首页> 外文期刊>Japanese Journal of Pharmacology >CARBON TETRACHLORIDE-INDUCED LOSS OF MICROSOMAL GLUCOSE 6-PHOSPHATASE AND CYTOCHROME P-450 IN VITRO
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CARBON TETRACHLORIDE-INDUCED LOSS OF MICROSOMAL GLUCOSE 6-PHOSPHATASE AND CYTOCHROME P-450 IN VITRO

机译:碳四氯化物引起的微粒葡萄糖6-磷酸酶和细胞色素P-450的体外损失

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References(28) Cited-By(14) Rat liver microsomes were incubated in the presence of NADPH and CCl4 under various conditions, and losses of glucose 6-phosphatase (G-6-Pase) and cytochrome P-450 were examined in terms of lipid peroxidation and CCl4 metabolism. Loss of G-6-Pase activity correlated well with the enhancement of lipid peroxidation. Loss of cytochrome P-450 was also dependent on the lipid peroxidation, under aerobic conditions. However, the cytochrome was destroyed under anaerobic conditions in which lipid peroxidation and loss of G-6-Pase were greatly suppressed. This anaerobic loss of cytochrome P-450 may be linked with the metabolism of CCl4 by this hemoprotein, as evidenced by the observation that CCl4 metabolism occurred only under anaerobic conditions and was inhibited by carbon monoxide accompanied by the suppression of the loss of cytochrome P-450.
机译:参考文献(28)被引用的By(14)大鼠肝微粒体在NADPH和CCl4存在下于各种条件下孵育,并根据以下条件检查了葡萄糖6磷酸酶(G-6-Pase)和细胞色素P-450的损失。脂质过氧化和CCl4代谢。 G-6-Pase活性的丧失与脂质过氧化作用的增强密切相关。在有氧条件下,细胞色素P-450的损失还取决于脂质的过氧化作用。然而,细胞色素在厌氧条件下被破坏,其中脂质过氧化和G-6-Pase的损失被大大抑制。细胞色素P-450的这种无氧损失可能与该血红蛋白的CCl4代谢有关,这一观察结果表明,CCl4代谢仅在无氧条件下发生,并被一氧化碳抑制,同时抑制了细胞色素P-450的损失。 450。

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