Aranda J V, Renton K W
Can J Physiol Pharmacol. 1975 Oct;53(5):873-9. doi: 10.1139/y75-120.
The effect of glucagon on the components of the hepatic microsomal electron transport chain (NADPH oxidase, NADPH cytochrome c reductase (EC 1.6.2.4), cytochrome P-450, and NADPH cytochrome P-450 reductase), and on two representative oxidative pathways (aminopyrine N-demethylation, a type I substrate oxidation; and aniline p-hydroxylation, a type II substrate oxidation) was determined. Microsomes from rats pretreated with glucagon (300 mug/kg per day for 3 days) showed a significant decrease in NADPH oxidation and in aminopyrine N-demethylation with a prolonged hexobarbital sleeping time, and a significant increase in aniline p-hydroxylation. Microsomes from rats pretreated with a lower dose of glucagon (30 mug/kg per day for 3 days) showed a significant decrease in the microsomal N-demethylation of aminopyrine. Glucagon had no effect when added in vitro to microsomes, suggesting that the in vivo effects of glucagon are mediated indirectly in the intact animal.
研究了胰高血糖素对肝微粒体电子传递链各组分(NADPH氧化酶、NADPH细胞色素c还原酶(EC 1.6.2.4)、细胞色素P-450和NADPH细胞色素P-450还原酶)以及对两条代表性氧化途径(氨基比林N-脱甲基作用,一种I型底物氧化;苯胺对羟基化作用,一种II型底物氧化)的影响。用胰高血糖素预处理(300μg/kg每天,共3天)的大鼠的微粒体显示NADPH氧化和氨基比林N-脱甲基作用显著降低,环己巴比妥睡眠时间延长,苯胺对羟基化作用显著增加。用较低剂量胰高血糖素预处理(30μg/kg每天,共3天)的大鼠的微粒体显示氨基比林的微粒体N-脱甲基作用显著降低。当在体外向微粒体中添加胰高血糖素时没有作用,这表明胰高血糖素的体内作用是在完整动物中介导的间接作用。