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Molecular and Cellular Biology|September 13, 2017
PARI Regulates Stalled Replication Fork Processing To Maintain Genome Stability upon Replication Stress in MiceAyako L Mochizuki, Ami Katanaya, Eri Hayashi, et al.The Journal of Biological Chemistry|December 22, 2004
RDM1, a novel RNA recognition motif (RRM)-containing protein involved in the cell response to cisplatin in vertebratesSamia Hamimes, Hiroshi Arakawa, Alicja Z Stasiak, et al.Molecular Cell|December 18, 2007
Deubiquitination of FANCD2 is required for DNA crosslink repairVibe H Oestergaard, Frederic Langevin, Hendrik J Kuiken, et al.Cancer Research|April 19, 2006
A new melanoma antigen fatty acid-binding protein 7, involved in proliferation and invasion, is a potential target for immunotherapy and molecular target therapyYasufumi Goto, Yuriko Matsuzaki, Sachiko Kurihara, et al.The EMBO Journal|June 14, 2003
Multiple roles of Rev3, the catalytic subunit of polzeta in maintaining genome stability in vertebratesEiichiro Sonoda, Takashi Okada, Guang Yu Zhao, et al.Pediatric Transplantation|March 13, 2012
Matched sibling donor stem cell transplantation for Fanconi anemia patients with T-cell somatic mosaicismMiharu Yabe, Takashi Shimizu, Tsuyoshi Morimoto, et al.Journal of Cutaneous Pathology|January 19, 2008
A case of primary Epstein-Barr virus-associated cutaneous diffuse large B-cell lymphoma unassociated with iatrogenic or endogenous immune dysregulationYasutaka Tokuda, Mana Fukushima, Koh Nakazawa, et al.Cell Reports|October 27, 2021
RNF168 E3 ligase participates in ubiquitin signaling and recruitment of SLX4 during DNA crosslink repairYoko Katsuki, Masako Abe, Seon Young Park, et al.Stem Cells Translational Medicine|March 13, 2015
Pluripotent cell models of fanconi anemia identify the early pathological defect in human hemoangiogenic progenitorsNaoya M Suzuki, Akira Niwa, Miharu Yabe, et al.Molecular and Cellular Biology|December 17, 2004
Fanconi anemia protein FANCD2 promotes immunoglobulin gene conversion and DNA repair through a mechanism related to homologous recombinationKazuhiko Yamamoto, Seiki Hirano, Masamichi Ishiai, et al.Pageof 16