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不同物种离体灌注肝脏中对硝基苯甲醚混合功能氧化过程中烟酰胺二核苷酸磷酸含量及氧化还原状态的维持

Maintenance of nicotinamide dinucleotide phosphate content and oxidation-reduction state during mixed-function oxidation of p-nitroanisole in isolated perfused livers of various species.

作者信息

Kauffman F C, Evans R K, Jerkins A A, Reinke L A, Conway J G, Thurman R G

出版信息

Biochem Pharmacol. 1987 Apr 1;36(7):1083-90. doi: 10.1016/0006-2952(87)90418-7.

Abstract

The influence of p-nitroanisole, a substrate for mixed-function oxidation, on total NADP+ and NADPH and NADP+/NADPH ratios was examined in perfused livers from three different species. Studies were performed using livers from Sprague-Dawley rats, Syrian golden hamsters and C57BL/6J mice. Although rates of p-nitroanisole O-demethylation varied more than 16-fold in perfused livers from these species, NADP+/NADPH ratios calculated from measured concentrations of NADP+ and NADPH and from ratios calculated from substrate pairs assumed to be in near equilibrium with NADP+-dependent dehydrogenases remained remarkably constant under most conditions. Thus, rates of NADPH utilization and generation must be tightly coupled in perfused livers during high rates of mixed-function oxidation. Exceptions to the general pattern noted above occurred in livers of fasted, phenobarbital-treated rats where carbohydrate reserves were depleted and in livers from 3-methyl-cholanthrene-treated mice where rates of p-nitroanisole O-demethylation were exceptionally high. Livers from fed phenobarbital-treated rats displayed a paradoxical decrease in NADP+/NADPH ratios reflecting reduction calculated from substrates assumed to be in near equilibrium with 6-phosphogluconate dehydrogenase during mixed-function oxidation, suggesting that NADPH generation exceeded NADPH utilization in the rat in the fed state. In contrast, the NADP+/NADPH ratio calculated from measured pyridine nucleotides increased in livers of 3-methylcholanthrene-treated mice perfused with p-nitroanisole, reflecting oxidation. Moreover, the NADP+/NADPH ratio calculated from substrates assumed to be near equilibrium with 6-phosphogluconate dehydrogenase increased in livers of fasted rats, suggesting that utilization of NADPH exceeded generation. Thus, adequate carbohydrate reserves appear essential for maintenance of NADPH during high rates of mixed-function oxidation.

摘要

混合功能氧化的底物对硝基苯甲醚对三种不同物种灌注肝脏中总NADP⁺、NADPH以及NADP⁺/NADPH比值的影响进行了研究。实验采用了来自斯普拉格-道利大鼠、叙利亚金黄地鼠和C57BL/6J小鼠的肝脏。尽管这些物种灌注肝脏中对硝基苯甲醚O-去甲基化速率变化超过16倍,但在大多数情况下,根据测得的NADP⁺和NADPH浓度计算出的NADP⁺/NADPH比值,以及根据假定与NADP⁺依赖性脱氢酶接近平衡的底物对计算出的比值,仍保持显著恒定。因此,在混合功能氧化高速率期间,灌注肝脏中NADPH的利用和生成速率必须紧密耦合。上述一般模式的例外情况发生在禁食且经苯巴比妥处理的大鼠肝脏中,这些大鼠的碳水化合物储备已耗尽;以及在经3-甲基胆蒽处理的小鼠肝脏中,对硝基苯甲醚O-去甲基化速率异常高。喂食苯巴比妥处理大鼠的肝脏中,NADP⁺/NADPH比值出现矛盾性下降,这反映了在混合功能氧化期间,根据假定与6-磷酸葡萄糖酸脱氢酶接近平衡的底物计算出的还原情况,表明在喂食状态下大鼠体内NADPH的生成超过了利用。相反,在用对硝基苯甲醚灌注的经3-甲基胆蒽处理小鼠的肝脏中,根据测得的吡啶核苷酸计算出的NADP⁺/NADPH比值增加,反映了氧化情况。此外,在禁食大鼠的肝脏中,根据假定与6-磷酸葡萄糖酸脱氢酶接近平衡的底物计算出的NADP⁺/NADPH比值增加,表明NADPH的利用超过了生成。因此,充足的碳水化合物储备对于在混合功能氧化高速率期间维持NADPH似乎至关重要。

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