Selective inhibition of mitochondrial 27-hydroxylation of bile acid intermediates and 25-hydroxylation of vitamin D3 by cyclosporin A
- 1 July 1993
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 293 (1) , 203-206
- https://doi.org/10.1042/bj2930203
Abstract
It was demonstrated recently that cyclosporin A blocks bile acid synthesis in cultured rat and human hepatocytes by specific inhibition of chenodeoxycholic acid formation. The site of inhibition was found to be the 27-hydroxylation of cholesterol catalysed by the liver mitochondrial 27-hydroxylase [Princen, Meijer, Wolthers, Vonk and Kuipers (1991) Biochem J. 275, 501-505]. In this paper the mechanism by which cyclosporin A blocks mitochondrial 27-hydroxylation was further investigated. It is shown that cyclosporin A inhibited 27-hydroxylation of bile acid intermediates, depending on their polarity. In isolated rat liver mitochondria, 27-hydroxylation of cholesterol was dose-dependently blocked by the drug, giving half-maximal inhibition at 4 microM, whereas 27-hydroxylation of 5 beta-cholestane-3 alpha, 7 alpha, 12 alpha-triol was not affected. A similar observation was made using electrophoretically homogeneous cytochrome P-450(27) isolated from rabbit liver mitochondria, excluding the possibility that cyclosporin A interfered with transport of substrates into the mitochondrion. Kinetic studies showed that inhibition of the 27-hydroxylation of cholesterol by cyclosporin A was of a non-competitive type. The drug also inhibited the 25-hydroxylase activity towards vitamin D3, catalysed by the same enzyme preparation, to the same extent as 27-hydroxylation of cholesterol. These results suggest that cyclosporin A may interfere with binding of cholesterol, but not of 5 beta-cholestane-3 alpha, 7 alpha, 12 alpha-triol, to the active site of the enzyme. These data provide an explanation for the selective inhibition of chenodeoxycholic acid synthesis.Keywords
This publication has 28 references indexed in Scilit:
- Potential bile acid precursors in plasma—Possible indicators of biosynthetic pathways to cholic and chenodeoxycholic acids in manThe Journal of Steroid Biochemistry and Molecular Biology, 1990
- Characterization of the liver mitochondrial cytochrome P-450 catalyzing the 26-hydroxylation of 5β-cholestane-3α,7α,12α-triolBiochemical and Biophysical Research Communications, 1988
- Assay of cholesterol 7α-hydroxylase activity in rat hepatocytes in primary monolayer cultureAnalytical Biochemistry, 1988
- Cerebrotendinous xanthomatosis: a defect in mitochondrial 26-hydroxylation required for normal biosynthesis of cholic acid.Journal of Clinical Investigation, 1980
- Carbon-13 NMR studies on cholesterol biosynthesized from [13C]mevalonatesJournal of the American Chemical Society, 1977
- Metabolism and Mechanism of Action of Vitamin DAnnual Review of Biochemistry, 1976
- Bile Acid MetabolismAnnual Review of Biochemistry, 1975
- Biosynthesis of bile acids in man. Hydroxylation of the C27-steroid side chain.Journal of Clinical Investigation, 1975
- Bile Acid Synthesis in Man: Metabolism of 7α-Hydroxycholesterol-14C and 26-Hydroxycholesterol-3HJournal of Clinical Investigation, 1972
- Oxidation of 5β‐Cholestane‐3α, 7α, 12α‐triol by Rat Liver MicrosomesEuropean Journal of Biochemistry, 1970