Microsomal formation of nitric oxide and cyanamides from non-physiological N-hydroxyguanidines:: N-hydroxydebrisoquine as a model substrate

被引:16
作者
Clement, B
Boucher, JL
Mansuy, D
Harsdorf, A
机构
[1] Univ Kiel, Inst Pharmazeut, D-24118 Kiel, Germany
[2] Univ Paris 05, URA 400 CNRS, Lab Chim & Biochim Pharmacol & Toxicol, F-75270 Paris 06, France
关键词
N-hydroxydebrisoquine; nitric oxide; N-hydroxy-L-arginine; N-hydroxyguanidine; cytochrome P-450; cyanamides;
D O I
10.1016/S0006-2952(99)00102-1
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The microsomal oxidative transformation of a non-physiological N-hydroxyguanidine was demonstrated for the first time for N-hydroxydebrisoquine as a model substrate (Clement et al., Biochem Pharmacol 46: 2249-2267, 1993). The objective of the present work was to further compare this reaction with the analogous oxidation of arginine via N-hydroxyarginine to citrulline and nitric oxide. The oxidation of N-hydroxydebrisoquine by liver microsomes from rats pretreated with dexamethasone not only produced nitric oxide and the urea, but also the cyanamide derivative as the main metabolite. The low stability of the cyanamide derivative, which easily hydrolyzed to the urea derivative, was noted. The formation of all compounds required cosubstrate and the enzyme source. Experiments with catalase, superoxide dismutase, and H2O2 showed that the O-2(-) formed from the enzyme and the substrate apparently participated in the reaction. While the N-hydroxylation of the guanidine involves the usual monooxygenase activity of cytochrome P-450 (Clement et al., Biochem Pharmacol 46: 2249-2267, 1993), the resultant N-hydroxyguanidine decoupled the monooxygenase. Nitric oxide was detected by the oxyhemoglobin assay. To examine the influence of enzymatically formed nitric oxide on the formation of the metabolites, the N-hydroxydebrisoquine was incubated with SIN-1 as nitric oxide donor under aerobic conditions. It was again possible to detect the cyanamide and urea derivatives, with the latter as main metabolite. It was concluded that the microsomal transformation of N-hydroxydebrisoquine produces a cyanamide and nitric oxide which reacts with N-hydroxydebrisoquine to form the urea derivative. The purely chemical reaction of the unsubstituted N-hydroxyguanidine with nitric oxide gave similar results (Fukuto et al., Biochem Pharmacol 43: 607-613, 1992). In conclusion, similarities (formation of a urea derivative) and differences (formation of a cyanamide derivative) between the physiological oxidation of N-hydroxy-L-arginine by nitric oxide synthases and non-physiological N-hydroxyguanidines by cytochrome P-450 were observed. Furthermore, non-physiological N-hydroxyguanidines can be regarded as nitric oxide donors. (C) 1999 Elsevier Science Inc.
引用
收藏
页码:439 / 445
页数:7
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