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Molecular Cell|January 16, 2021
RADX controls RAD51 filament dynamics to regulate replication fork stabilityMadison B Adolph, Taha M Mohamed, Swati Balakrishnan, et al.
The Journal of Biological Chemistry|December 10, 2025
Lineage-specific amino acids define functional attributes of the protomer-protomer interfaces for the Rad51 and Dmc1 recombinasesMike Petassi, Yeonoh Shin, Aidan M Jessop, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 11, 2025
Structural basis for Rad54- and Hed1-mediated regulation of Rad51 during the transition from mitotic to meiotic recombinationYeonoh Shin, Michael T Petassi, Aidan M Jessop, et al.
Biorxiv : the Preprint Server for Biology|April 8, 2025
Structural basis for Rad54- and Hed1-mediated regulation of Rad51 during the transition from mitotic to meiotic recombinationYeonoh Shin, Michael T Petassi, Aidan M Jessop, et al.
Molecular Cell|May 24, 2020
Human Condensin I and II Drive Extensive ATP-Dependent Compaction of Nucleosome-Bound DNAMuwen Kong, Erin E Cutts, Dongqing Pan, et al.
Science (New York, N.Y.)|November 16, 2023
Mechanism of target site selection by type V-K CRISPR-associated transposasesJerrin Thomas George, Christopher Acree, Jung-Un Park, et al.
Molecular Cell|November 22, 2016
A Polar and Nucleotide-Dependent Mechanism of Action for RAD51 Paralogs in RAD51 Filament RemodelingMartin R G Taylor, Mário Špírek, Chu Jian Ma, et al.
Science (New York, N.Y.)|August 29, 2015
DNA RECOMBINATION. Base triplet stepping by the Rad51/RecA family of recombinasesJa Yil Lee, Tsuyoshi Terakawa, Zhi Qi, et al.
Biorxiv : the Preprint Server for Biology|July 28, 2023
Mechanism of target site selection by type V-K CRISPR-associated transposasesJerrin Thomas George, Christopher Acree, Jung-Un Park, et al.
DNA Repair|November 26, 2008
Functional interactions of meiotic recombination factors Rdh54 and Dmc1Peter Chi, Youngho Kwon, Dana N Moses, et al.
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