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在大肠杆菌中表达的包含牛P450 17A结构域和大鼠NADPH - P450还原酶的重组融合蛋白的纯化及酶学性质

Purification and enzymatic properties of a recombinant fusion protein expressed in Escherichia coli containing the domains of bovine P450 17A and rat NADPH-P450 reductase.

作者信息

Shet M S, Fisher C W, Arlotto M P, Shackleton C H, Holmans P L, Martin-Wixtrom C A, Saeki Y, Estabrook R W

机构信息

Department of Biochemistry, University of Texas Southwestern Medical Center at Dallas 75235.

出版信息

Arch Biochem Biophys. 1994 Jun;311(2):402-17. doi: 10.1006/abbi.1994.1255.

Abstract

A fusion protein containing the heme domain of bovine cytochrome P450 17A and the flavin domains of rat NADPH-cytochrome P450 reductase has been genetically engineered by linking the modified cDNAs for each gene with the codons for serine and threonine. Transformation of Escherichia coli (DH5 alpha) and growth under defined conditions permits expression of 600-700 nmol of membrane-bound fusion protein per liter of growth medium (approximately 4% of cellular protein). A method has been developed for the solubilization, isolation, and purification to homogeneity of this protein. In the presence of NADPH the purified fusion protein catalyzes the 17 alpha-hydroxylation of progesterone and pregnenolone as well as the conversion of 17 alpha-hydroxypregnenolone to dehydroepiandrosterone. The 17,20-lyase activity is enhanced sixfold by the addition of purified rat liver cytochrome b5. Further, dehydroepiandrosterone is slowly metabolized to a number of additional more polar metabolites while 17 alpha-hydroxy-progesterone is slowly converted to dihydroxy-progesterone metabolites as well as a small amount of androstenedione in a reaction not influenced by cytochrome b5. Use of 5 alpha-pregnan steroids as substrates show the importance of the 3 beta-hydroxyl group for cytochrome b5 stimulated 17,20-lyase activity. Studies investigating the factors affecting electron transport between the flavin and heme domains suggest that the protein exists as a tight complex functioning as a self-contained biocatalytic unit.

摘要

一种融合蛋白,包含牛细胞色素P450 17A的血红素结构域和大鼠NADPH - 细胞色素P450还原酶的黄素结构域,已通过将每个基因的修饰cDNA与丝氨酸和苏氨酸的密码子连接进行基因工程改造。将其转化到大肠杆菌(DH5α)中,并在特定条件下培养,每升生长培养基可表达600 - 700 nmol的膜结合融合蛋白(约占细胞蛋白的4%)。已开发出一种方法,用于该蛋白的溶解、分离及纯化至均一性。在NADPH存在下,纯化的融合蛋白催化孕酮和孕烯醇酮的17α - 羟化反应,以及17α - 羟孕烯醇酮向脱氢表雄酮的转化。添加纯化的大鼠肝细胞色素b5后,17,20 - 裂解酶活性增强了六倍。此外,脱氢表雄酮会缓慢代谢为一些其他极性更强的代谢产物,而17α - 羟基孕酮在不受细胞色素b5影响的反应中会缓慢转化为二羟基孕酮代谢产物以及少量雄烯二酮。使用5α - 孕烷类固醇作为底物表明,3β - 羟基对于细胞色素b5刺激的17,20 - 裂解酶活性很重要。研究影响黄素和血红素结构域之间电子传递的因素表明,该蛋白以紧密复合物的形式存在,作为一个独立的生物催化单元发挥作用。

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