Authors:
KANELAKIS KC
ESTRADARODGERS L
LEVY GN
WEBER WW
Citation: Kc. Kanelakis et al., IDENTIFICATION AND PARTIAL CHARACTERIZATION OF THE ACETYLATION POLYMORPHISM (NAT2-ASTERISK) IN AN OUTBRED (CD-1) MOUSE STRAIN, The FASEB journal, 12(5), 1998, pp. 5569-5569
Citation: L. Estradarodgers et al., DEVELOPMENTAL EXPRESSION AND ANDROGEN MODULATION OF MOUSE N-ACETYLTRANSFERASE-2 GENE (NAT2-ASTERISK), The FASEB journal, 12(4), 1998, pp. 1872-1872
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Citation: Ww. Weber et Ad. Singh, INCORPORATING I-DDQ TESTING WITH BIST FOR IMPROVED COVERAGE - AN EXPERIMENTAL-STUDY, JOURNAL OF ELECTRONIC TESTING-THEORY AND APPLICATIONS, 11(2), 1997, pp. 147-156
Citation: Y. Liu et al., INDUCTION OF HUMAN PROSTAGLANDIN ENDOPEROXIDE-H SYNTHASE-2 (PHS-2) MESSENGER-RNA BY TCDD, Prostaglandins, 53(1), 1997, pp. 1-10
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Authors:
HO CC
LIN TH
LAI YS
CHUNG JG
LEVY GN
WEBER WW
Citation: Cc. Ho et al., KINETICS OF ACETYL-COENZYME A-ARYLAMINE N-ACETYLTRANSFERASE FROM RAPID AND SLOW ACETYLATOR FROG TISSUES, Drug metabolism and disposition, 24(2), 1996, pp. 137-141
Authors:
NERURKAR PV
SCHUT HAJ
ANDERSON LM
RIGGS CW
FORNWALD LW
DAVIS CD
SNYDERWINE EG
THORGEIRSSON SS
WEBER WW
RICE JM
LEVY GN
Citation: Pv. Nerurkar et al., AHR LOCUS PHENOTYPE IN CONGENIC MICE INFLUENCES HEPATIC AND PULMONARYDNA ADDUCT LEVELS OF 2-AMINO-3-METHYLIMIDAZO[4,5-F]QUINOLINE IN THE ABSENCE OF CYTOCHROME-P450 INDUCTION, Molecular pharmacology, 49(5), 1996, pp. 874-881
Citation: Ww. Weber, INFLUENCE OF HEREDITY ON HUMAN SENSITIVITY TO ENVIRONMENTAL CHEMICALS, Environmental and molecular mutagenesis, 25, 1995, pp. 102-114
Citation: Jh. Deleon et al., SLOW ACETYLATION IN MICE IS CAUSED BY A LABILE AND CATALYTICALLY IMPAIRED MUTANT N-ACETYLTRANSFERASE (NAT2-9), Drug metabolism and disposition, 23(12), 1995, pp. 1354-1361
Authors:
NERURKAR PV
SCHUT HAJ
ANDERSON LM
RIGGS CW
SNYDERWINE EG
THORGEIRSSON SS
WEBER WW
RICE JM
LEVY GN
Citation: Pv. Nerurkar et al., DNA-ADDUCTS OF 2-AMINO-3-METHYLIMIDAZO[4,5-F]QUINOLINE (IQ) IN COLON,BLADDER, AND KIDNEY OF CONGENIC MICE DIFFERING IN AH RESPONSIVENESS AND N-ACETYLTRANSFERASE GENOTYPE, Cancer research, 55(14), 1995, pp. 3043-3049
Citation: Y. Liu et al., ACTIVATION OF 2-AMINOFLUORENE BY PROSTAGLANDIN ENDOPEROXIDE-H SYNTHASE-2, Biochemical and biophysical research communications, 215(1), 1995, pp. 346-354
Citation: L. Rodgers et al., DETERMINATION OF UPSTREAM AND DOWNSTREAM SEQUENCES OF THE HUMAN N-ACETYLTRANSFERASE GENE ENCODING NAT2, The FASEB journal, 8(7), 1994, pp. 10001444-10001444
Citation: Gn. Levy et al., 2-AMINOFLUORENE METABOLISM AND DNA ADDUCT FORMATION BY MONONUCLEAR LEUKOCYTES FROM RAPID AND SLOW ACETYLATOR MOUSE STRAINS, Carcinogenesis, 15(2), 1994, pp. 353-357
Citation: Ww. Weber et Kp. Vatsis, INDIVIDUAL VARIABILITY IN P-AMINOBENZOIC ACID N-ACETYLATION BY HUMAN N-ACETYLTRANSFERASE (NAT1) OF PERIPHERAL-BLOOD, Pharmacogenetics, 3(4), 1993, pp. 209-212
Citation: Gn. Levy et al., POLYMORPHIC N-ACETYLATION OF 2-AMINOFLUORENE BY CELL-FREE COLON EXTRACTS FROM INBRED MICE, Pharmacogenetics, 3(2), 1993, pp. 71-76
Citation: Jg. Chung et al., DISTRIBUTION OF 2-AMINOFLUORENE AND P-AMINOBENZOIC ACID N-ACETYLTRANFERASE ACTIVITY IN TISSUES OF C57BL 6J RAPID AND B6.A-NAT(S) SLOW ACETYLATOR CONGENIC MICE/, Drug metabolism and disposition, 21(6), 1993, pp. 1057-1063
Citation: Kj. Martell et Ww. Weber, N-ACETYLATION POLYMORPHISM IN LIVER AND PANCREAS OF INBRED RATS, Drug metabolism and disposition, 21(5), 1993, pp. 965-966