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The multifaceted roles of PARP1 in DNA repair and chromatin remodelling | Nature Reviews Molecular Cell Biology
Replication stress and cancer | Nature Reviews Cancer
Frontiers | The Replication Stress Response on a Narrow Path Between Genomic Instability and Inflammation
RIF1 promotes replication fork protection and efficient restart to maintain genome stability | Nature Communications
Sequential role of RAD51 paralog complexes in replication fork remodeling and restart | Nature Communications
Frontiers | Single-Molecule Techniques to Study Chromatin
Replication-Coupled DNA Repair - ScienceDirect
Cells | Free Full-Text | The Interplay of Cohesin and the Replisome at Processive and Stressed DNA Replication Forks
To skip or not to skip: choosing repriming to tolerate DNA damage - ScienceDirect
IJMS | Free Full-Text | Role of Cockayne Syndrome Group B Protein in Replication Stress: Implications for Cancer Therapy
How sisters grow apart: mycobacterial growth and division | Nature Reviews Microbiology
Genes | Free Full-Text | Homologous Recombination as a Fundamental Genome Surveillance Mechanism during DNA Replication
Kai Neelsen – Senior Medical Writer – nspm ltd | LinkedIn
DNA double-strand break repair-pathway choice in somatic mammalian cells | Nature Reviews Molecular Cell Biology
IJMS | Free Full-Text | DNA2 in Chromosome Stability and Cell Survival—Is It All about Replication Forks?
Heterogeneity in tuberculosis | Nature Reviews Immunology
Ubiquitylation at Stressed Replication Forks: Mechanisms and Functions: Trends in Cell Biology
JoF | Free Full-Text | Post-Translational Modifications of PCNA: Guiding for the Best DNA Damage Tolerance Choice
MAD2L2 promotes replication fork protection and recovery in a shieldin-independent and REV3L-dependent manner | Nature Communications
Frontiers | A Survey of Essential Genome Stability Genes Reveals That Replication Stress Mitigation Is Critical for Peri-Implantation Embryogenesis
Eukaryotic clamp loaders and unloaders in the maintenance of genome stability | Experimental & Molecular Medicine
Leveraging the replication stress response to optimize cancer therapy | Nature Reviews Cancer
Frontiers | DNA Damage Tolerance Pathways in Human Cells: A Potential Therapeutic Target
WRN helicase safeguards deprotected replication forks in BRCA2-mutated cancer cells | Nature Communications
Replication-Coupled DNA Repair - ScienceDirect
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