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物种特异性和年龄依赖性胆汁酸组成:胆汁酸生物合成中CYP8B和CYP4A亚家族的相关方面。

Species-specific and age-dependent bile acid composition: aspects on CYP8B and CYP4A subfamilies in bile acid biosynthesis.

作者信息

Lundell Kerstin, Wikvall Kjell

机构信息

Department of Pharmaceutical Biosciences, Division of Biochemistry, University of Uppsala, Uppsala, Sweden.

出版信息

Curr Drug Metab. 2008 May;9(4):323-31. doi: 10.2174/138920008784220574.

Abstract

The present review aims to give an overview of the cytochrome P450 8B (CYP8B) and cytochrome P450 4A (CYP4A) subfamilies in relation to biosynthesis of bile acids, in particular trihydroxy bile acids. Trihydroxy bile acids are basically required in most species and have an impact on cholesterol and lipid metabolism. The primary trihydroxy bile acid in most mammals is cholic acid. Some species produce other important trihydroxy bile acids, for example the adult pig which produce hyocholic acid instead of cholic acid. The position of the third hydroxyl group in cholic acid and hyocholic acid, 12alpha or 6alpha position, respectively, has a profound effect on the hydrophilic-hydrophobic property of the trihydroxy bile acids. The CYP8B subfamily is required for introduction of the 12alpha-hydroxyl group in cholic acid biosynthesis. The enzyme responsible for 6alpha-hydroxylation in hyocholic acid biosynthesis, however, varies among species. This review will discuss, in particular, porcine members of the CYP8B and CYP4A subfamilies because interesting findings regarding members of these subfamilies have recently been recognized in this species. CYP8B1 was for a long time believed to be absent in the pig but was recently found to be expressed in fetal pig liver. The enzyme catalyzing the 6alpha-hydroxylation in hyocholic acid biosynthesis in pig was found to be an atypical member of the CYP4A subfamily, denoted CYP4A21. The review presents bile acid biosynthesis in view of these findings and discusses physiochemical properties and developmental-dependent aspects related cholic acid and hyocholic acid biosynthesis.

摘要

本综述旨在概述细胞色素P450 8B(CYP8B)和细胞色素P450 4A(CYP4A)亚家族与胆汁酸生物合成的关系,特别是与三羟基胆汁酸的关系。大多数物种基本都需要三羟基胆汁酸,其对胆固醇和脂质代谢有影响。大多数哺乳动物中的主要三羟基胆汁酸是胆酸。一些物种会产生其他重要的三羟基胆汁酸,例如成年猪产生猪胆酸而非胆酸。胆酸和猪胆酸中第三个羟基的位置分别为12α或6α位,这对三羟基胆汁酸的亲水 - 疏水性质有深远影响。CYP8B亚家族是胆酸生物合成中引入12α - 羟基所必需的。然而,猪胆酸生物合成中负责6α - 羟基化的酶在不同物种间有所不同。本综述将特别讨论CYP8B和CYP4A亚家族的猪成员,因为最近在该物种中已认识到有关这些亚家族成员的有趣发现。长期以来人们认为猪中不存在CYP8B1,但最近发现其在胎猪肝中表达。在猪胆酸生物合成中催化6α - 羟基化的酶被发现是CYP4A亚家族的一个非典型成员,命名为CYP4A21。鉴于这些发现,本综述介绍了胆汁酸生物合成,并讨论了与胆酸和猪胆酸生物合成相关的物理化学性质及发育依赖性方面。

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