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Biosynthesis of bile acids in man. Hydroxylation of the C27-steroid side chain.

机译:人胆汁酸的生物合成。 C27-类固醇侧链的羟基化。

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摘要

The first step in the degradation of the steroid side chain during biosynthesis of bile acids from cholesterol in man was studied in microsomal and mitochondrial fraction of homogenate of livers from 14 patients. The microsomal fraction was found to catalyze an efficient 25-hydroxylation of 5,8-cholestane-3a,7a,12atriol. A small extent of 23-, 24-, and 26-hydroxylation of the same substrate was observed. 53-Cholestane-3a,7adiol was hydroxylated in the 25-position only to a very small extent. The mitochondrial fraction was found to catalyze 26-hydroxylation of cholesterol, 5-cholestene-3P,7a-diol, 5P-cholestane-3a,7a-diol, 7a-hydroxy-4-cholesten-3-one, and 5,0-cholestane-3a,7a,12a-triol. Addition of Mg++ stimulated the 26-hydroxylation of cholesterol but had no effect or an inhibitory effect on 26-hydroxylation of the other substrates, indicating a heterogeneity of the mitochondrial 26-hydroxylating system. The level of 26-hydroxylase activity towards different substrates varied considerably with different mitochondrial preparations. The roles of the microsomal and mitochondrial 26- hydroxylations as well as the microsomal 25-hydroxylation in biosynthesis of bile acids in man are discussed. The results indicate that microsomal 26-hydroxylation is less important than mitochondrial 26-hydroxylation under normal conditions. The possibility that microsomal 25-hydroxylation is important cannot be ruled out.
机译:在14名患者的肝脏匀浆的微粒体和线粒体级分中研究了胆固醇从人体内生物合成胆汁酸过程中甾体侧链降解的第一步。发现微粒体级分催化5,8-胆甾烷-3a,7a,12atriol的有效25-羟基化。观察到相同底物的少量23-,24-和26-羟基化。 53-Cholestane-3a,7adiol仅在很小的程度上被羟基化在25位。发现线粒体部分催化胆固醇,5-胆甾烯-3P,7a-二醇,5P-胆甾烷-3a,7a-二醇,7a-羟基-4-胆甾烯-3-酮和5,0-的26-羟基化反应。胆固醇3a,7a,12a-三醇。 Mg ++的添加刺激胆固醇的26-羟基化,但是对其他底物的26-羟基化没有作用或没有抑制作用,表明线粒体26-羟基化系统的异质性。不同线粒体制剂对不同底物的26-羟化酶活性水平差异很大。讨论了微粒体和线粒体26-羟基化以及微粒体25-羟基化在人胆汁酸生物合成中的作用。结果表明,在正常条件下,微粒体26-羟基化作用不如线粒体26-羟基化作用重要。不能排除微粒体25-羟基化很重要的可能性。

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