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人I型3β-羟基类固醇脱氢酶/异构酶的工程化胞质形式:纯化、表征及结晶

The engineered, cytosolic form of human type I 3beta-hydroxysteroid dehydrogenase/isomerase: purification, characterization and crystallization.

作者信息

Thomas J L, Mason J I, Blanco G, Veisaga M L

机构信息

Division of Basic Medical Sciences, Mercer University School of Medicine, Macon, Georgia 31207, USA.

出版信息

J Mol Endocrinol. 2001 Aug;27(1):77-83. doi: 10.1677/jme.0.0270077.

Abstract

Human type I 3beta-hydroxysteroid dehydrogenase/isomerase (3beta-HSD/isomerase) is an integral membrane protein of human placental trophoblast and of insect Sf9 cells transfected with recombinant baculovirus containing the cDNA encoding the enzyme. Purified native or wild-type enzyme remains in solution only in the presence of detergent that may prevent crystallization. The membrane-spanning domain (residues 283-310) of the enzyme protein was deleted in the cDNA using PCR-based mutagenesis. The modified enzyme was expressed by baculovirus in the cytosol instead of in the microsomes and mitochondria of the Sf9 cells. The cytosolic form of 3beta-HSD/isomerase was purified using affinity chromatography with Cibacron Blue 1000. The NAD(+) and NaCl used to elute the enzyme were removed by size-exclusion centrifugation. Hydroxylapatite chromatography yielded a 26-fold purification of the enzyme. SDS-PAGE revealed a single protein band for the purified cytosolic enzyme (monomeric molecular mass 38.8 kDa) that migrated just below the wild-type enzyme (monomeric molecular mass 42.0 kDa). Michaelis-Menten constants measured for 3beta-HSD substrate (dehydroepiandrosterone) utilization by the purified cytosolic enzyme (K(m)=4.5 microM, V(max)=53 nmol/min per mg) and the pure wild-type enzyme (K(m)=3.7 microM, V(max)=43 nmol/min per mg), for isomerase substrate (5-androstene-3,17-dione) conversion by the purified cytosolic (K(m)=25 microM, V(max)=576 nmol/min per mg) and wild-type (K(m)=28 microM, V(max)=598 nmol/min per mg) enzymes, and for NAD(+) reduction by the 3beta-HSD activities of the cytosolic (K(m)=35 microM, V(max)=51 nmol/min per mg) and wild-type (K(m)=34 microM, V(max)=46 nmol/min per mg) enzymes are nearly identical. The isomerase activity of the cytosolic enzyme requires allosteric activation by NADH (K(m)=4.6 microM, V(max)=538 nmol/min per mg) just like the wild-type enzyme (K(m)=4.6 microM, V(max)=536 nmol/min per mg). Crystals of the purified, cytosolic enzyme protein have been obtained. The inability to crystallize the detergent-solubilized, wild-type microsomal enzyme has been overcome by engineering a cytosolic form of this protein. Determining the tertiary structure of 3beta-HSD/isomerase will clarify the mechanistic roles of potentially critical amino acids (His(261), Tyr(253)) that have been identified in the primary structure.

摘要

人Ⅰ型3β-羟基类固醇脱氢酶/异构酶(3β-HSD/异构酶)是人类胎盘滋养层细胞以及用含有该酶编码cDNA的重组杆状病毒转染的昆虫Sf9细胞中的一种整合膜蛋白。纯化的天然或野生型酶仅在存在可能防止结晶的去污剂时才保持在溶液中。利用基于PCR的诱变技术在cDNA中删除了酶蛋白的跨膜结构域(第283 - 310位氨基酸残基)。修饰后的酶由杆状病毒在Sf9细胞的胞质溶胶中而非微粒体和线粒体中表达。利用Cibacron Blue 1000亲和层析法纯化了胞质形式的3β-HSD/异构酶。通过尺寸排阻离心法去除了用于洗脱该酶的NAD(+)和NaCl。羟基磷灰石层析使该酶得到了26倍的纯化。SDS-PAGE显示纯化的胞质酶有一条单一蛋白带(单体分子量38.8 kDa),其迁移位置略低于野生型酶(单体分子量42.0 kDa)。纯化的胞质酶对3β-HSD底物(脱氢表雄酮)利用的米氏常数(K(m)=4.5 microM,V(max)=53 nmol/min per mg)以及纯野生型酶(K(m)=3.7 microM,V(max)=43 nmol/min per mg),纯化的胞质酶(K(m)=25 microM,V(max)=576 nmol/min per mg)和野生型酶(K(m)=28 microM,V(max)=598 nmol/min per mg)对异构酶底物(5-雄烯-3,17-二酮)转化的米氏常数,以及胞质酶(K(m)=35 microM,V(max)=51 nmol/min per mg)和野生型酶(K(m)=34 microM,V(max)=46 nmol/min per mg)的3β-HSD活性对NAD(+)还原的米氏常数几乎相同。胞质酶的异构酶活性需要NADH的变构激活(K(m)=4.6 microM,V(max)=538 nmol/min per mg),这与野生型酶(K(m)=4.6 microM,V(max)=536 nmol/min per mg)相同。已获得纯化的胞质酶蛋白晶体。通过构建该蛋白的胞质形式,克服了无法使去污剂溶解的野生型微粒体酶结晶的问题。确定3β-HSD/异构酶的三级结构将阐明在一级结构中已鉴定出的潜在关键氨基酸(His(261)、Tyr(253))的机制作用。

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