ArticleGenome biology2021
Transcription-coupled structural dynamics of topologically associating domains regulate replication origin efficiency.
Article in Genome biology, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 24 papers.
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Who cites it
24 citing papers in PubMed, 37 citations in OpenAlex.
- Lamin-ating the genome: quantitative gatekeeping of replication initiation.Trends in cell biology · 2026Article
- Spatial mapping of DNA synthesis reveals dynamics and geometry of human replication nanostructures.The EMBO journal · 2025Article
- OpenEMMU: A versatile, open-source EdU multiplexing methodology for studying DNA replication and cell cycle dynamics.iScience · 2025Article
- Topoisomerase I Inhibition in ETV4-overexpressed Non-Small Cell Lung Cancer Promotes Replication and Transcription Mediated R-Loop Accumulation and DNA Damage.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Article
- Regulatory roles of three-dimensional structures of chromatin domains.Genome biology · 2025Article
- The double life of mammalian DNA replication origins.Genes & development · 2025Review
- The effect of trisomic chromosomes on spatial genome organization and global transcription in embryonic stem cells.Cell proliferation · 2024Article
- PHF2 regulates genome topology and DNA replication in neural stem cells via cohesin.Nucleic acids research · 2024Article
- Adaptive functions of structural variants in human brain development.Science advances · 2024Article
- 3C methods in cancer research: recent advances and future prospects.Experimental & molecular medicine · 2024Review
- DNA replication and replication stress response in the context of nuclear architecture.Chromosoma · 2024Review
- Transcription-Replication Conflicts as a Source of Genome Instability.Annual review of genetics · 2023Review
- Review
- RAD21 is the core subunit of the cohesin complex involved in directing genome organization.Genome biology · 2023Article
- 3D chromatin connectivity underlies replication origin efficiency in mouse embryonic stem cells.Nucleic acids research · 2022Article
- Review
- DNA replication timing: Biochemical mechanisms and biological significance.BioEssays : news and reviews in molecular, cellular and developmental biology · 2022Article
- Article
- 3D chromatin architecture and transcription regulation in cancer.Journal of hematology & oncology · 2022Review
- Preventing excess replication origin activation to ensure genome stability.Trends in genetics : TIG · 2022Review
Corrections and comments
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Authors and funding
14 authors at 4 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundMetazoan cells only utilize a small subset of the potential DNA replication origins to duplicate the whole genome in each cell cycle. Origin choice is linked to cell growth, differentiation, and replication stress. Although various genetic and epigenetic signatures have been linked to the replication efficiency of origins, there is no consensus on how the selection of origins is determined.
resultsWe apply dual-color stochastic optical reconstruction microscopy (STORM) super-resolution imaging to map the spatial distribution of origins within individual topologically associating domains (TADs). We find that multiple replication origins initiate separately at the spatial boundary of a TAD at the beginning of the S phase. Intriguingly, while both high-efficiency and low-efficiency origins are distributed homogeneously in the TAD during the G1 phase, high-efficiency origins relocate to the TAD periphery before the S phase. Origin relocalization is dependent on both transcription and CTCF-mediated chromatin structure. Further, we observe that the replication machinery protein PCNA forms immobile clusters around TADs at the G1/S transition, explaining why origins at the TAD periphery are preferentially fired.
conclusionOur work reveals a new origin selection mechanism that the replication efficiency of origins is determined by their physical distribution in the chromatin domain, which undergoes a transcription-dependent structural re-organization process. Our model explains the complex links between replication origin efficiency and many genetic and epigenetic signatures that mark active transcription. The coordination between DNA replication, transcription, and chromatin organization inside individual TADs also provides new insights into the biological functions of sub-domain chromatin structural dynamics.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.