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首页> 外文期刊>Biochemistry >Intramolecular isotope effects for benzylic hydroxylation of isomeric xylenes and 4,4'-dimethylbiphenyl by cytochrome P450: relationship between distance of methyl groups and masking of the intrinsic isotope effect.
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Intramolecular isotope effects for benzylic hydroxylation of isomeric xylenes and 4,4'-dimethylbiphenyl by cytochrome P450: relationship between distance of methyl groups and masking of the intrinsic isotope effect.

机译:通过细胞色素P450进行的异构二甲苯和4,4'-二甲基联苯的苄基羟化的分子内同位素效应:甲基距离与固有同位素效应掩盖之间的关系。

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摘要

Intramolecular isotope effects associated with the benzylic hydroxylation of a series of selectively deuterated isomeric xylenes and 4,4'-dimethylbiphenyl as catalyzed by various rat liver microsomal preparations and CYP2B1 were determined. Substrate analogs in which each methyl group contained either one (d2 substrates) or two (d4 substrates) deuterium atoms were used to determine the intrinsic isotope effect for the reaction. Specific values of the individual primary (P) and secondary isotope effects (S) were determined. P ranged from a low of 5.32 +/- 0.48 to a high of 7.57 +/- 0.42 depending upon the specific cytochrome P450 preparation used for catalysis. S had an average value of 1.03. The d3 substrates allowed exploration of the effect of distance on the magnitude of the observed isotope effect. The results indicate that the distance of 6.62 A that separates the carbon atoms of the para methyl groups of p-xylene is insufficient to suppress (mask) the intrinsic isotope effect for benzylic hydroxylation by all of the enzyme preparations examined. Conversely, a distance of 11.05 A, the minimal separation between the carbon atoms of the para methyl groups of p,p'-dimethylbiphenyl, is large enough to almost completely mask the intrinsic isotope effect for benzylic hydroxylation by the same set of enzymes.
机译:确定了与各种大鼠肝微粒体制剂和CYP2B1催化的一系列选择性氘代异构二甲苯和4,4'-二甲基联苯的苄基羟基化相关的分子内同位素效应。使用其中每个甲基包含一个(d2个底物)或两个(d4个底物)氘原子的底物类似物来确定反应的固有同位素效应。确定了各个主要同位素(P)和次要同位素效应(S)的特定值。根据用于催化的特定细胞色素P450制剂,P的范围从低5.32 +/- 0.48到高7.57 +/- 0.42。 S的平均值为1.03。 d3底物允许探索距离对观察到的同位素效应大小的影响。结果表明,分开对二甲苯的对甲基的碳原子的6.62A的距离不足以抑制(掩盖)所有检查的酶制剂对苄基羟基化的固有同位素效应。相反,11.05 A的距离(p,p'-二甲基联苯的对甲基的碳原子之间的最小间隔)足够大,几乎可以完全掩盖同一组酶对苄基羟基化的固有同位素效应。

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