Cerniglia C E, Fu P P, Yang S K
Biochem J. 1983 Nov 15;216(2):377-84. doi: 10.1042/bj2160377.
Metabolism of 4-methylbenz[a]anthracene by the fungus Cunninghamella elegans was studied. C. elegans metabolized 4-methylbenz[a]anthracene primarily at the methyl group, this being followed by further metabolism at the 8,9- and 10,11-positions to form trans-8,9-dihydro-8,9-dihydroxy-4-hydroxymethylbenz[a]anthracene and trans-10,11-dihydro-10,11-dihydroxy-4-hydroxymethylbenz[a]anthracene. There was no detectable trans-dihydrodiol formed at the methyl-substituted double bond (3,4-positions) or at the 'K' region (5,6-positions). The metabolites were isolated by reversed-phase high-pressure liquid chromatography and characterized by the application of u.v.-visible-absorption-, 1H-n.m.r.- and mass-spectral techniques. The 4-hydroxymethylbenz[a]anthracene trans-8,9- and -10,11-dihydrodiols were optically active. Comparison of the c.d. spectra of the trans-dihydrodiols formed from 4-methylbenz[a]anthracene by C. elegans with those of the corresponding benz[a]anthracene trans-dihydrodiols formed by rat liver microsomal fraction indicated that the major enantiomers of the 4-hydroxymethylbenz[a]anthracene trans-8,9-dihydrodiol and trans- 10,11-dihydrodiol formed by C. elegans have S,S absolute stereochemistries, which are opposite to those of the predominantly 8R,9R- and 10R,11R-dihydrodiols formed by the microsomal fraction. Incubation of C. elegans with 4-methylbenz[a]anthracene under 18O2 and subsequent mass-spectral analysis of the metabolites indicated that hydroxylation of the methyl group and the formation of trans-dihydrodiols are catalysed by cytochrome P-450 mono-oxygenase and epoxide hydrolase enzyme systems. The results indicate that the fungal mono-oxygenase-epoxide hydrolase enzyme systems are highly stereo- and regio-selective in the metabolism of 4-methylbenz[a]anthracene.
研究了真菌雅致小克银汉霉对4-甲基苯并[a]蒽的代谢。雅致小克银汉霉主要在甲基处代谢4-甲基苯并[a]蒽,随后在8,9-和10,11-位进一步代谢,形成反式-8,9-二氢-8,9-二羟基-4-羟甲基苯并[a]蒽和反式-10,11-二氢-10,11-二羟基-4-羟甲基苯并[a]蒽。在甲基取代的双键(3,4-位)或“K”区域(5,6-位)未检测到反式二氢二醇的形成。通过反相高压液相色谱法分离代谢产物,并应用紫外-可见吸收、1H-核磁共振和质谱技术对其进行表征。4-羟甲基苯并[a]蒽反式-8,9-和-10,11-二氢二醇具有光学活性。将雅致小克银汉霉与4-甲基苯并[a]蒽在18O2条件下孵育,随后对代谢产物进行质谱分析,结果表明甲基的羟基化和反式二氢二醇的形成是由细胞色素P-450单加氧酶和环氧化物水解酶系统催化的。结果表明,真菌单加氧酶-环氧化物水解酶系统在4-甲基苯并[a]蒽的代谢中具有高度的立体和区域选择性。