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Nucleic Acids Research|December 1, 1996
Sequential binding of DNA repair proteins RPA and ERCC1 to XPA in vitroM Saijo, I Kuraoka, C Masutani, et al.Genes to Cells : Devoted to Molecular & Cellular Mechanisms|May 1, 1996
Implications of the zinc-finger motif found in the DNA-binding domain of the human XPA proteinE H Morita, T Ohkubo, I Kuraoka, et al.Proceedings of the National Academy of Sciences of the United States of America|April 12, 2000
Removal of oxygen free-radical-induced 5',8-purine cyclodeoxynucleosides from DNA by the nucleotide excision-repair pathway in human cellsI Kuraoka, C Bender, A Romieu, et al.Mutation Research|January 2, 1996
Identification of a damaged-DNA binding domain of the XPA proteinI Kuraoka, E H Morita, M Saijo, et al.Human Mutation|January 1, 1997
Mutations in the XPD gene leading to xeroderma pigmentosum symptomsT Kobayashi, I Kuraoka, M Saijo, et al.Current Biology : CB|February 9, 2000
RuvAB-mediated branch migration does not involve extensive DNA opening within the RuvB hexamerH George, I Kuraoka, D A Nauman, et al.Nature Structural Biology|August 12, 1998
Solution structure of the DNA- and RPA-binding domain of the human repair factor XPAT Ikegami, I Kuraoka, M Saijo, et al.The Journal of Biological Chemistry|July 7, 2000
Repair of an interstrand DNA cross-link initiated by ERCC1-XPF repair/recombination nucleaseI Kuraoka, W R Kobertz, R R Ariza, et al.Journal of Biochemistry|March 2, 1999
Resonance assignments, solution structure, and backbone dynamics of the DNA- and RPA-binding domain of human repair factor XPAT Ikegami, I Kuraoka, M Saijo, et al.The Journal of Biological Chemistry|October 26, 2001
Oxygen free radical damage to DNA. Translesion synthesis by human DNA polymerase eta and resistance to exonuclease action at cyclopurine deoxynucleoside residuesI Kuraoka, P Robins, C Masutani, et al.Pageof 2