Auchus R J, Covey D F
Biochemistry. 1986 Nov 18;25(23):7295-300. doi: 10.1021/bi00371a008.
14,15-Secoestra-1,3,5(10)-trien-15-yne-3,17 beta-diol (1) is a mechanism-based inactivator of human placental 17 beta,20 alpha-hydroxysteroid dehydrogenase (estradiol dehydrogenase, EC 1.1.1.62). Inactivation with alcohol 1 requires NAD-dependent enzymic oxidation and follows approximately pseudo-first-order kinetics with a limiting t1/2 of 82 min and a "Ki" of 2.0 microM at pH 9.2 and 25 degrees C. At saturating concentrations of NAD, the initial rate of inactivation is slower than in the presence of 5 microM NAD, suggesting that cofactor binding to free enzyme impedes the inactivation process. Glutathione completely protects the enzyme from inactivation at both cofactor concentrations. Inactivation with 45 microM tritiated alcohol 1 followed by dialysis and gel filtration demonstrates a covalent interaction and affords an estimated stoichiometry of 1.4 molecules of steroid per subunit (2.8 per dimer). Chemically prepared 3-hydroxy-14,15-secoestra-1,3,5(10)-trien-15-yn-17-one (2) rapidly inactivates estradiol dehydrogenase with biphasic kinetics. From the latter phase, a Ki of 2.8 microM and a limiting t1/2 of 12 min at pH 9.2 were determined. Estradiol, NADH, and NAD all retard this latter inactivation phase. We propose that enzymatically generated ketone 2 inactivates estradiol dehydrogenase after its release from and return to the active site of free enzyme.
14,15-开环雌甾-1,3,5(10)-三烯-15-炔-3,17β-二醇(1)是一种基于机制的人胎盘17β,20α-羟基类固醇脱氢酶(雌二醇脱氢酶,EC 1.1.1.62)失活剂。醇1导致的失活需要NAD依赖的酶促氧化,在pH 9.2和25℃下遵循近似假一级动力学,极限半衰期为82分钟,“Ki”为2.0微摩尔。在NAD饱和浓度下,初始失活速率比存在5微摩尔NAD时慢,这表明辅因子与游离酶的结合会阻碍失活过程。在两种辅因子浓度下,谷胱甘肽都能完全保护酶不被失活。用45微摩尔氚标记的醇1进行失活,然后透析和凝胶过滤,证明存在共价相互作用,每个亚基的类固醇分子化学计量约为1.4个(每个二聚体为2.8个)。化学制备的3-羟基-14,15-开环雌甾-1,3,5(10)-三烯-15-炔-17-酮(2)以双相动力学快速使雌二醇脱氢酶失活。从后一阶段确定,在pH 9.2时,Ki为2.8微摩尔,极限半衰期为12分钟。雌二醇、NADH和NAD都能延缓后一失活阶段。我们提出,酶促生成的酮2从游离酶的活性位点释放并返回后会使雌二醇脱氢酶失活。