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DNA replication stress
Molecular Anatomy and Regulation of a Stable Replisome at a Paused Eukaryotic DNA Replication Fork
Incision of Damaged DNA in the Presence of an Impaired Smc5/6 Complex Imperils Genome Stability Jie Peng and Wenyi Feng*
Working on Genomic Stability: from the S-Phase to Mitosis
S41467-017-00634-0.Pdf
Exploiting DNA Replication Stress for Cancer Treatment Tajinder Ubhi1,2 and Grant W
Exploiting DNA Replication Stress for Cancer Treatment Tajinder Ubhi1,2 and Grant W
Prevention of DNA Replication Stress by CHK1 Leads to Chemoresistance Despite a DNA Repair Defect in Homologous Recombination in Breast Cancer
A Pan-Cancer Transcriptome Analysis Identifies Replication Fork and Innate Immunity Genes As Modifiers of Response to the CHK1 Inhibitor Prexasertib
CHK1-Targeted Therapy to Deplete DNA Replication-Stressed, P53
ATR-Chk1 Activation Mitigates Replication Stress Caused by Mismatch Repair-Dependent Processing of DNA Damage
DNA Replication Stress and Chromosomal Instability: Dangerous Liaisons
Replication Stress, Genomic Instability, and Replication Timing: a Complex Relationship
Limiting Homologous Recombination at Stalled Replication Forks Is Essential for Cell Viability: DNA2 to the Rescue
Histone Deposition Protein Asf1 Maintains DNA Replisome Integrity and Interacts with Replication Factor C
Replisome Function During Replicative Stress Is Modulated by Histone H3 Lysine 56 Acetylation Through Ctf4
Replication Stress: Mechanisms and Molecules Involved in DNA Replication Progression and Reinitiation
Stressed DNA Replication Generates Stressed DNA COMMENTARY Hannah L
DNA Damage Tolerance Pathway Involving DNA Polymerase Ι and The
Top View
For the Preservation of Genome Stability, There Is an Interaction
Targeting DNA Replication Stress and DNA Double-Strand Break Repair for Optimizing SCLC Treatment
Analyzing the Opportunities to Target DNA Double-Strand Breaks Repair and Replicative Stress Responses to Improve Therapeutic Index of Colorectal Cancer
Supplementary Information For
BRCA1 and 53BP1 Mediate Reprogramming Through DNA Repair Pathway Choice
RPA Shields Inherited DNA Lesions for Post-Mitotic DNA Synthesis
Mismatch Repair Processing of DNA Damage Causes Replication Stress Dipika Gupta University of Connecticut - Storrs,
[email protected]
Genetic Interaction Landscape Reveals Critical Requirements For
SMC5/6 Is Required for Replication Fork Stability and Faithful Chromosome
Protective Mechanisms Against DNA Replication Stress in the Nervous System
DNA REPAIR Genomic Maintenance and Responses to DNA Damage
Regulation of Structure-Specific Endonucleases in Replication Stress
ATM Signalling and Cancer
The RECQL Helicase Prevents Replication Fork Collapse During Replication Stress
CENP-A Chromatin Prevents Replication Stress at Centromeres to Avoid Structural Aneuploidy
Nuclear Deformation Causes DNA Damage by Increasing Replication Stress Abstract
Participation of the ATR/CHK1 Pathway in Replicative Stress
DNA Damage Repair: Historical Perspectives, Mechanistic Pathways and Clinical Translation for Targeted Cancer Therapy
DNA Replication Stress Generates Distinctive Landscapes of DNA Copy Number Alterations and Chromosome Scale Losses
Translesion Synthesis Or Repair by Specialized DNA Polymerases Limits Excessive Genomic Instability Upon Replication Stress
Special Section Replication Stress, a Threat to the Nuclear And
DNA Replication Stress and Cancer Chemotherapy
DNA Replication Stress and Cancer: Cause Or Cure?
Replication Stress, DNA Damage, Inflammatory Cytokines and Innate