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Marine Drugs|June 22, 2017
The Identification of a SIRT6 Activator from Brown Algae Fucus distichusMinna K Rahnasto-Rilla, Padraig McLoughlin, Tomasz Kulikowicz, et al.
Nucleic Acids Research|April 19, 2018
Multiple RPAs make WRN syndrome protein a superhelicaseMina Lee, Soochul Shin, Heesoo Uhm, et al.
Nucleic Acids Research|October 21, 2011
RECQL5 cooperates with Topoisomerase II alpha in DNA decatenation and cell cycle progressionMahesh Ramamoorthy, Takashi Tadokoro, Ivana Rybanska, et al.
Nucleic Acids Research|May 1, 2012
The human RecQ helicases BLM and RECQL4 cooperate to preserve genome stabilityDharmendra Kumar Singh, Venkateswarlu Popuri, Tomasz Kulikowicz, et al.
Aging Cell|October 6, 2021
CDK2 phosphorylation of Werner protein (WRN) contributes to WRN's DNA double-strand break repair pathway choiceJong-Hyuk Lee, Raghavendra A Shamanna, Tomasz Kulikowicz, et al.
Plos One|January 10, 2019
A high-throughput screen to identify novel small molecule inhibitors of the Werner Syndrome Helicase-Nuclease (WRN)Joshua A Sommers, Tomasz Kulikowicz, Deborah L Croteau, et al.
Biorxiv : the Preprint Server for Biology|August 23, 2023
PHOSPHORYLATION-DEPENDENT ASSOCIATION OF WRN WITH RPA IS REQUIRED FOR RECOVERY OF REPLICATION FORKS STALLED AT SECONDARY DNA STRUCTURESAlessandro Noto, Pasquale Valenzisi, Federica Fratini, et al.
Nature Communications|January 27, 2025
Phosphorylation-dependent WRN-RPA interaction promotes recovery of stalled forks at secondary DNA structureAlessandro Noto, Pasquale Valenzisi, Flavia Di Feo, et al.
Nature Communications|December 13, 2017
Cell cycle-dependent phosphorylation regulates RECQL4 pathway choice and ubiquitination in DNA double-strand break repairHuiming Lu, Raghavendra A Shamanna, Jessica K de Freitas, et al.
Cell Death and Differentiation|May 15, 2025
Cockayne syndrome mice reflect human kidney disease and are defective in de novo NAD biosynthesisKomal Pekhale, Vinod Tiwari, Mansoor Hussain, et al.
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