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Cloning and characterization of Ginkgo biloba levopimaradiene synthase,which catalyzes the first committed step in ginkgolide biosynthesis

机译:银杏叶乙酰丙二烯合酶的克隆与鉴定,催化银杏内酯生物合成的第一步

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摘要

Levopimaradiene synthase, which catalyzes the initial cyclization step in ginkgolide biosynthesis, was cloned and functionally characterized. A Ginkgo biloba cDNA library was prepared from seedling roots and a probe was amplified using primers corresponding to conserved gymnosperm terpene synthase sequences. Colony hybridization and rapid amplification of cDNA ends yielded a full-length clone encoding a predicted protein (873 amino acids, 100,289 Da) similar to known gymnosperm diterpene synthases. The sequence includes a putative N-terminal plastid transit peptide and three aspartate-rich regions. The full-length protein expressed in Escherichia coli cyclized geranylgeranyl diphosphate to levopimaradiene, which was identical to a synthetic standard by GC/MS analysis. Removing 60 or 79 N-terminal residues increased levopimaradiene production, but a 128-residue N-terminal deletion lacked detectable activity. This is the first cloned ginkgolide biosynthetic gene and the first in vitro observation of an isolated ginkgolide biosynthetic enzyme.
机译:克隆并在功能上表征了催化银杏内酯生物合成中初始环化步骤的左美满radi烯合酶。从幼苗根部制备银杏cDNA文库,并使用与保守裸子植物萜烯合酶序列相对应的引物扩增探针。菌落杂交和cDNA末端的快速扩增产生了一个全长克隆,该克隆编码一种类似于已知裸子植物二萜合酶的预测蛋白(873个氨基酸,100,289 Da)。该序列包括推定的N-末端质体转运肽和三个富含天冬氨酸的区域。大肠杆菌中表达的全长蛋白质将香叶基香叶基二磷酸香叶酯环化为左旋美吡酮,通过GC / MS分析与合成标准品相同。去除60或79个N末端残基可增加左旋番茄红素的产生,但128个残基的N末端缺失则缺乏可检测的活性。这是第一个克隆的银杏内酯生物合成基因,也是首次分离的银杏内酯生物合成酶的体外观察。

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