Cavenee W K, Gibbons G F, Chen H W, Kandutsch A A
Biochim Biophys Acta. 1979 Nov 21;575(2):255-65. doi: 10.1016/0005-2760(79)90027-4.
The effects of a wide variety of oxygenated sterols upon sterol biosynthesis and hydroxymethylglutaryl-CoA reductase (mevalonate: NADP+ oxidoreductase (CoA-acylating), EC 1.1.1.34) activity in a wild-type clone and in a 25-hydroxycholesterol-resistant clone of Chinese hamster lung (Dede) cells are described. Derivatives of cholesterol which were oxygenated in the 6, 7 or 15 positions of the sterol nucleus or in the 20, 22, 24 or 25 positions of the sterol side chain were shown to be potent inhibitors of sterol synthesis and reductase activity in the wild-type cells but none of these substitutions had any effect on the 25-hydroxycholesterol-resistant A2 clone. A 32-hydroxylated derivative of lanosterol also suppressed sterol synthesis and reductase activity in wild-type cells but had no significant effect upon the A2 line. It was also appraent that a complete sterol side chain was necessary for inhibitory activity. Studies of a wide range of inhibitory sterols indicated that there was a close correlation between their effects upon sterol synthesis and reductase activity and that their inhibitory action was specific for sterol biosynthesis since little effect was observed upon fatty acid or CO2 synthesis. Previous studies had shown that the uptake of 25-hydroxycholesterol by the resistant A2 line was unimpaired and the present results indicate that metabolism of this oxygenated sterol is also unaltered. These results, in conjunction with previous studies, suggest that the resistant A2 line is defective in feedback regulation of cholesterol synthesis and that all of the oxygenated sterols tested suppress the biosynthetic pathway through at least one common step.
描述了多种氧化甾醇对中国仓鼠肺(Dede)细胞野生型克隆和25-羟基胆固醇抗性克隆中甾醇生物合成及羟甲基戊二酰辅酶A还原酶(甲羟戊酸:NADP +氧化还原酶(辅酶A酰化),EC 1.1.1.34)活性的影响。在甾醇核的6、7或15位或甾醇侧链的20、22、24或25位被氧化的胆固醇衍生物被证明是野生型细胞中甾醇合成和还原酶活性的有效抑制剂,但这些取代对25-羟基胆固醇抗性A2克隆均无任何影响。羊毛甾醇的32-羟基化衍生物也抑制野生型细胞中的甾醇合成和还原酶活性,但对A2细胞系无显著影响。还明显的是,完整的甾醇侧链对于抑制活性是必需的。对多种抑制性甾醇的研究表明,它们对甾醇合成和还原酶活性的影响之间存在密切相关性,并且它们的抑制作用对甾醇生物合成具有特异性,因为对脂肪酸或二氧化碳合成几乎没有影响。先前的研究表明,抗性A2系对25-羟基胆固醇的摄取未受损害,目前的结果表明这种氧化甾醇的代谢也未改变。这些结果与先前的研究相结合,表明抗性A2系在胆固醇合成的反馈调节方面存在缺陷,并且所有测试的氧化甾醇都通过至少一个共同步骤抑制生物合成途径。