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Biochemical and structural characterisation of dehydroquinate synthase from the New Zealand kiwifruit Actinidia chinensis

机译:新西兰猕猴桃猕猴桃猕猴桃脱氢奎宁合酶的生化和结构表征

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摘要

One of the novel aspects of kiwifruit is the presence of a high level of quinic acid which contributes to the flavour of the fruit. Quinic acid metabolism intersects with the shikimate pathway, which is responsible for the de novo biosynthesis of primary and secondary aromatic metabolites. The gene encoding the enzyme which catalyses the second step of the shikimate pathway, dehydroquinate synthase (DHQS), from the New Zealand kiwifruit Actinidia chinensis was identified, cloned and expressed. A. chinensis DHQS was activated by divalent metal ions, and was found to require NAD+ for catalysis. The protein was crystallised and the structure was solved, revealing a homodimeric protein. Each monomer has a NAD+ binding site nestled between the distinct N- and C-terminal domains. In contrast to other microbial DHQSs, which show an open conformation in the absence of active site ligands, A. chinensis DHQS adopts a closed conformation. This is the first report of the structure of a DHQS from a plant source.
机译:奇异果的新颖方面之一是高水平的奎宁酸的存在,有助于水果的风味。奎尼酸代谢与the草酸酯途径相交,后者负责初级和次级芳香族代谢物的从头生物合成。鉴定,克隆和表达了编码来自新西兰猕猴桃猕猴桃的催化iki草酸途径第二步的酶的基因,脱氢奎宁酸合酶(DHQS)。中国曲霉DHQS被二价金属离子活化,发现需要NAD +进行催化。蛋白质结晶并解析结构,揭示同源二聚体蛋白质。每个单体都有一个NAD +结合位点,位于不同的N-和C-末端结构域之间。与其他微生物DHQS在没有活性位点配体的情况下显示开放构象相反,中华曲霉DHQS采用封闭构象。这是有关植物来源的DHQS结构的第一份报告。

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