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An Intronless β-amyrin Synthase Gene is More Efficient in Oleanolic Acid Accumulation than its Paralog in Gentiana straminea

机译:一个无内在的β-amyrin合酶基因在齐墩果中的齐墩果酸积累比其旁系同源物更有效。

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摘要

Paralogous members of the oxidosqualene cyclase (OSC) family encode a diversity of enzymes that are important in triterpenoid biosynthesis. This report describes the isolation of the Gentiana straminea gene GsAS2 that encodes a β>-amyrin synthase (βAS) enzyme. Unlike its previously isolated paralog GsAS1, GsAS2 lacks introns. Its predicted protein product was is a 759 residue polypeptide that shares high homology with other known β-amyrin synthases (βASs). Heterologously expressed GsAS2 generates more β-amyrin in yeast than does GsAS1. Constitutive over-expression of GsAS2 resulted in a 5.7 fold increase in oleanolic acid accumulation, while over-expression of GsAS1 led to a 3 fold increase. Additionally, RNAi-directed suppression of GsAS2 and GsAS1 in G. straminea decreased oleonolic acid levels by 65.9% and 21% respectively, indicating that GsAS2 plays a more important role than GsAS1 in oleanolic acid biosynthesis in G. straminea. We uses a docking model to explore the catalytic mechanism of GsAS1/2 and predicted that GsAS2, with its Y560, have higher efficiency than GsAS1 and mutated versions of GsAS2 in β-amyrin produce. When the key residue in GsAS2 was mutagenized, it produced about 41.29% and 71.15% less β-amyrin than native, while the key residue in GsAS1 was mutagenized to that in GsAS2, the mutant produced 38.02% more β-amyrin than native GsAS1.
机译:氧化角鲨烯环化酶(OSC)家族的旁系成员编码在三萜类生物合成中重要的多种酶。该报告描述了分离出的Gentiana straminea基因GsAS2,该基因编码β>-淀粉酶合成酶(βAS)。与以前孤立的旁系同源物GsAS1不同,GsAS2缺少内含子。它的预测蛋白产物是759个残基的多肽,与其他已知的β-锚蛋白合成酶(βASs)具有高度同源性。异源表达的GsAS2在酵母中比GsAS1产生更多的β-淀粉酶。 GsAS2的组成型过表达导致齐墩果酸积累增加了5.7倍,而GsAS1的过表达导致了3倍的增加。此外,RNAi导向的抑制变形链霉菌中GsAS2和GsAS1的油酸水平分别降低65.9%和21%,这表明GsAS2在中的齐墩果酸生物合成中比 GsAS1 发挥更重要的作用。 > G。 straminea 。我们使用对接模型探索了GsAS1 / 2的催化机理,并预测GsAS2及其Y560在β -amyrin产品中的效率高于GsAS1和GsAS2的突变版本。当诱变GsAS2中的关键残基时,它产生的β -amyrin比天然的少约41.29%和71.15%,而将GsAS1中的关键残基诱变为与GsAS2中的相同,突变体的产生率高38.02% β -amyrin比天然GsAS1。

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