In silico nanoscope to study the interplay of genome organization and transcription regulation
Authors/Creators
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Gopi, Soundhararajan
(Contact person)1
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Brandani, Giovanni B.
(Project member)1
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Tan, Cheng
(Project member)2
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Jung, Jaewoon
(Project member)2, 3
- Gu, Chenyang (Project member)1
- Mizutani, Azuki (Project member)1
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Ochiai, Hiroshi
(Supervisor)4
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Sugita, Yuji
(Supervisor)2, 3, 5
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Takada, Shoji
(Project leader)1
Description
In eukaryotic genomes, regulated access and communication between cis-regulatory elements (CREs) are necessary for enhancer-mediated transcription of genes. The molecular framework of the chromatin organization underlying such communication remains poorly understood. To better understand it, we develop a multiscale modeling pipeline to build near-atomistic models of the 200 kb Nanog gene locus in mouse embryonic stem cells comprising nucleosomes, transcription factors, co-activators, and RNA polymerase II-Mediator complexes. By integrating diverse experimental data, including protein localization, genomic interaction frequencies, cryo-electron microscopy, and single-molecule fluorescence studies, our model offers novel insights into chromatin organization and its role in enhancer-promoter communication. The models equilibrated by high-performance molecular dynamics simulations span a scale of ~350 nm, revealing an experimentally consistent local and global organization of chromatin and transcriptional machinery. Our models elucidate that the sequence-regulated chromatin accessibility facilitates the recruitment of transcription regulatory proteins exclusively at CREs, guided by the contrasting nucleosome organization compared to other regions. By constructing an experimentally consistent near-atomic model of chromatin in the cellular environment, our approach provides a robust framework for future studies on nuclear compartmentalization, chromatin organization, and transcription regulation.
Files
Hi-C_Metainference-main.zip
Additional details
Funding
- Ministry of Education, Culture, Sports, Science and Technology
- Program for Promoting Research on the Supercomputer Fugaku JPMXP1020200101
- Ministry of Education, Culture, Sports, Science and Technology
- Program for Promoting Researches on the Supercomputer Fugaku JPMXP1020230119
- Japan Society for the Promotion of Science
- KAKENHI 20H05934
- Japan Society for the Promotion of Science
- KAKENHI 21H02441
- Japan Society for the Promotion of Science
- KAKENHI 24K01991
- RIKEN
- HPCI System Research Project hp230095
Dates
- Created
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2024-10-21