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10
Taxadiene synthase structure and evolution of modular architecture in terpene biosynthesis.紫杉烯合酶结构与萜类生物合成中模块化架构的演化。
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通过转录组测序发现的白杄双功能顺式-法呢烯合酶及其对二萜类香料生产的影响。

Bifunctional cis-abienol synthase from Abies balsamea discovered by transcriptome sequencing and its implications for diterpenoid fragrance production.

机构信息

Michael Smith Laboratories, University of British Columbia, 301-2185 East Mall, Vancouver, British Columbia V6T 1Z4, Canada.

出版信息

J Biol Chem. 2012 Apr 6;287(15):12121-31. doi: 10.1074/jbc.M111.317669. Epub 2012 Feb 15.

DOI:10.1074/jbc.M111.317669
PMID:22337889
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3320957/
Abstract

The labdanoid diterpene alcohol cis-abienol is a major component of the aromatic oleoresin of balsam fir (Abies balsamea) and serves as a valuable bioproduct material for the fragrance industry. Using high-throughput 454 transcriptome sequencing and metabolite profiling of balsam fir bark tissue, we identified candidate diterpene synthase sequences for full-length cDNA cloning and functional characterization. We discovered a bifunctional class I/II cis-abienol synthase (AbCAS), along with the paralogous levopimaradiene/abietadiene synthase and isopimaradiene synthase, all of which are members of the gymnosperm-specific TPS-d subfamily. The AbCAS-catalyzed formation of cis-abienol proceeds via cyclization and hydroxylation at carbon C-8 of a postulated carbocation intermediate in the class II active site, followed by cleavage of the diphosphate group and termination of the reaction sequence without further cyclization in the class I active site. This reaction mechanism is distinct from that of synthases of the isopimaradiene- or levopimaradiene/abietadiene synthase type, which employ deprotonation reactions in the class II active site and secondary cyclizations in the class I active site, leading to tricyclic diterpenes. Comparative homology modeling suggested the active site residues Asp-348, Leu-617, Phe-696, and Gly-723 as potentially important for the specificity of AbCAS. As a class I/II bifunctional enzyme, AbCAS is a promising target for metabolic engineering of cis-abienol production.

摘要

cis-abienol 是一种实验室衍生的二萜醇,是香脂冷杉(Abies balsamea)芳香油树脂的主要成分,也是香料工业有价值的生物产品材料。通过高通量 454 转录组测序和香脂冷杉树皮组织代谢物分析,我们鉴定出了全长 cDNA 克隆和功能鉴定的二萜合酶候选序列。我们发现了一种多功能的 I/II 型 cis-abienol 合酶(AbCAS),以及与其平行的 levopimaradiene/abietadiene 合酶和 isopimaradiene 合酶,它们都是松柏类植物特有的 TPS-d 亚家族的成员。AbCAS 催化 cis-abienol 的形成,通过在假定的碳正离子中间体的碳 C-8 处环化和羟化,在 II 类活性部位进行,然后裂解二磷酸基团并终止反应序列,而不在 I 类活性部位进一步环化。这种反应机制与 isopimaradiene 或 levopimaradiene/abietadiene 合酶型的合酶不同,它们在 II 类活性部位采用去质子化反应,在 I 类活性部位进行二次环化,导致三环二萜的形成。比较同源建模表明,活性部位残基 Asp-348、Leu-617、Phe-696 和 Gly-723 可能对 AbCAS 的特异性很重要。作为一种 I/II 型多功能酶,AbCAS 是 cis-abienol 生产代谢工程的有希望的目标。