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远志中参与皂苷生物合成的编码β-香树脂醇合酶的氧化鲨烯环化酶基因的分离与鉴定

Isolation and characterization of an oxidosqualene cyclase gene encoding a β-amyrin synthase involved in Polygala tenuifolia Willd. saponin biosynthesis.

作者信息

Jin Mei Lan, Lee Dae Young, Um Yurry, Lee Jeong Hoon, Park Chun Geun, Jetter Reinhard, Kim Ok Tae

机构信息

Department of Herbal Crop Research, National Institute of Horticultural and Herbal Science, RDA, Eumseong, 369-873, South Korea.

出版信息

Plant Cell Rep. 2014 Mar;33(3):511-9. doi: 10.1007/s00299-013-1554-7. Epub 2014 Jan 14.

Abstract

KEY MESSAGE

Expression of PtBS (Polygala tenuifolia β-amyrin synthase) led to the production of β-amyrin as sole product.

ABSTRACT

Polygala tenuifolia Willdenow is a rich source of triterpene saponins, onjisaponins and polygalasaponins, used as herbal medicine to treat phlegms and for detumescence in traditional Asian healing. The Polygala saponins share the oleanane backbone structure and are, therefore, likely synthesized via β-amyrin as a common precursor. We hypothesized that, in analogy to diverse other plant species, this central intermediate should be formed by a β-amyrin synthase catalyzing the complex cyclization of oxidosqualene. This member of the oxidosqualene cyclase (OSC) family of enzymes is thus defining an important branch point between primary and secondary metabolisms, and playing a crucial role in the control of oleanane-type triterpene saponin biosynthesis. From P. tenuifolia roots, we isolated an OSC cDNA containing a reading frame of 2,289 bp nucleotides. The predicted protein of 763 amino acids (molecular weight 87.353 kDa) showed particularly high amino acid sequence identities to known β-amyrin synthases (85-87 %) and was, therefore, named PtBS. Expression of PtBS in the triterpenoid synthase-deficient yeast mutant GIL77 led to the production of β-amyrin as sole product. qRT-PCR analysis of various P. tenuifolia organs showed that PtBS transcript levels were highest in the roots, consistent with onjisaponin accumulation patterns. Therefore, we conclude that PtBS is the β-amyrin synthase enzyme catalyzing the first committed step in the biosynthesis of onjisaponins and polygalasaponins in P. tenuifolia.

摘要

关键信息

远志β-香树脂醇合酶(PtBS)的表达导致仅产生β-香树脂醇作为唯一产物。

摘要

远志是三萜皂苷、远志皂苷和多聚皂苷的丰富来源,在传统亚洲疗法中用作治疗痰液和消肿的草药。远志皂苷具有齐墩果烷骨架结构,因此可能通过β-香树脂醇作为共同前体合成。我们推测,与其他多种植物类似,这种核心中间体应由催化氧化鲨烯复杂环化反应的β-香树脂醇合酶形成。这种氧化鲨烯环化酶(OSC)家族的酶成员因此定义了初级代谢和次级代谢之间的一个重要分支点,并在齐墩果烷型三萜皂苷生物合成的控制中发挥关键作用。从远志根中,我们分离出一个包含2289个碱基对核苷酸阅读框的OSC cDNA。预测的763个氨基酸的蛋白质(分子量87.353 kDa)与已知的β-香树脂醇合酶具有特别高的氨基酸序列同一性(85 - 87%),因此被命名为PtBS。PtBS在缺乏三萜类合酶的酵母突变体GIL77中的表达导致仅产生β-香树脂醇作为唯一产物。对远志不同器官的qRT-PCR分析表明,PtBS转录水平在根中最高,这与远志皂苷的积累模式一致。因此,我们得出结论,PtBS是催化远志中远志皂苷和多聚皂苷生物合成第一步的β-香树脂醇合酶。

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