Deyashiki Y, Taniguchi H, Amano T, Nakayama T, Hara A, Sawada H
Department of Biochemistry, Gifu Pharmaceutical University, Japan.
Biochem J. 1992 Mar 15;282 ( Pt 3)(Pt 3):741-6. doi: 10.1042/bj2820741.
Two monomeric dihydrodiol dehydrogenases with pI values of 5.4 and 7.6 were co-purified with androsterone dehydrogenase activity to homogeneity from human liver. The two enzymes differed from each other on peptide mapping and in their heat-stabilities; with respect to the latter the dihydrodiol dehydrogenase and 3 alpha-hydroxysteroid dehydrogenase activities of the respective enzymes were similarly inactivated. The pI 5.4 enzyme was equally active towards trans- and cis-benzene dihydrodiols, and towards (S)- and (R)-forms of indan-1-ol and 1,2,3,4-tetrahydronaphth-1-ol and oxidized the 3 alpha-hydroxy group of C19-, C21- and C24-steroids, whereas the pI 7.6 enzyme showed high specificity for trans-benzene dihydrodiol, (S)-forms of the alicyclic alcohols and C19- and C21-steroids. Although the two enzymes reduced various xenobiotic carbonyl compounds and the 3-oxo group of C19- and C21-steroids, and were A-specific in the hydrogen transfer from NADPH, only the pI 5.4 enzyme showed reductase activity towards 7 alpha-hydroxy-5 beta-cholestan-3-one and dehydrolithocholic acid. The affinity of the two enzymes for the steroidal substrates was higher than that for the xenobiotic substrates. The two enzymes also showed different susceptibilities to the inhibition by anti-inflammatory drugs and bile acids. Whereas the pI-5.4 enzyme was highly sensitive to anti-inflammatory steroids, showing mixed-type inhibitions with respect to indan-1-ol and androsterone, the pI 7.6 enzyme was inhibited more potently by non-steroidal anti-inflammatory drugs and bile acids than by the steroidal drugs, and the inhibitions were all competitive. These structural and functional differences suggest that the two enzymes are 3 alpha-hydroxysteroid dehydrogenase isoenzymes.
从人肝脏中与雄甾酮脱氢酶活性共同纯化得到了两种单体二氢二醇脱氢酶,其等电点分别为5.4和7.6,达到了同质纯。这两种酶在肽图谱和热稳定性方面彼此不同;就热稳定性而言,各自酶的二氢二醇脱氢酶和3α-羟基类固醇脱氢酶活性同样被灭活。等电点为5.4的酶对反式和顺式苯二氢二醇、茚满-1-醇和1,2,3,4-四氢萘-醇的(S)-和(R)-形式具有同等活性,并氧化C19-、C21-和C24-类固醇的3α-羟基,而等电点为7.6的酶对反式苯二氢二醇、脂环醇的(S)-形式以及C19-和C21-类固醇具有高特异性。尽管这两种酶都能还原各种外源性羰基化合物以及C19-和C21-类固醇的3-氧代基团,并且在从NADPH进行氢转移时具有A特异性,但只有等电点为5.4的酶对7α-羟基-5β-胆甾烷-3-酮和脱氢石胆酸具有还原酶活性。这两种酶对甾体底物的亲和力高于对外源性底物的亲和力。这两种酶对抗炎药物和胆汁酸的抑制作用也表现出不同的敏感性。等电点为5.4的酶对抗炎类固醇高度敏感,对茚满-1-醇和雄甾酮表现出混合型抑制,而等电点为7.6 的酶被非甾体抗炎药物和胆汁酸抑制的效力比对甾体药物的抑制更强,并且所有抑制作用都是竞争性的。这些结构和功能上的差异表明这两种酶是3α-羟基类固醇脱氢酶同工酶。