Hoshita N, Shefer S, Cheng F W, Dayal B, Batta A K, Tint G S, Salen G, Mosbach E H
Lipids. 1978 Dec;13(12):961-5. doi: 10.1007/BF02533856.
Side-chain hydroxylation of 5 beta-cholestane-3 alpha, 7 alpha diol was studied in subcellular fractions of guinea pig liver. The purity of the microsomal and the mitochrondrial fractions was determined with marker enzymes, and relatively little cross contamination between the particulate fractions was detected. Methods for the analysis of the incubation mixture by thin-layer chromatography and gas-chromatography-mass spectrometry were developed. Optimal assay conditons were established for the major hydroxylation reactions, namely the mitochondrial 26-hydroxylation and the microsomal 25-hydroxylation, It was found that the most active side-chain hydroxylation in the guinea pig was the microsomal 25-hydroxylation. The mitochondrial omega-hydroxylation was stereospecific, in that the rate of formation of (25R)-5 beta-cholestane-3 alpha, 7 alpha, 26-triol was 8 times greater than that of the 25S isomer. The microsomal "25" hydroxylation was not stereospecific under the conditions employed. It is concluded that the mitochondrial "26" hydroxylation (leading to the formation of (25R)-5 beta-cholestane-3 alpha, 7 alpha, 26-triol) plays an important role in the biosynthesis of chenodeoxycholic acid. The participation of microsomal 25-hydroxylation in the formation of chenodeoxycholic acids requires further investigation.
在豚鼠肝脏的亚细胞组分中研究了5β-胆甾烷-3α,7α-二醇的侧链羟基化作用。用标记酶测定微粒体和线粒体组分的纯度,并且检测到颗粒组分之间相对较少的交叉污染。开发了通过薄层色谱法和气相色谱-质谱法分析孵育混合物的方法。为主要的羟基化反应确定了最佳测定条件,即线粒体26-羟基化和微粒体25-羟基化。发现豚鼠中最活跃的侧链羟基化是微粒体25-羟基化。线粒体ω-羟基化具有立体特异性,因为(25R)-5β-胆甾烷-3α,7α,26-三醇的形成速率比25S异构体的形成速率大8倍。在所采用的条件下,微粒体“25”羟基化不具有立体特异性。得出的结论是,线粒体“26”羟基化(导致(25R)-5β-胆甾烷-3α,7α,26-三醇的形成)在鹅去氧胆酸的生物合成中起重要作用。微粒体25-羟基化在鹅去氧胆酸形成中的参与需要进一步研究。