首页> 美国卫生研究院文献>Molecules >Identification of a Novel Specific Cucurbitadienol Synthase Allele in Siraitia grosvenorii Correlates with High Catalytic Efficiency
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Identification of a Novel Specific Cucurbitadienol Synthase Allele in Siraitia grosvenorii Correlates with High Catalytic Efficiency

机译:罗汉果中新的特定葫芦二烯醇合酶等位基因的鉴定与高催化效率相关

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摘要

Mogrosides, the main bioactive compounds isolated from the fruits of Siraitia grosvenorii, are a group of cucurbitane-type triterpenoid glycosides that exhibit a wide range of notable biological activities and are commercially available worldwide as natural sweeteners. However, the extraction cost is high due to their relatively low contents in plants. Therefore, molecular breeding needs to be achieved when conventional plant breeding can hardly improve the quality so far. In this study, the levels of 21 active mogrosides and two precursors in 15 S. grosvenorii varieties were determined by HPLC-MS/MS and GC-MS, respectively. The results showed that the variations in mogroside V content may be caused by the accumulation of cucurbitadienol. Furthermore, a total of four wild-type cucurbitadienol synthase protein variants (50R573L, 50C573L, 50R573Q, and 50C573Q) based on two missense mutation single nucleotide polymorphism (SNP) sites were discovered. An in vitro enzyme reaction analysis indicated that 50R573L had the highest activity, with a specific activity of 10.24 nmol min−1 mg−1. In addition, a site-directed mutant, namely, 50K573L, showed a 33% enhancement of catalytic efficiency compared to wild-type 50R573L. Our findings identify a novel cucurbitadienol synthase allele correlates with high catalytic efficiency. These results are valuable for the molecular breeding of luohanguo.
机译:罗汉果甙是从罗汉果(Siraitia grosvenorii)果实中分离出的主要生物活性化合物,是一组葫芦烷型三萜糖苷,具有广泛的显着生物学活性,可作为天然甜味剂在世界范围内购得。然而,由于它们在植物中的含量相对较低,因此提取成本很高。因此,到目前为止,常规植物育种几乎不能提高质量,因此需要实现分子育种。在这项研究中,分别通过HPLC-MS / MS和GC-MS测定了15个罗汉果链球菌中21种活性罗汉果苷和两种前体的含量。结果表明,罗汉果苷V含量的变化可能是由于葫芦二烯醇的积累引起的。此外,发现了基于两个错义突变单核苷酸多态性(SNP)位点的总共四个野生型葫芦二烯醇合酶蛋白变体(50R573L,50C573L,50R573Q和50C573Q)。体外酶反应分析表明,50R573L的活性最高,比活性为10.24 nmol min -1 mg -1 。另外,与野生型50R573L相比,定点突变体50K573L显示出33%的催化效率增强。我们的发现确定了与高催化效率相关的新型葫芦二烯醇合酶等位基因。这些结果对于罗汉果的分子育种是有价值的。

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