Itagaki E
J Biochem. 1986 Mar;99(3):825-32. doi: 10.1093/oxfordjournals.jbchem.a135542.
A steroid monooxygenase of Cylindrocarpon radicicola was found to catalyze oxygenative lactonization of 17-ketosteroid, androstenedione, to yield D-homo-17 alpha-oxasteroid, testololactone, i.e., the androstenedione monooxygenase reaction, in addition to catalyzing the progesterone monooxygenase reaction. The reaction product was identified by TLC, GLC, and mass spectrometry. The oxygenation proceeded with unitary stoichiometry for 17-ketosteroid, NADPH, and molecular oxygen, indicating that it is a typical monooxygenase reaction of the external electron donor type. The enzyme catalyzed successively the side chain cleavage reaction of 17 alpha-hydroxy-20-ketosteroid to produce its 17-keto derivative and the lactonization of the product. The effects of pH and of the concentration of substrate steroids on the androstenedione monooxygenase reaction were different from those on the progesterone monooxygenase reaction. Progesterone is a strong and competitive inhibitor of the lactonization of 17-ketosteroids. The steroid monooxygenase is concluded to have the activities of both oxygenative esterification of 20-ketosteroids and oxygenative lactonization of 17-ketosteroids.
已发现圆柱状根孢菌的一种甾体单加氧酶除了催化孕酮单加氧酶反应外,还能催化17 - 酮甾体雄烯二酮的氧化内酯化反应,生成D - 高 - 17α - 氧代甾体替勃龙,即雄烯二酮单加氧酶反应。反应产物通过薄层色谱法(TLC)、气相色谱法(GLC)和质谱法进行鉴定。该氧化反应对于17 - 酮甾体、烟酰胺腺嘌呤二核苷酸磷酸(NADPH)和分子氧按单一化学计量进行,表明这是一种典型的外部电子供体型单加氧酶反应。该酶依次催化17α - 羟基 - 20 - 酮甾体的侧链裂解反应,生成其17 - 酮衍生物,并催化该产物的内酯化反应。pH值和底物甾体浓度对雄烯二酮单加氧酶反应的影响与对孕酮单加氧酶反应的影响不同。孕酮是17 - 酮甾体内酯化反应的强效竞争性抑制剂。结论是该甾体单加氧酶具有20 - 酮甾体氧化酯化和17 - 酮甾体氧化内酯化的活性。