ArticleNucleic acids research2021
DNA molecular combing-based replication fork directionality profiling.
Article in Nucleic acids research, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed.
- Automated mapping of DNA replication fork progression in human cells with ForkML.Nature communications · 2026Article
- The double life of mammalian DNA replication origins.Genes & development · 2025Review
- Dual DNA replication modes: varying fork speeds and initiation rates within the spatial replication program in Xenopus.Nucleic acids research · 2025Article
- Monitoring and quantifying replication fork dynamics with high-throughput methods.Communications biology · 2024Review
- Starting DNA Synthesis: Initiation Processes during the Replication of Chromosomal DNA in Humans.Genes · 2024Review
- Neural network and kinetic modelling of human genome replication reveal replication origin locations and strengths.PLoS computational biology · 2023Article
- Genome-wide measurement of DNA replication fork directionality and quantification of DNA replication initiation and termination with Okazaki fragment sequencing.Nature protocols · 2023Review
- DNA fiber combing protocol using in-house reagents and coverslips to analyze replication fork dynamics in mammalian cells.STAR protocols · 2022Article
- Prospectively defined patterns of APOBEC3A mutagenesis are prevalent in human cancers.Cell reports · 2022Article
- DNA bridges: A novel platform for single-molecule sequencing and other DNA-protein interaction applications.PloS one · 2021Article
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Authors and funding
7 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
The replication strategy of metazoan genomes is still unclear, mainly because definitive maps of replication origins are missing. High-throughput methods are based on population average and thus may exclusively identify efficient initiation sites, whereas inefficient origins go undetected. Single-molecule analyses of specific loci can detect both common and rare initiation events along the targeted regions. However, these usually concentrate on positioning individual events, which only gives an overview of the replication dynamics. Here, we computed the replication fork directionality (RFD) profiles of two large genes in different transcriptional states in chicken DT40 cells, namely untranscribed and transcribed DMD and CCSER1 expressed at WT levels or overexpressed, by aggregating hundreds of oriented replication tracks detected on individual DNA fibres stretched by molecular combing. These profiles reconstituted RFD domains composed of zones of initiation flanking a zone of termination originally observed in mammalian genomes and were highly consistent with independent population-averaging profiles generated by Okazaki fragment sequencing. Importantly, we demonstrate that inefficient origins do not appear as detectable RFD shifts, explaining why dispersed initiation has remained invisible to population-based assays. Our method can both generate quantitative profiles and identify discrete events, thereby constituting a comprehensive approach to study metazoan genome replication.
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