Kawanishi T, Ohno Y, Takahashi A, Takanaka A, Kasuya Y, Omori Y
Arch Toxicol. 1984 Nov;56(1):7-11. doi: 10.1007/BF00316344.
The nature of enzymes involved in demethylation of N-nitrosodimethylamine (NDMA) was investigated in hepatic microsomes of rats. Compared to the other cytochrome P-450-dependent enzymes. NDMA demethylase had anomalous properties as reported in the literature. However, kinetic analysis suggested a qualitative change in NDMA demethylase induced by phenobarbital (PB) and 3-methylcholanthrene (MC) pretreatment. The inhibition of demethylase by alpha-naphthoflavone in MC-treated microsomes also suggested that cytochrome P-450 species induced by MC are active in demethylating NDMA. The enhancement of NDMA demethylase activity by metyrapone in PB-treated microsomes was greater than in non-treated ones, and was not observed in MC-treated ones. The result is almost the same as in acetanilide hydroxylation, depending on cytochrome P-450. Pyrazole, tranylcypromine, and aminoacetonitrile, which are selective inhibitors of NDMA demethylation, interacted with cytochrome P-450 species to produce type-II spectra, and typical type-II compounds (aniline, imidazole, and nicotinamide) were inhibitors of the NDMA demethylation. Tranylcypromine irreversibly inhibited microsomal monoamine oxidase [EC 1.4.3.4], but not NDMA demethylase. Semicarbazide (a copper- and pyridoxal-containing amine oxidase [EC 1.4.3.6] inhibitor) had no effect on demethylation. From these results it is concluded that NDMA demethylation depends only on cytochrome P-450-dependent monooxygenases.
在大鼠肝脏微粒体中研究了参与N-亚硝基二甲胺(NDMA)去甲基化的酶的性质。与其他细胞色素P-450依赖性酶相比。如文献报道,NDMA去甲基酶具有异常特性。然而,动力学分析表明,苯巴比妥(PB)和3-甲基胆蒽(MC)预处理可诱导NDMA去甲基酶发生质的变化。α-萘黄酮对MC处理的微粒体中去甲基酶的抑制作用也表明,MC诱导的细胞色素P-450种类在NDMA去甲基化中具有活性。甲吡酮对PB处理的微粒体中NDMA去甲基酶活性的增强作用大于未处理的微粒体,而在MC处理的微粒体中未观察到这种增强作用。结果与乙酰苯胺羟基化反应几乎相同,均依赖于细胞色素P-450。吡唑、反苯环丙胺和氨基乙腈是NDMA去甲基化的选择性抑制剂,它们与细胞色素P-450种类相互作用产生II型光谱,典型的II型化合物(苯胺、咪唑和烟酰胺)是NDMA去甲基化的抑制剂。反苯环丙胺不可逆地抑制微粒体单胺氧化酶[EC 1.4.3.4],但不抑制NDMA去甲基酶。氨基脲(一种含铜和吡哆醛的胺氧化酶[EC 1.4.3.6]抑制剂)对去甲基化无影响。从这些结果可以得出结论,NDMA去甲基化仅依赖于细胞色素P-450依赖性单加氧酶。