Pronzato M A, Cottalasso D, Domenicotti C, Tenca C, Traverso N, Nanni G, Marinari U M
Institute of General Pathology, University of Genoa, Italy.
Free Radic Res Commun. 1990;11(4-5):267-77. doi: 10.3109/10715769009088924.
Carbon tetrachloride (CCl4) poisoning affects glycoprotein processing and maturation at the level of rat liver microsomes and Golgi apparatus. HPLC analysis showed that within 5-60 min after CCl4 administration the levels of total dolichol, free dolichol and dolichyl-phosphate strongly decreased both in total microsomes and in Golgi apparatus. The most marked and early reduction of total dolichol was observed in the secretory membranes of Golgi area already 15 min after CCl4 poisoning. The incubation of CCl4-pretreated isolated hepatocytes with [3H]-mevalonate showed a significant slowing down of the label incorporation into both free-dolichol and dolichyl-phosphate. Moreover, lipid peroxidation might cause alterations in the molecular structure of both free-dolichol and dolichyl-phosphate. A notable prevention of dolichol decrease was observed in animals pretreated with vitamin E. The results suggest that the prooxidant activity of CCl4 is able to affect the metabolism of dolichol either by increasing the oxidative degradation or impairing the biosynthetic pathway.
四氯化碳(CCl4)中毒会影响大鼠肝脏微粒体和高尔基体水平上的糖蛋白加工与成熟。高效液相色谱分析表明,给予CCl4后5 - 60分钟内,总多萜醇、游离多萜醇和多萜醇磷酸酯的水平在总微粒体和高尔基体中均显著下降。CCl4中毒后15分钟,在高尔基体区域的分泌膜中就观察到总多萜醇最明显且最早的减少。用[3H] - 甲羟戊酸孵育经CCl4预处理的分离肝细胞,结果显示标记物掺入游离多萜醇和多萜醇磷酸酯的速度显著减慢。此外,脂质过氧化可能会导致游离多萜醇和多萜醇磷酸酯的分子结构发生改变。在用维生素E预处理的动物中观察到多萜醇减少得到显著预防。结果表明,CCl4的促氧化活性能够通过增加氧化降解或损害生物合成途径来影响多萜醇的代谢。