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Molecular and Cellular Biology|August 21, 2013
The yeast copper response is regulated by DNA damageKangzhen Dong, Stephen G Addinall, David Lydall, et al.Open Biology|May 4, 2018
The contribution of non-essential Schizosaccharomyces pombe genes to fitness in response to altered nutrient supply and target of rapamycin activityShervi Lie, Peter Banks, Conor Lawless, et al.G3 (Bethesda, Md.)|August 23, 2015
Genetic Networks Required to Coordinate Chromosome Replication by DNA Polymerases α, δ, and ε in Saccharomyces cerevisiaeMarion Dubarry, Conor Lawless, A Peter Banks, et al.Nucleic Acids Research|August 15, 2014
The 9-1-1 checkpoint clamp stimulates DNA resection by Dna2-Sgs1 and Exo1Greg H P Ngo, Lata Balakrishnan, Marion Dubarry, et al.Nucleic Acids Research|October 2, 2025
Leading and lagging strand abasic sites differentially affect vertebrate replisome progression but involve analogous bypass mechanismsMatthew T Cranford, Steven N Dahmen, David Cortez, et al.Cell|October 11, 2014
Repair of a DNA-protein crosslink by replication-coupled proteolysisJulien P Duxin, James M Dewar, Hasan Yardimci, et al.Biorxiv : the Preprint Server for Biology|January 20, 2025
Leading and lagging strand abasic sites differentially affect vertebrate replisome progression but involve analogous bypass mechanismsMatthew T Cranford, Steven N Dahmen, David Cortez, et al.Methods in Enzymology|August 7, 2022
Replication fork collapse in vitro using Xenopus egg extractsSara C Conwell, Matthew T Cranford, Tamar Kavlashvili, et al.Genes & Development|February 26, 2017
CRL2Lrr1 promotes unloading of the vertebrate replisome from chromatin during replication terminationJames M Dewar, Emily Low, Matthias Mann, et al.Nature Structural & Molecular Biology|January 2, 2023
Replication fork uncoupling causes nascent strand degradation and fork reversalTamar Kavlashvili, Wenpeng Liu, Taha M Mohamed, et al.Pageof 8