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Cell Death Discovery|November 24, 2025
Proteomic discovery of DEK and NUMA1 as new players in UV-induced DNA damage repair mechanismsNamwoo Kim, Mihyun Kim, Eunwoo Jeong, et al.Cell Cycle (Georgetown, Tex.)|June 30, 2020
ATAD5 suppresses centrosome over-duplication by regulating UAF1 and ID1Seong-Jung Kim, Minwoo Wie, Su Hyung Park, et al.Nucleic Acids Research|October 31, 2021
Timely termination of repair DNA synthesis by ATAD5 is important in oxidative DNA damage-induced single-strand break repairSu Hyung Park, Youyoung Kim, Jae Sun Ra, et al.Nucleic Acids Research|September 22, 2023
Short-range end resection requires ATAD5-mediated PCNA unloading for faithful homologous recombinationSu Hyung Park, Namwoo Kim, Nalae Kang, et al.Proceedings of the National Academy of Sciences of the United States of America|August 23, 2008
Polyubiquitination of proliferating cell nuclear antigen by HLTF and SHPRH prevents genomic instability from stalled replication forksAkira Motegi, Hung-Jiun Liaw, Kyoo-Young Lee, et al.DNA Repair|January 29, 2011
HLTF and SHPRH are not essential for PCNA polyubiquitination, survival and somatic hypermutation: existence of an alternative E3 ligasePeter H L Krijger, Kyoo-Young Lee, Niek Wit, et al.Nucleic Acids Research|June 17, 2020
ATAD5 restricts R-loop formation through PCNA unloading and RNA helicase maintenance at the replication forkSangin Kim, Nalae Kang, Su Hyung Park, et al.Plos Genetics|September 21, 2011
PCNA ubiquitination is important, but not essential for translesion DNA synthesis in mammalian cellsAyal Hendel, Peter H L Krijger, Noam Diamant, et al.Nature Communications|June 5, 2019
Regulation of PCNA cycling on replicating DNA by RFC and RFC-like complexesMi-Sun Kang, Eunjin Ryu, Seung-Won Lee, et al.Nature Communications|December 18, 2019
ATAD5 promotes replication restart by regulating RAD51 and PCNA in response to replication stressSu Hyung Park, Nalae Kang, Eunho Song, et al.Pageof 3