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The Journal of Biological Chemistry|September 20, 2013
Identification of proteins at active, stalled, and collapsed replication forks using isolation of proteins on nascent DNA (iPOND) coupled with mass spectrometryBianca M Sirbu, W Hayes McDonald, Huzefa Dungrawala, et al.
Biorxiv : the Preprint Server for Biology|July 3, 2023
Self-reversal facilitates the resolution of HMCES-DNA protein crosslinks in cellsJorge Rua-Fernandez, Courtney A Lovejoy, Kavi P M Mehta, et al.
The EMBO Journal|May 17, 2022
Topoisomerase II poisons inhibit vertebrate DNA replication through distinct mechanismsSabrina X Van Ravenstein, Kavi P Mehta, Tamar Kavlashvili, et al.
Molecular Cell|January 16, 2021
RADX controls RAD51 filament dynamics to regulate replication fork stabilityMadison B Adolph, Taha M Mohamed, Swati Balakrishnan, et al.
Genes & Development|January 27, 2012
SMARCAL1 catalyzes fork regression and Holliday junction migration to maintain genome stability during DNA replicationRémy Bétous, Aaron C Mason, Robert P Rambo, et al.
Cell Reports|November 11, 2023
Self-reversal facilitates the resolution of HMCES DNA-protein crosslinks in cellsJorge Rua-Fernandez, Courtney A Lovejoy, Kavi P M Mehta, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 6, 2009
Functional genomic screens identify CINP as a genome maintenance proteinCourtney A Lovejoy, Xin Xu, Carol E Bansbach, et al.
Biorxiv : the Preprint Server for Biology|November 14, 2023
HLTF Prevents G4 Accumulation and Promotes G4-induced Fork Slowing to Maintain Genome StabilityGongshi Bai, Theresa Endres, Ulrike Kühbacher, et al.
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