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环己烷羧酸向马尿酸的芳构化:底物特异性和物种差异。

The aromatization of cyclohexanecarboxylic acid to hippuric acid: substrate specificity and species differences.

作者信息

Svardal A M, Scheline R R

出版信息

Mol Cell Biochem. 1985 Jul;67(2):171-9. doi: 10.1007/BF02370176.

Abstract

The ability to convert cyclohexanecarboxylic acid to hippuric acid has been studied in liver from guinea pigs, rabbits, rats and mice using a gas chromatographic - mass spectrometric method employing selected ion monitoring. Guinea pig liver showed the highest activity, giving values double of those found in rabbit liver and five times those in rat liver. Only very weak activity was found in mouse liver. (Hydroxymethyl)cyclohexane, cyclohexanealdehyde and alpha-hydroxyethylcyclohexane, which are structurally related to cyclohexanecarboxylic acid but lack the carboxyl group, were not aromatized by guinea pig liver mitochondria. This finding indicates that the carboxyl group is essential for aromatization. Absence of aromatization was also found with the homologs cyclohexaneacetic acid and cyclohexanepropionic acid and with the di-acids trans-1,2- and trans-1,4-cyclohexanedicarboxylic acid. The effect of a methyl group in cyclohexanecarboxylic acid depended on its position. 2-Methyl-1-cyclohexanecarboxylic acid was not aromatized, however the 3- and 4-methyl derivatives underwent aromatization and subsequent conjugation with glycine. The rates of formation of m-methyl- and p-methylhippuric acid were 16% and 9%, respectively, of that found for hippuric acid from cyclohexanecarboxylic acid (8.0 nmol/min/mg protein).

摘要

利用采用选择离子监测的气相色谱 - 质谱法,对豚鼠、兔子、大鼠和小鼠肝脏中环己烷羧酸转化为马尿酸的能力进行了研究。豚鼠肝脏显示出最高的活性,其数值是兔肝脏的两倍,是大鼠肝脏的五倍。在小鼠肝脏中仅发现非常微弱的活性。与环己烷羧酸结构相关但缺少羧基的(羟甲基)环己烷、环己烷醛和α - 羟乙基环己烷,未被豚鼠肝脏线粒体芳构化。这一发现表明羧基对于芳构化至关重要。在同系物环己烷乙酸和环己烷丙酸以及二酸反式 - 1,2 - 和反式 - 1,4 - 环己烷二甲酸中也未发现芳构化现象。环己烷羧酸中甲基的影响取决于其位置。2 - 甲基 - 1 - 环己烷羧酸未被芳构化,然而3 - 和4 - 甲基衍生物发生了芳构化并随后与甘氨酸结合。间甲基马尿酸和对甲基马尿酸的形成速率分别为环己烷羧酸生成马尿酸(8.0 nmol/分钟/毫克蛋白质)速率的16%和9%。

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