Wink M, Hartmann T, Schiebel H M
Z Naturforsch C Biosci. 1979 Sep-Oct;34(9-10):704-8. doi: 10.1515/znc-1979-9-1009.
A crude enzyme preparation obtained from cell suspension cultures of Lupinus polyphyllus catalyzes the pyruvate dependent conversion of cadaverine into the tetracyclic lupin alkaloids. As the first reaction product 17-oxosparteine could be identified by gas-liquid chromatography and mass spectroscopy. In some experiments sparteine was found additionally. A participation of diamine oxidase could be ruled out. The cadaverine-pyruvate transaminating enzyme system (17-oxosparteine synthase) catalyzes the formation of 17-oxosparteine from three cadaverine units without releasing free intermediates. These results are inconsistent with the hypothetical mechanism thus far formulated for the lupin alkaloid biosynthesis. A new enzymatic model mechanism is proposed regarding both the results of the enzymatic experiments and those of the in vivo tracer studies.
从多叶羽扇豆细胞悬浮培养物中获得的粗酶制剂催化了尸胺依赖丙酮酸转化为四环羽扇豆生物碱的过程。作为第一个反应产物,17-氧代鹰爪豆碱可通过气液色谱法和质谱法鉴定。在一些实验中还发现了鹰爪豆碱。可以排除二胺氧化酶的参与。尸胺-丙酮酸转氨酶系统(17-氧代鹰爪豆碱合酶)催化由三个尸胺单元形成17-氧代鹰爪豆碱,且不释放游离中间体。这些结果与迄今为止为羽扇豆生物碱生物合成所提出的假设机制不一致。结合酶促实验结果和体内示踪研究结果,提出了一种新的酶促模型机制。