Martin K O, Reiss A B, Lathe R, Javitt N B
Division of Hepatic Diseases, New York University Medical Center, NY 10016, USA.
J Lipid Res. 1997 May;38(5):1053-8.
The report of a novel cytochrome P450 enzyme in mouse hippocampus (cyp7b) with close homology to cholesterol 7 alpha-hydroxylase led us to determine the substrate specificity with respect to 27-hydroxycholesterol, known to be a potent inhibitor of cholesterol synthesis. Transfection of 293/T-cells with PcDNA3.1(+)-mcyp7b was followed by metabolism of 2.5 microM 27-hydroxycholesterol to the 7 alpha-hydroxy intermediate, cholest-5-ene,3 beta,7 alpha,27-triol, with complete loss of down-regulation of cholesterol synthesis. Addition of 5 microM and 10 microM concentrations of the triol to HepG2 and CHO cells, respectively, also did not reduce cholesterol synthesis. The contrast between the biologic effect on cholesterol synthesis by these two C27 hydroxysterols and the wide tissue distribution of both cholesterol 27-hydroxylase and hydroxysterol 7 alpha-hydroxylase implies local regulatory effects prior to their further catabolism in the liver to chenodeoxycholic and cholic acids.
小鼠海马体中一种与胆固醇7α-羟化酶具有高度同源性的新型细胞色素P450酶(cyp7b)的报告促使我们确定其对27-羟胆固醇的底物特异性,已知27-羟胆固醇是胆固醇合成的有效抑制剂。用PcDNA3.1(+)-mcyp7b转染293/T细胞后,2.5微摩尔的27-羟胆固醇代谢为7α-羟基中间体胆甾-5-烯-3β,7α,27-三醇,胆固醇合成的下调完全消失。分别向HepG2和CHO细胞中添加5微摩尔和10微摩尔浓度的三醇,也不会降低胆固醇合成。这两种C27羟类固醇对胆固醇合成的生物学效应与胆固醇27-羟化酶和羟类固醇7α-羟化酶广泛的组织分布之间的差异表明,在它们在肝脏中进一步分解为鹅去氧胆酸和胆酸之前存在局部调节作用。