THE MICROSOMAL DEMETHYLATION OF N,N-DIMETHYLBENZAMIDES - SUBSTITUENT AND KINETIC DEUTERIUM-ISOTOPE EFFECTS

被引:27
作者
CONSTANTINO, L
ROSA, E
ILEY, J
机构
[1] OPEN UNIV,DEPT CHEM,PHYS ORGAN CHEM RES GRP,MILTON KEYNES MK7 6AA,BUCKS,ENGLAND
[2] FAC FARM LISBOA,CECF,P-1600 LISBON,PORTUGAL
关键词
D O I
10.1016/0006-2952(92)90399-4
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The metabolism of N,N-dimethylbenzamides by phenobarbital-induced rat liver microsomes results in the formation of N-methylbenzamides and formaldehyde. The reaction proceeds via the formation of an intermediate N-hydroxymethyl-N-methylbenzamide, which, for the microsomal oxidation of NN-dimethylbenzamide, was isolated and characterized. Confirmation of the N-hydroxymethyl-N-methylbenzamide was obtained by its independent synthesis from N-methylbenzamide and formaldehyde. The intermolecular kinetic deuterium isotope effects for the reaction are 0.9 (+/-0.1) for V(max) and 1.4 (+/-0.1) for V(max)/K(m). The intramolecular kinetic deuterium isotope effect, determined from the relative amounts of N-methylbenzamide and N-trideuteriomethylbenzamide formed in the microsomal demethylation of N-trideuteriomethyl-N-methylbenzamide, is 6.0 +/- 0.3. There is no correlation of V(max) or V(max)/K(m) with the substituent in the aromatic ring, nor with the calculated ionization potentials of the benzamides. The results are interpreted in terms of a mechanism in which the benzamide undergoes direct hydrogen atom abstraction to form a carbon centred radical. This carbon centred radical subsequently forms an N-hydroxymethyl-N-methylbenzamide that decomposes to formaldehyde and an N-methylbenzamide. Semi-empirical AM1 self consistent field molecular orbital calculations identify that loss of a hydrogen atom from the E-methyl group is thermodynamically more favourable than from the Z-methyl group by ca. 5 kJ/mol.
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页码:651 / 658
页数:8
相关论文
共 25 条
[1]   CHEMICALS, CANCER, AND CYTOCHROME-P-450 [J].
ALEXANDER, LS ;
GOFF, HM .
JOURNAL OF CHEMICAL EDUCATION, 1982, 59 (03) :179-182
[2]   MECHANISM OF CYTOCHROME-P-450 CATALYSIS - MECHANISM OF N-DEALKYLATION AND AMINE OXIDE DEOXYGENATION [J].
BURKA, LT ;
GUENGERICH, FP ;
WILLARD, RJ ;
MACDONALD, TL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1985, 107 (08) :2549-2551
[3]   DEPROTONATION OF TERTIARY AMINE CATION RADICALS - A DIRECT EXPERIMENTAL APPROACH [J].
DINNOCENZO, JP ;
BANACH, TE .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1989, 111 (23) :8646-8653
[4]   ISOTOPE-EFFECTS IN O-DEMETHYLATIONS MEDIATED BY RAT-LIVER MICROSOMES - APPLICATION OF DIRECT INSERTION ELECTRON-IMPACT MASS-SPECTROMETRY [J].
FOSTER, AB ;
JARMAN, M ;
STEVENS, JD ;
THOMAS, P ;
WESTWOOD, JH .
CHEMICO-BIOLOGICAL INTERACTIONS, 1974, 9 (05) :327-340
[5]  
Furniss B.S., 1978, VOGELS TXB PRACTICAL, P682
[6]   THE RATE OF N-DEMETHYLATION OF N,N-DIMETHYLANILINES AND N-METHYLANILINES BY RAT-LIVER MICROSOMES IS RELATED TO THEIR 1ST IONIZATION-POTENTIAL, THEIR LIPOPHILICITY AND TO A STERIC BULK FACTOR [J].
GALLIANI, G ;
NALI, M ;
RINDONE, B ;
TOLLARI, S ;
ROCCHETTI, M ;
SALMONA, M .
XENOBIOTICA, 1986, 16 (06) :511-517
[7]   STRUCTURE REACTIVITY RELATIONSHIPS IN THE MICROSOMAL OXIDATION OF TERTIARY-AMINES [J].
GALLIANI, G ;
RINDONE, B ;
DAGNINO, G ;
SALMONA, M .
EUROPEAN JOURNAL OF DRUG METABOLISM AND PHARMACOKINETICS, 1984, 9 (04) :289-293
[8]   THE FORMATION AND METABOLISM OF N-HYDROXYMETHYL COMPOUNDS .5. H-1 AND C-13 NMR-SPECTRA OF THE ROTATIONAL ISOMERS OF N-HYDROXYMETHYLAMIDES AND DERIVATIVES [J].
GATE, EN ;
HOOPER, DL ;
STEVENS, MFG ;
THREADGILL, MD ;
VAUGHAN, K .
MAGNETIC RESONANCE IN CHEMISTRY, 1985, 23 (02) :78-82
[9]  
GUENGERICH FP, 1987, ISI ATLAS-PHARMACOL, P205
[10]  
HALL LR, 1990, J BIOL CHEM, V265, P1234