Metabolism of 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK), a tobacco-specific carcinogen, by rabbit nasal microsomes and cytochrome P450s NMa and NMb.

Metabolism of 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK), a tobacco-specific carcinogen, by rabbit nasal microsomes and cytochrome P450s NMa and NMb.
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4-(甲基亚硝基氨基)-1-(3-吡啶基)-1-丁酮 (NNK)(一种烟草特异性致癌物)通过兔鼻微粒体和细胞色素 P450s NMa 和 NMb 的代谢。

DOI:
10.1093/carcin/13.11.2141
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发表时间:
1992
期刊:
影响因子:
4.7
通讯作者:
Yang,CS
Yang,CS
中科院分区:
医学2区
文献类型:
--
作者:
Hong,JY;Ding,X;Smith,TJ;Coon,MJ;Yang,CS

文献摘要

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相似文献

兔鼻嗅微粒体和呼吸微粒体对4-(甲基亚硝胺基)-1-(3-吡啶基)-1-丁酮(NNK)的α-羟基化反应有催化作用,其生成酮醛的比活性分别为262和136 pmol/min/mg蛋白,生成酮醇的比活性分别为318和190 pmol/min/mg蛋白。在兔嗅觉和呼吸微粒体实验中观察到NNK-N-氧化物的形成,但在大鼠鼻微粒体中未观察到。而大鼠鼻微粒体对NNK的α-羟基化有较高的催化活性。在重组体系中,兔鼻微粒体中主要组成型P450同工酶P450 NMa在酮醛和酮醇的形成中表现出高活性,表观Km值分别为15和9 μM。相比之下,兔嗅觉特异性P450 NMb催化酮醛形成的活性较低(Km= 186 μM),而对酮醇的形成没有活性。尼古丁和二烯丙基硫醚可抑制P450 NMa催化的NNK氧化。动力学研究表明,尼古丁是一种竞争性抑制剂。这些结果表明,兔鼻微粒体中的酶,特别是P450 NMa,有效地催化NNK的生物活化。
Rabbit nasal olfactory and respiratory microsomes were found to catalyze the α-hydroxylation of 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) with specific activities of 262 and 136 pmol/min/mg protein in the formation of keto aldehyde, and of 318 and 190 pmol/min/mg protein in the formation of keto alcohol respectively. The formation of NNK-N-oxide was observed in experiments with rabbit olfactory and respiratory microsomes, but not with rat nasal microsomes. However, the rat nasal microsomes had higher activity in catalyzing the α-hydroxylation of NNK. In a reconstituted system, rabbit P450NMa, a major constitutive P450 isozyme in nasal microsomes, displayed high activities in the formation of the keto aldehyde and the keto alcohol with apparentKmvalues of 15 and 9 μM respectively. In comparison, rabbit olfactory specific P450NMb had a low activity in catalyzing the formation of keto aldehyde (Km= 186 μM) and no activity in the formation of keto alcohol. The P450NMa-catalyzed oxidation of NNK was inhibited by nicotine and diallyl sulfide. Kinetic studies indicated that nicotine is a competitive inhibitor. These results demonstrate that enzymes in rabbit nasal microsomes, especially P450NMa, efficiently catalyze the bioactivation of NNK.