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人类四维核组结构与功能的综合观点。

An integrated view of the structure and function of the human 4D nucleome.

作者信息

Dekker Job, Oksuz Betul Akgol, Zhang Yang, Wang Ye, Minsk Miriam K, Kuang Shuzhen, Yang Liyan, Gibcus Johan H, Krietenstein Nils, Rando Oliver J, Xu Jie, Janssens Derek H, Henikoff Steven, Kukalev Alexander, Willemin Andréa, Winick-Ng Warren, Kempfer Rieke, Pombo Ana, Yu Miao, Kumar Pradeep, Zhang Liguo, Belmont Andrew S, Sasaki Takayo, van Schaik Tom, Brueckner Laura, Peric-Hupkes Daan, van Steensel Bas, Wang Ping, Chai Haoxi, Kim Minji, Ruan Yijun, Zhang Ran, Quinodoz Sofia A, Bhat Prashant, Guttman Mitchell, Zhao Wenxin, Chien Shu, Liu Yuan, Venev Sergey V, Plewczynski Dariusz, Azcarate Ibai Irastorza, Szabó Dominik, Thieme Christoph J, Szczepińska Teresa, Chiliński Mateusz, Sengupta Kaustav, Conte Mattia, Esposito Andrea, Abraham Alex, Zhang Ruochi, Wang Yuchuan, Wen Xingzhao, Wu Qiuyang, Yang Yang, Liu Jie, Boninsegna Lorenzo, Yildirim Asli, Zhan Yuxiang, Chiariello Andrea Maria, Bianco Simona, Lee Lindsay, Hu Ming, Li Yun, Barnett R Jordan, Cook Ashley L, Emerson Daniel J, Marchal Claire, Zhao Peiyao, Park Peter, Alver Burak H, Schroeder Andrew, Navelkar Rahi, Bakker Clara, Ronchetti William, Ehmsen Shannon, Veit Alexander, Gehlenborg Nils, Wang Ting, Li Daofeng, Wang Xiaotao, Nicodemi Mario, Ren Bing, Zhong Sheng, Phillips-Cremins Jennifer E, Gilbert David M, Pollard Katherine S, Alber Frank, Ma Jian, Noble William S, Yue Feng

机构信息

Department of Systems Biology, University of Massachusetts Chan Medical School, Worcester, MA 01605, USA.

Howard Hughes Medical Institute, Chevy Chase, MD, USA.

出版信息

bioRxiv. 2024 Oct 27:2024.09.17.613111. doi: 10.1101/2024.09.17.613111.

Abstract

The dynamic three-dimensional (3D) organization of the human genome (the "4D Nucleome") is closely linked to genome function. Here, we integrate a wide variety of genomic data generated by the 4D Nucleome Project to provide a detailed view of human 3D genome organization in widely used embryonic stem cells (H1-hESCs) and immortalized fibroblasts (HFFc6). We provide extensive benchmarking of 3D genome mapping assays and integrate these diverse datasets to annotate spatial genomic features across scales. The data reveal a rich complexity of chromatin domains and their sub-nuclear positions, and over one hundred thousand structural loops and promoter-enhancer interactions. We developed 3D models of population-based and individual cell-to-cell variation in genome structure, establishing connections between chromosome folding, nuclear organization, chromatin looping, gene transcription, and DNA replication. We demonstrate the use of computational methods to predict genome folding from DNA sequence, uncovering potential effects of genetic variants on genome structure and function. Together, this comprehensive analysis contributes insights into human genome organization and enhances our understanding of connections between the regulation of genome function and 3D genome organization in general.

摘要

人类基因组的动态三维(3D)组织(即“4D核基因组”)与基因组功能密切相关。在此,我们整合了由4D核基因组计划生成的各种基因组数据,以详细呈现广泛使用的胚胎干细胞(H1-hESC)和永生化成纤维细胞(HFFc6)中的人类3D基因组组织。我们对3D基因组图谱分析进行了广泛的基准测试,并整合这些多样的数据集以注释跨尺度的空间基因组特征。数据揭示了染色质结构域及其亚核位置的丰富复杂性,以及超过十万个结构环和启动子-增强子相互作用。我们开发了基于群体和单个细胞间基因组结构变异的3D模型,建立了染色体折叠、核组织、染色质环化、基因转录和DNA复制之间的联系。我们展示了使用计算方法从DNA序列预测基因组折叠,揭示了遗传变异对基因组结构和功能的潜在影响。总之,这一全面分析为人类基因组组织提供了见解,并总体上增强了我们对基因组功能调控与3D基因组组织之间联系的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f9b/11526861/8d36dac36b77/nihpp-2024.09.17.613111v2-f0010.jpg

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