nucleosome clusters.

IF 4.2 2区 生物学 Q1 GENETICS & HEREDITY Epigenetics & Chromatin Pub Date : 2024-03-25 DOI:10.1186/s13072-024-00535-9
Stefan A Koestler, Madeleine L Ball, Leila Muresan, Vineet Dinakaran, Robert White
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Abstract

Chromatin state is thought to impart regulatory function to the underlying DNA sequence. This can be established through histone modifications and chromatin organisation, but exactly how these factors relate to one another to regulate gene expression is unclear. In this study, we have used super-resolution microscopy to image the Y loops of Drosophila melanogaster primary spermatocytes, which are enormous transcriptionally active chromatin fibres, each representing single transcription units that are individually resolvable in the nuclear interior. We previously found that the Y loops consist of regular clusters of nucleosomes, with an estimated median of 54 nucleosomes per cluster with wide variation.In this study, we report that the histone modifications H3K4me3, H3K27me3, and H3K36me3 are also clustered along the Y loops, with H3K4me3 more associated with diffuse chromatin compared to H3K27me3. These histone modifications form domains that can be stretches of Y loop chromatin micrometres long, or can be in short alternating domains. The different histone modifications are associated with different sizes of chromatin clusters and unique morphologies. Strikingly, a single chromatin cluster almost always only contains only one type of the histone modifications that were labelled, suggesting exclusivity, and therefore regulation at the level of individual chromatin clusters. The active mark H3K36me3 is more associated with actively elongating RNA polymerase II than H3K27me3, with polymerase often appearing on what are assumed to be looping regions on the periphery of chromatin clusters.These results provide a foundation for understanding the relationship between chromatin state, chromatin organisation, and transcription regulation - with potential implications for pause-release dynamics, splicing complex organisation and chromatin dynamics during polymerase progression along a gene.

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转录活跃的染色质环含有 "活跃 "和 "不活跃 "两种组蛋白修饰,它们在核小体簇水平上表现出排他性。
人们认为,染色质状态可为底层 DNA 序列提供调控功能。这可以通过组蛋白修饰和染色质组织来实现,但这些因素究竟是如何相互关联以调控基因表达的,目前尚不清楚。在这项研究中,我们利用超分辨率显微镜对黑腹果蝇初级精母细胞的Y环进行了成像,Y环是巨大的转录活跃染色质纤维,每条纤维代表一个转录单元,可在核内部单独解析。在这项研究中,我们报告了组蛋白修饰 H3K4me3、H3K27me3 和 H3K36me3 也沿着 Y 环聚集,与 H3K27me3 相比,H3K4me3 与弥散染色质的关联更大。这些组蛋白修饰形成的结构域可以是长达几微米的Y环染色质,也可以是短的交替结构域。不同的组蛋白修饰与不同大小的染色质群和独特的形态有关。令人吃惊的是,单个染色质簇几乎总是只包含一种被标记的组蛋白修饰,这表明组蛋白修饰具有排他性,因此在单个染色质簇的水平上具有调节作用。这些结果为理解染色质状态、染色质组织和转录调控之间的关系奠定了基础--这对暂停释放动力学、剪接复合物组织和染色质动力学在聚合酶沿基因进展过程中的潜在影响具有重要意义。
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来源期刊
Epigenetics & Chromatin
Epigenetics & Chromatin GENETICS & HEREDITY-
CiteScore
7.00
自引率
0.00%
发文量
35
审稿时长
1 months
期刊介绍: Epigenetics & Chromatin is a peer-reviewed, open access, online journal that publishes research, and reviews, providing novel insights into epigenetic inheritance and chromatin-based interactions. The journal aims to understand how gene and chromosomal elements are regulated and their activities maintained during processes such as cell division, differentiation and environmental alteration.
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