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通过定点诱变调节豚鼠细胞色素P450c17的17α-羟化酶/17,20-裂解酶活性

Modulation of 17alpha-hydroxylase/17,20-lyase activity of guinea pig cytochrome P450c17 by site-directed mutagenesis.

作者信息

Beaudoin C, Lavallée B, Tremblay Y, Hum D W, Breton R, de Launoit Y, Bélanger A

机构信息

Molecular Endocrinology Laboratory, CHUL Research Center and Laval University, Québec, Canada.

出版信息

DNA Cell Biol. 1998 Aug;17(8):707-15. doi: 10.1089/dna.1998.17.707.

Abstract

Microsomal cytochrome P450c17 (17a-hydroxylase/17,20-Lyase) catalyzes two reactions in the delta5 and delta4 pathways leading to the production of C19 steroids. Transient expression of human, bovine, porcine, rat, and mouse P450c17 cDNAs showed that the protein has 17alpha-hydroxylase and 17,20-Lyase activities, converting pregnenolone and progesterone into delta5- and delta4-Cl9 steroids, respectively, although the rat and mouse proteins have a preferential pathway toward the delta4 steroids. The guinea pig (gp) P450c17 shares 46% to 70% amino acid identity with the corresponding proteins of other species, and further characterization indicated that the guinea pig enzyme only converts progesterone to androstenedione. In this study, we have tried to identify amino acid(s) in the gpP450c17 that governs such a steroid specificity. Among the various mutants that we have created, change of the arginine (R) residue at position 200 to an asparagine (N) (R200N) in the gpP450c17 protein increased reactivity toward pregnenolone compared with the wild-type enzyme. Pregnenolone was converted into 17alpha-hydroxypregnenolone and dehydroepiandrosterone. However, this gain occurred at the expense of the 17,20-lyase activity toward 17alpha-hydroxyprogesterone. The R200N mutation in the gpP450c17 protein introduced a potential N-linked glycosylation site (200Asn-X-Thr202); however, substitution of the Thr202 residue by an asparagine (R200N/T202N), which abolishes the site, did not change the preference of the gpP450c17 mutant for pregnenolone. Furthermore, introduction of a putative glycosylation site at amino acid 185 in the gpP450c17 enzyme did not alter substrate specificity. The properties of the amino acid were also investigated, and neither the charge nor the size of the sidechain elicited change in the substrate specificity of gpP450c17. Thus, our results demonstrate that the mutation of arginine to asparagine at position 200 changes the substrate specificity of the gpP450c17 enzyme.

摘要

微粒体细胞色素P450c17(17α-羟化酶/17,20-裂解酶)在导致C19类固醇生成的δ5和δ4途径中催化两个反应。人、牛、猪、大鼠和小鼠P450c17 cDNA的瞬时表达表明,该蛋白具有17α-羟化酶和17,20-裂解酶活性,分别将孕烯醇酮和孕酮转化为δ5-和δ4-C19类固醇,尽管大鼠和小鼠蛋白对δ4类固醇有优先途径。豚鼠(gp)P450c17与其他物种的相应蛋白具有46%至70%的氨基酸同一性,进一步的表征表明,豚鼠酶仅将孕酮转化为雄烯二酮。在本研究中,我们试图鉴定gpP450c17中决定这种类固醇特异性的氨基酸。在我们创建的各种突变体中,gpP450c17蛋白中第200位的精氨酸(R)残基变为天冬酰胺(N)(R200N)后,与野生型酶相比,对孕烯醇酮的反应性增加。孕烯醇酮被转化为17α-羟孕烯醇酮和脱氢表雄酮。然而,这种增加是以对17α-羟孕酮的17,20-裂解酶活性为代价的。gpP450c17蛋白中的R200N突变引入了一个潜在的N-连接糖基化位点(200Asn-X-Thr202);然而,将Thr202残基替换为天冬酰胺(R200N/T202N)(该位点被消除)并没有改变gpP450c17突变体对孕烯醇酮的偏好。此外,在gpP450c17酶的第185位氨基酸处引入一个假定的糖基化位点并没有改变底物特异性。还研究了氨基酸的性质,侧链的电荷和大小均未引起gpP450c17底物特异性的变化。因此,我们的结果表明,第200位精氨酸突变为天冬酰胺会改变gpP450c17酶的底物特异性。

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