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Current Protocols in Toxicology|October 10, 2012
γ-Glutamyl Transpeptidase Activity AssayY Ikeda, N TaniguchiAdvances in Enzymology and Related Areas of Molecular Biology|April 29, 1998
gamma-Glutamyl transpeptidase: catalytic mechanism and gene expressionN Taniguchi, Y IkedaThe Journal of Biological Chemistry|May 10, 2000
The Asn-420-linked sugar chain in human epidermal growth factor receptor suppresses ligand-independent spontaneous oligomerization. Possible role of a specific sugar chain in controllable receptor activationT Tsuda, Y Ikeda, N TaniguchiThe Journal of Biological Chemistry|February 25, 1993
Significance of Arg-107 and Glu-108 in the catalytic mechanism of human gamma-glutamyl transpeptidase. Identification by site-directed mutagenesisY Ikeda, J Fujii, N TaniguchiThe Journal of Biological Chemistry|March 29, 2000
Dominant negative role of the glutamic acid residue conserved in the pyruvate kinase M(1) isozyme in the heterotropic allosteric effect involving fructose-1,6-bisphosphateY Ikeda, N Taniguchi, T NoguchiJournal of Biochemistry|June 1, 1996
Effects of substitutions of the conserved histidine residues in human gamma-glutamyl transpeptidaseY Ikeda, J Fujii, N TaniguchiBiochimica Et Biophysica Acta|August 18, 1994
Selective suppression of IgG2a subclass in LEC rats during developmentY Ikeda, T Sugiyama, M Takahashi, et al.Proceedings of the National Academy of Sciences of the United States of America|January 3, 1995
Expression of an active glycosylated human gamma-glutamyl transpeptidase mutant that lacks a membrane anchor domainY Ikeda, J Fujii, N Taniguchi, et al.The Journal of Biological Chemistry|May 26, 1995
Human gamma-glutamyl transpeptidase mutants involving conserved aspartate residues and the unique cysteine residue of the light subunitY Ikeda, J Fujii, N Taniguchi, et al.The Biochemical Journal|July 1, 1994
Induction of manganese superoxide dismutase mRNA by okadaic acid and protein synthesis inhibitorsJ Fujii, T Nakata, E Miyoshi, et al.Pageof 207