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Diverse chalcone synthase superfamily enzymes from the most primitive vascular plant, Psilotum nudum

机译:来自最原始维管植物N. Psilotum nudum的多种查尔酮合酶超家族酶

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摘要

Psilotum nudum Griseb is a pteridophyte and belongs to the single family (Psilotaceae) of the division, Psilophyta. Being the only living species of a once populated division, P. nudum is the most primitive vascular plant. Chalcone synthase (CHS; EC 2.3.1.74) superfamily enzymes are responsible for biosyntheses of diverse secondary metabolites, including flavonoids and stilbenes. Using a reverse transcription-polymerase chain reaction strategy, four CHS-superfamily enzymes (PnJ, PnI, PnL and PnP) were cloned from P. nudum, and heterologously expressed in Escherichia coli. These four enzymes of 396–406 amino acids showed sequence identity of >50% among themselves and to other higher-plant CHS-superfamily enzymes. PnJ and PnP preferred p-coumaroyl-CoA and isovaleryl-CoA, respectively, as starter CoA and catalyzed CHS-type ring formation, indicating that they are CHS and phlorisovalerophenone synthase, respectively. On the other hand, PnI and PnL preferred cinnamoyl-CoA as starter CoA and catalyzed stilbene synthase-type cyclization and thus were determined to be pinosylvin synthases (EC 2.3.1.146). In addition, PnE, which uniquely contains a glutamine in place of otherwise strictly conserved histidine, had no apparent in vitro catalytic activity. Phylogenetic analysis indicated that these P. nudum clones form a separate cluster together with Equisetum arvense CHS. This cluster of pteridophytes is located next to the cluster formed by pine (gymnosperm) enzymes, in agreement with their evolutionary relationships. Psilotum nudum represents a plant with the most diverse CHS-superfamily enzymes and this ability to diverge may have provided a survival edge during evolution.
机译:牛膝草(Psilotum nudum Griseb)是一种蕨科植物,属于该科的一个单一科(Psilotaceae)。作为曾经种群繁茂的部门中唯一的活物种,N。Nudum是最原始的维管植物。查尔酮合酶(CHS; EC 2.3.1.74)超家族酶负责生物合成各种次生代谢产物,包括类黄酮和芪类。使用逆转录聚合酶链反应策略,从裸露假单胞菌中克隆了四种CHS超家族酶(PnJ,PnI,PnL和PnP),并在大肠杆菌中异源表达。这四种396–406个氨基酸的酶之间以及与其他高等植物CHS超家族酶的序列同一性均> 50%。 PnJ和PnP分别优选p-香豆酰基-CoA和异戊酰基-CoA,作为起始剂CoA和催化的CHS型环形成,表明它们分别是CHS和苯异戊二酮合酶。另一方面,PnI和PnL优选肉桂酰基-CoA作为起始剂CoA和催化的二苯乙烯合酶型环化反应,因此被确定为松油基乙烯基合酶(EC 2.3.1.146)。另外,独特地含有谷氨酰胺代替原本严格保守的组氨酸的PnE没有明显的体外催化活性。系统发育分析表明,这些裸露假单胞菌克隆与白木马CHS一起形成单独的簇。与它们的进化关系相一致,这种蕨类植物丛位于由松(胚乳)酶形成的丛附近。牛膝草代表具有最多的CHS超家族酶的植物,这种分化能力可能在进化过程中提供了生存优势。

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  • 来源
    《Planta》 |2001年第1期|75-84|共10页
  • 作者单位

    Faculty of Pharmaceutical Sciences Toyama Medical and Pharmaceutical University 2630 Sugitani Toyama 930-0194 Japan;

    Faculty of Pharmaceutical Sciences Toyama Medical and Pharmaceutical University 2630 Sugitani Toyama 930-0194 Japan;

    Faculty of Pharmaceutical Sciences Toyama Medical and Pharmaceutical University 2630 Sugitani Toyama 930-0194 Japan;

    Faculty of Pharmaceutical Sciences Toyama Medical and Pharmaceutical University 2630 Sugitani Toyama 930-0194 Japan;

    Faculty of Pharmaceutical Sciences Toyama Medical and Pharmaceutical University 2630 Sugitani Toyama 930-0194 Japan;

    Graduate School of Pharmaceutical Sciences The University of Tokyo 7-3-1 Hongo Bunkyo-ku Tokyo 113-0033 Japan;

    Graduate School of Pharmaceutical Sciences The University of Tokyo 7-3-1 Hongo Bunkyo-ku Tokyo 113-0033 Japan;

    International Traditional Medicine Research Center Toyama International Health Complex 151 Tomosugi Toyama 939-8224 Japan;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Chalcone synthase (superfamily) Phlorisovalerophenone synthase Pinosylvin synthase Psilotum;

    机译:查尔酮合酶(超家族)苯异戊二酮合酶Pinosylvin合酶;

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