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首页> 外文期刊>Current organic chemistry >Alkaloid Biosynthesis in Rauvolfia- cDNA Cloning of Major Enzymes of the Ajmaline Pathway
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Alkaloid Biosynthesis in Rauvolfia- cDNA Cloning of Major Enzymes of the Ajmaline Pathway

机译:Rauvolfia的生物碱生物合成-Ajmaline途径主要酶的cDNA克隆

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All the major reactions taking part in the biosynthesis of ajmaline in cell suspension cultures of the Indian medicinal plant Rauvolfia have now been established at the enzyme level.Of the well investigated 10 steps six of the involved enzymes have been functionally cloned.These are strictosidine synthase (STR),strictosidine glucosidase (SG),polyneuridine aldehyde esterase (PNAE),vinorine synthase (VS),cytochrome P450 reductase (CPR) and acetylajmalan acetylesterase (AAE).Because the cDNAs of these enzymes are now known their detailed molecular analysis became attainable for the first time.Some of these enzymes such as STR,SG or VS could be produced in E.coli at a preparative scale resulting in mg amounts of pure enzymes.They also have been crystallized and their preliminary X-ray analyses were published recently.It is only a matter of time that their molecular structure and the mechanisms of the catalyzed reactions will be elucidated.Of the soluble enzymes vomilenine reductase and 1.2-dihydrovomilenine reductase remain to be heterologously expressed.Appropriate cDNA clones have recently been isolated.What membrane bound enzymes of this pathway is concerned cloning could not be achieved up to now.Our future strategy is to purify these enzymes first and to use the "reverse genetic" approach as we did for the soluble enzymes.The sarpagine bridge enzyme (SBE),vinorine hydroxylase (VH) and norajmaline N-methyltransferase (NAMT) are the only enzymes which remain as the major candidates for expression studies in order to express heterologously the complete ajmaline biosynthetic pathway.
机译:现已建立了印度药典红景天细胞悬浮培养中参与阿玛茶碱生物合成的所有主要反应的酶水平,在深入研究的10个步骤中,已从功能上克隆了涉及的6种酶中的6种。 (STR),缩氨嘧啶葡糖苷酶(SG),聚神经氨酸醛酯酶(PNAE),长春碱合酶(VS),细胞色素P450还原酶(CPR)和乙酰基阿马丙乙酰酯酶(AAE)。由于已知这些酶的cDNA,因此对其进行详细的分子分析其中某些酶如STR,SG或VS可以在大肠杆菌中以制备规模生产,从而产生毫克量的纯酶,它们也已经结晶并发表了初步的X射线分析最近,阐明它们的分子结构和催化反应机理只是时间问题,其中可溶性酶vomilenine还原酶和1.2 -二氢伏米宁还原酶仍保持异源表达。最近已分离出适当的cDNA克隆。与该途径有关的膜结合酶目前尚无法克隆。我们未来的策略是首先纯化这些酶并使用“反向”酶。 “遗传”方法,就像我们对可溶性酶所做的那样。沙皮菜碱桥酶(SBE),长春碱羟化酶(VH)和去甲灵碱N-甲基转移酶(NAMT)是仅有的保留下来作为表达研究的主要候选物以便异源表达的酶完整的阿玛琳生物合成途径。

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