Blomquist C H, Kotts C E
Steroids. 1978 Oct;32(3):399-419. doi: 10.1016/0039-128x(78)90091-0.
When microsomes were prepared in 2-mercaptoethanol Vmax for 17beta-hydroxysteroid oxidoreductase (17beta-HSD) was greater, the Km for NAD+ was greater and the Km for testosterone lower than in its absence. During storage at 4 degrees Vmax increased in the presence of 2-mercaptoethanol and decreased in its absence; Km values for testosterone and NAD+ increased during storage in both cases. The presence or absence of 2-mercaptoethanol did not affect the extent or time-course of inactivation of 17beta-HSD by trypsin or phospholipase A. Furthermore, no differences were detected in sedimentation properties on sucrose density gradients suggesting that the differences and changes in the kinetic behavior of 17beta-HSD reflect a conformational flexibility at the active site and are not due to extensive changes in the structure of the microsomes. 17beta-HSD exposed to 2-mercaptoethanol was subject to substrate inhibition by testosterone, a type of inhibition not previously reported for this enzyme.
当在2-巯基乙醇中制备微粒体时,17β-羟类固醇氧化还原酶(17β-HSD)的Vmax更高,NAD⁺的Km更高,而睾酮的Km低于不存在2-巯基乙醇时。在4℃储存期间,2-巯基乙醇存在时Vmax增加,不存在时则降低;两种情况下,睾酮和NAD⁺的Km值在储存期间均增加。2-巯基乙醇的存在与否不影响胰蛋白酶或磷脂酶A对17β-HSD的失活程度或时间进程。此外,在蔗糖密度梯度上未检测到沉降特性的差异,这表明17β-HSD动力学行为的差异和变化反映了活性位点的构象灵活性,而非由于微粒体结构的广泛变化。暴露于2-巯基乙醇的17β-HSD受到睾酮的底物抑制,这种抑制类型此前未在该酶中报道过。