Edwards C A, Orr J C
Biochemistry. 1978 Oct 17;17(21):4370-6. doi: 10.1021/bi00614a003.
The 3alpha- and 20beta-hydroxysteroid dehydrogenase (HSD) activities of cortisone reductase in Streptomyces hydrogenans have been examined to determine whether both activities are due to one enzyme. This question was raised when changes in the commercial preparations of the enzyme reduced the 3alpha-HSD activity to 5% of its original level while retaining full 20beta-HSD activity. In our experiments, the enzyme was purified to crystallinity and partially characterized. The 3alpha- and 20beta-HSD activities were both coinduced and copurified. The 3alpha- and 20beta-HSD activities were compared using the crystalline enzyme for studies of substrate competition, thermal inactivation at 52 degrees C, loss of activity with three haloacetoxysteroids, and the effects of Me2SO and temperature on the reaction rate. These studies support the conclusion that the 3alpha- and 20beta-HSD activities are due to the same enzyme molecule. In addition, it appears that the binding sites for the two activities do not act independently.
对氢化链霉菌中可的松还原酶的3α-和20β-羟基类固醇脱氢酶(HSD)活性进行了检测,以确定这两种活性是否由同一种酶引起。当该酶的商业制剂发生变化,使3α-HSD活性降至其原始水平的5%,而20β-HSD活性保持完整时,就提出了这个问题。在我们的实验中,该酶被纯化至结晶状态并进行了部分特性鉴定。3α-和20β-HSD活性都是共诱导和共纯化的。使用结晶酶比较了3α-和20β-HSD活性,以研究底物竞争、52℃下的热失活、三种卤代乙酰氧基类固醇导致的活性丧失,以及二甲基亚砜和温度对反应速率的影响。这些研究支持了3α-和20β-HSD活性是由同一个酶分子引起的结论。此外,似乎这两种活性的结合位点并非独立起作用。