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胆汁酸生物合成酶——线粒体细胞色素P-450固醇26-羟化酶的克隆、结构与表达

Cloning, structure, and expression of the mitochondrial cytochrome P-450 sterol 26-hydroxylase, a bile acid biosynthetic enzyme.

作者信息

Andersson S, Davis D L, Dahlbäck H, Jörnvall H, Russell D W

机构信息

Department of Molecular Genetics, University of Texas Southwestern Medical Center, Dallas 75235.

出版信息

J Biol Chem. 1989 May 15;264(14):8222-9.

PMID:2722778
Abstract

The conversion of cholesterol into bile acids in the liver represents the major catabolic pathway for the removal of cholesterol from the body. In this complex biosynthetic pathway, at least 10 enzymes modify both the ring structure and side chain of cholesterol, resulting in the formation of the primary bile acids, cholic acid, and chenodeoxycholic acid. To gain insight into the details and regulation of this pathway, we have used protein sequencing and molecular cloning techniques to isolate and characterize a cDNA encoding the rabbit mitochondrial sterol 26-hydroxylase. This enzyme catalyzes the first step in the oxidation of the side chain of sterol intermediates in the biosynthesis of bile acids. The structure of the sterol 26-hydroxylase, as deduced by both DNA sequence analysis of the cDNA and protein sequence analysis, reveals it to be a mitochondrial cytochrome P-450. A signal sequence of 36 residues precedes a coding region of 499 amino acids, predicting a molecular weight of 56,657 for the mature protein. The identity of the 26-hydroxylase cDNA was further confirmed by expression in monkey COS cells employing a versatile eukaryotic expression vector. Blotting experiments revealed that the mRNA for this enzyme is expressed in many tissues and that it is encoded by a low copy number gene in the rabbit genome.

摘要

肝脏中胆固醇向胆汁酸的转化是机体清除胆固醇的主要分解代谢途径。在这一复杂的生物合成途径中,至少有10种酶对胆固醇的环结构和侧链进行修饰,从而形成初级胆汁酸——胆酸和鹅脱氧胆酸。为深入了解该途径的细节和调控机制,我们运用蛋白质测序和分子克隆技术分离并鉴定了编码兔线粒体甾醇26-羟化酶的cDNA。该酶催化胆汁酸生物合成中甾醇中间体侧链氧化的第一步反应。通过对cDNA的DNA序列分析和蛋白质序列分析推导得出的甾醇26-羟化酶结构显示,它是一种线粒体细胞色素P-450。在499个氨基酸的编码区之前有一段36个残基的信号序列,预测成熟蛋白的分子量为56,657。通过使用通用真核表达载体在猴COS细胞中表达,进一步证实了26-羟化酶cDNA的身份。印迹实验表明,该酶的mRNA在许多组织中表达,并且在兔基因组中由一个低拷贝数基因编码。

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