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涉及果蝇绝缘子的三维染色质相互作用很少见,但具有偏好性,且发生在拓扑相关结构域(TADs)和转录之前。

3D chromatin interactions involving Drosophila insulators are infrequent but preferential and arise before TADs and transcription.

作者信息

Messina Olivier, Raynal Flavien, Gurgo Julian, Fiche Jean-Bernard, Pancaldi Vera, Nollmann Marcelo

机构信息

Centre de Biologie Structurale, Univ Montpellier, CNRS UMR 5048, INSERM U1054, 34090, Montpellier, France.

CRCT, Université de Toulouse, Inserm, CNRS, Université Toulouse III-Paul Sabatier, Centre de Recherches en Cancérologie de Toulouse, Toulouse, France.

出版信息

Nat Commun. 2023 Oct 21;14(1):6678. doi: 10.1038/s41467-023-42485-y.

Abstract

In mammals, insulators contribute to the regulation of loop extrusion to organize chromatin into topologically associating domains. In Drosophila the role of insulators in 3D genome organization is, however, under current debate. Here, we addressed this question by combining bioinformatics analysis and multiplexed chromatin imaging. We describe a class of Drosophila insulators enriched at regions forming preferential chromatin interactions genome-wide. Notably, most of these 3D interactions do not involve TAD borders. Multiplexed imaging shows that these interactions occur infrequently, and only rarely involve multiple genomic regions coalescing together in space in single cells. Finally, we show that non-border preferential 3D interactions enriched in this class of insulators are present before TADs and transcription during Drosophila development. Our results are inconsistent with insulators forming stable hubs in single cells, and instead suggest that they fine-tune existing 3D chromatin interactions, providing an additional regulatory layer for transcriptional regulation.

摘要

在哺乳动物中,绝缘子有助于调节环状挤压,从而将染色质组织成拓扑相关结构域。然而,在果蝇中,绝缘子在三维基因组组织中的作用目前仍存在争议。在这里,我们通过结合生物信息学分析和多重染色质成像来解决这个问题。我们描述了一类在全基因组范围内形成优先染色质相互作用的区域富集的果蝇绝缘子。值得注意的是,这些三维相互作用大多不涉及拓扑相关结构域边界。多重成像显示,这些相互作用很少发生,并且在单细胞中很少涉及多个基因组区域在空间上聚在一起。最后,我们表明,在果蝇发育过程中,这类绝缘子中富集的非边界优先三维相互作用在拓扑相关结构域和转录之前就已存在。我们的结果与绝缘子在单细胞中形成稳定枢纽的观点不一致,相反,这表明它们对现有的三维染色质相互作用进行微调,为转录调控提供了额外的调控层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef44/10590426/a5c399853d2c/41467_2023_42485_Fig1_HTML.jpg

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