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The Journal of Biological Chemistry|June 15, 1987
Affinity labeling of adenylate kinase with adenosine diphosphopyridoxal. Presence of Lys21 in the ATP-binding siteM Tagaya, T Yagami, T FukuiFEBS Letters|March 14, 1988
Adenosine di-, tri- and tetraphosphopyridoxals modify the same lysyl residue at the ATP-binding site in adenylate kinaseT Yagami, M Tagaya, T FukuiJournal of Epidemiology|July 22, 1998
Cost-effectiveness analysis of partner notification program for human immunodeficiency virus infection in JapanM Rahman, T Fukui, A AsaiThe Journal of Biological Chemistry|June 10, 1985
A new affinity labeling reagent for the active site of glycogen synthase. Uridine diphosphopyridoxalM Tagaya, K Nakano, T FukuiNucleic Acids Research|June 11, 1979
Polynucleotides. LVII. Synthesis and properties of poly (2'-chloro-2'-deoxyinosinic acid)N Kakiuchi, T Fukui, M IkeharaJournal of Medical Screening|May 22, 2004
Cost-effectiveness of a community-based screening programme for chronic atrial fibrillation in JapanK Maeda, T Shimbo, T FukuiNucleic Acids Research|August 1, 1977
Polynucleotides. XLV Synthesis and properties of poly(2'-azido-2'-deoxyinosinic acid)T Fukui, N Kakiuchi, M IkeharaThe Journal of Biological Chemistry|March 11, 1994
Involvement of conserved lysine 68 of Bacillus stearothermophilus leucine dehydrogenase in substrate bindingT Sekimoto, T Fukui, K TanizawaEuropean Journal of Biochemistry|October 1, 1982
Purification and characterization of acetoacetyl-CoA synthetase from Zoogloea ramigera I-16-MT Fukui, M Ito, K TomitaJournal of Biochemistry|July 1, 1994
Role of the conserved glycyl residues located at the active site of leucine dehydrogenase from Bacillus stearothermophilusT Sekimoto, T Fukui, K TanizawaPageof 118