Itagaki E, Matushita H, Hatta T
Department of Chemistry, Faculty of Science, Kanazawa University, Ishikawa.
J Biochem. 1990 Jul;108(1):122-7. doi: 10.1093/oxfordjournals.jbchem.a123150.
3-Ketosteroid-delta 1-dehydrogenase from Nocardia corallina catalyzes transhydrogenation of 3-keto-4-ene-steroid to 3-keto-1,4-diene-steroid e.g., progesterone to 1,4-androstadiene-3,17-dione. The reaction proceeded linearly at first and then soon slowed down owing to equilibration. The turnover number of this reaction was of the same magnitude as that of the dehydrogenation of 3-keto-4-ene-steroid. The pH optimum was 8.4, which is lower than that of the dehydrogenase reaction. The enzyme has a wide specificity for hydrogen acceptor steroids. The Km' and Kmax' values for these steroids and the values of the corresponding 3-keto-4-ene-steroids were compared. Kinetic studies of the steroid transhydrogenase reaction demonstrated a typical ping-pong mechanism. The enzyme oxidized 1,2-tritiated progesterone and transferred the tritium atoms to the reaction product, 4-androstene-3,17-dione, and water. Transhydrogenation in D2O resulted in the incorporation of a deuterium atom into the C2-position of 4-androstene-3,17-dione. The results indicate that the enzyme catalyzes C1, C2-trans axial abstraction of hydrogen atoms from progesterone, transfer of the 1 alpha-hydrogen to the C1-position of 1,4-androstadiene-3, 17-dione and release of the 2 beta-hydrogen to water. Reaction schemes based on the experimental results are proposed. The enzyme also catalyzes the reduction of 3-keto-1,4-diene-steroids with reduced benzyl viologen.
来自珊瑚诺卡氏菌的3-酮类固醇-δ1-脱氢酶催化3-酮-4-烯类固醇向3-酮-1,4-二烯类固醇的转氢作用,例如孕酮转化为1,4-雄二烯-3,17-二酮。反应起初呈线性进行,随后由于达到平衡而很快减缓。该反应的周转数与3-酮-4-烯类固醇脱氢反应的周转数大小相同。最适pH为8.4,低于脱氢酶反应的最适pH。该酶对氢受体类固醇具有广泛的特异性。比较了这些类固醇的Km'和Kmax'值以及相应的3-酮-4-烯类固醇的值。类固醇转氢酶反应的动力学研究表明其具有典型的乒乓机制。该酶氧化1,2-氚化孕酮,并将氚原子转移至反应产物4-雄烯-3,17-二酮和水中。在D2O中进行转氢作用会导致一个氘原子掺入4-雄烯-3,17-二酮的C2位。结果表明,该酶催化从孕酮中C1、C2位轴向反式提取氢原子,将1α-氢转移至1,4-雄二烯-3,17-二酮的C1位,并将2β-氢释放至水中。基于实验结果提出了反应方案。该酶还催化用还原型苄基紫精还原3-酮-1,4-二烯类固醇。