Kaguera E, Toki S
Biochem J. 1977 Jun 1;163(3):401-7. doi: 10.1042/bj1630401a.
As a result of studies of guinea-pig live testosterone 17beta-dehydrogenase (NADP+) (EC 1.1.1.64), a new testosterone 17beta-dehydrogenase was discovered. The new enzyme was purified to a single homogeneous protein from the 105 000 g-supernatant fraction of guinea-pig liver by (NH4)2SO4 fractional precipitation and two gel-filtration stages, DEAE-cellulose column chromatography and hydroxyapatite column chromatography. It was characterized by many properties. The enzyme has almost the same properties as the classical testosterone 17beta-dehydrogenase (NADP+) (EC 1.1.1.64), with respect to cofactor requirement, pH optima for dehydrogenation, effect of phosphate ion on the NAD+-dependent reaction and molecular weight, but characteristic differences were observed in substrate-specificity between the two dehydrogenases. With various androstane derivatives, the configuration of the A/B-ring junction was closely connected with enzyme activity. 5alpha-Androstanes, such as 5alpha-androstane-3alpha,17beta-diol, 5alpha-androstane-3beta,17beta-diol and 17beta-hydroxy-5alpha-androstan-3-one, and 5beta-congeners, such as 5beta-androstane-3alpha,17beta-diol, 5beta-androstane-3beta,17beta-diol and 17beta-hydroxy-5beta-androstan-3-one, served as substrates for both the EC 1.1.1.64 enzyme and the new enzyme. The EC 1.1.1.64 enzyme oxidized testosterone more rapidly than did the new enzyme. These comparisons were based on the relative activities, apparent Km values and apparent Vmax values.
通过对豚鼠肝脏睾酮17β -脱氢酶(NADP +)(EC 1.1.1.64)的研究,发现了一种新的睾酮17β -脱氢酶。通过硫酸铵分级沉淀以及两个凝胶过滤阶段、DEAE -纤维素柱色谱和羟基磷灰石柱色谱,从豚鼠肝脏105000g上清液部分将这种新酶纯化至单一的均一蛋白。它具有许多特性。该酶在辅因子需求、脱氢的最适pH值、磷酸根离子对NAD +依赖性反应的影响以及分子量方面,几乎与经典的睾酮17β -脱氢酶(NADP +)(EC 1.1.1.64)具有相同的特性,但在两种脱氢酶的底物特异性方面观察到了特征性差异。对于各种雄甾烷衍生物,A/B环连接处的构型与酶活性密切相关。5α -雄甾烷,如5α -雄甾烷 - 3α,17β -二醇、5α -雄甾烷 - 3β,17β -二醇和17β -羟基 - 5α -雄甾烷 - 3 -酮,以及5β -同系物,如5β -雄甾烷 - 3α,17β -二醇、5β -雄甾烷 - 3β,17β -二醇和17β -羟基 - 5β -雄甾烷 - 3 -酮,既是EC 1.1.1.64酶也是新酶的底物。EC 1.1.1.64酶氧化睾酮的速度比新酶更快。这些比较基于相对活性、表观Km值和表观Vmax值。