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1.
Chem Pharm Bull (Tokyo) ; 62(2): 176-81, 2014.
Article in English | MEDLINE | ID: mdl-24492587

ABSTRACT

Although cytochromes P450 2C9 (CYP2C9) and 2C19 (CYP2C19) have 91% amino acid identity, they have different substrate specificities. Previous studies have suggested that several amino acid residues may be involved in substrate specificity. In this study, we focused on the roles of two amino acids, residues 72 and 241. The amino acids in these positions have opposite charges in CYP2C9 and 2C19; the former has lysines in both positions (Lys72 and Lys241), and the latter has glutamic acids (Glu72 and Glu241). Reciprocal mutants for both CYP2C19 and 2C9 were produced, and their metabolic activities and spectroscopic properties were examined using three tricyclic antidepressant (TCA) drugs: amitriptyline, imipramine, and dothiepin. Although CYP2C19 wild-type (WT) had a high metabolic activity for all three drugs, the E72K mutation decreased enzymatic activity by 29-37%, while binding affinities were diminished 2.5- to 20-fold. On the other hand, low activity and low affinity of CYP2C9 WT were recovered notably by K72E mutation. The metabolic activities and binding affinities were minimally affected by CYP2C19 E241K and CYP2C9 K241E mutations. We could also show linear correlations between metabolic activities and binding affinities, and hence we conclude that amino acid residue 72 plays a key role in TCA drug metabolism by limiting the binding affinities of CYP2C19 and CYP2C9.


Subject(s)
Amitriptyline/metabolism , Antidepressive Agents, Tricyclic/metabolism , Aryl Hydrocarbon Hydroxylases/metabolism , Dothiepin/metabolism , Imipramine/metabolism , Amino Acid Sequence , Aryl Hydrocarbon Hydroxylases/chemistry , Aryl Hydrocarbon Hydroxylases/genetics , Cytochrome P-450 CYP2C19 , Cytochrome P-450 CYP2C9 , Humans , Molecular Sequence Data , Point Mutation , Protein Binding , Substrate Specificity
2.
Chem Pharm Bull (Tokyo) ; 60(12): 1544-9, 2012.
Article in English | MEDLINE | ID: mdl-23018445

ABSTRACT

The investigation of cytochrome P450 (CYP) mediated metabolism reactions by determination of enzyme kinetic parameters, Michaelis constant (K(m)), maximum reaction velocity (V(max)), and intrinsic clearance (CL(int)) is important aspects in discovery and development of drugs. The kinetic parameters can be used to predict the clearance prior to human administration and for better understanding the mechanism of clearance in vivo. In this study, the metabolic activities of three major hepatic CYP isoforms (2C19, 2D6, and 3A4) were investigated on structurally different central nervous system (CNS) acting drugs, amitriptyline, fluphenazine, and dothiepin. By using our novel in vitro evaluation system, we could compare the kinetic parameters for the metabolism of fluphenazine and dothiepin for the first time. Comparing CL(int) values thus obtained, we concluded that 2C19 could be predominant for metabolic activity on tricyclic antidepressants as expected, but not on phenothiazine-related antipsychotic drugs. Since the metabolism of CNS drugs is susceptible to single nucleotide polymorphisms of human gene, our results suggest that phenothiazine could be an alternative to clinical application of CNS drugs.


Subject(s)
Amitriptyline/metabolism , Central Nervous System Agents/metabolism , Cytochrome P-450 Enzyme System/metabolism , Dothiepin/metabolism , Fluphenazine/metabolism , Amitriptyline/chemistry , Central Nervous System Agents/chemistry , Chromatography, High Pressure Liquid , Cytochrome P-450 Enzyme System/genetics , Cytochrome P-450 Enzyme System/isolation & purification , Dothiepin/chemistry , Fluphenazine/chemistry , Humans , Kinetics , Molecular Structure , Recombinant Proteins/genetics , Recombinant Proteins/isolation & purification , Recombinant Proteins/metabolism
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