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Oxidation of Cucurbitadienol Catalyzed by CYP87D18 in the Biosynthesis of Mogrosides from Siraitia grosvenorii

机译:CYP87D18催化罗汉果罗汉果生物合成生物合成罗汉果。

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Mogrosides, the principally bioactive compounds extracted from the fruits of Siraitia grosvenorii, are a group of glycosylated cucurbitane-type tetracyclic triterpenoid saponins that exhibit a wide range of notable biological activities and are commercially available worldwide as natural sweeteners. The biosynthesis of mogrosides involves initial cyclization of 2,3-oxidosqualene to the triterpenoid skeleton of cucurbitadienol, followed by a series of oxidation reactions catalyzed by Cyt P450s (P450s) and then glycosylation reactions catalyzed by UDP glycosyltransferases (UGTs). We previously reported the identification of a cucurbitadienol synthase (SgCbQ) and a mogrol C-3 hydroxyl glycosyltransferase (UGT74AC1). However, molecular characterization of further transformation of cucurbitadienol to mogrol by P450s remains unavailable. In this study, we report the successful identification of a multifunctional P450 (CYP87D18) as being involved in C-11 oxidation of cucurbitadienol. In vitro enzymatic activity assays showed that CYP87D18 catalyzed the oxidation of cucurbitadienol at C-11 to produce 11-oxo cucurbitadienol and 11-hydroxy cucurbitadienol. Furthermore, 11-oxo-24,25-epoxy cucurbitadienol as well as 11-oxo cucurbitadienol and 11-hydroxy cucurbitadienol were produced when CYP87D18 was co-expressed with SgCbQ in genetic yeast, and their structures were confirmed by liquid chromatography-solid-phase extraction-nuclear magnetic resonance-mass spectrometry coupling (LC-SPE-NMR-MS). Taken together, these results suggest a role for CYP87D18 as a multifunctional cucurbitadienol oxidase in the mogrosides pathway.
机译:罗汉果甙是从罗汉果(Siraitia grosvenorii)的果实中提取的主要生物活性化合物,是一组糖基化葫芦烷型四环三萜类皂苷,具有广泛的显着生物活性,可作为天然甜味剂在世界范围内购得。罗汉果苷的生物合成涉及将2,3-氧化角鲨烯初始环化为葫芦二烯三萜骨架,然后由Cyt P450(P450)催化一系列氧化反应,然后由UDP糖基转移酶(UGTs)催化糖基化反应。我们之前曾报道过葫芦二烯醇合酶(SgCbQ)和莫卧儿C-3羟基糖基转移酶(UGT74AC1)的鉴定。但是,仍无法获得南瓜二烯酚通过P450进一步转化为莫格洛尔的分子表征。在这项研究中,我们报告成功鉴定了一种多功能P450(CYP87D18)与葫芦二烯醇的C-11氧化有关。体外酶活性测定表明,CYP87D18在C-11处催化葫芦二烯醇的氧化,生成11-氧代葫芦二烯醇和11-羟基葫芦二烯醇。 CYP87D18与SgCbQ在酵母菌中共表达时,产生了11-氧-24,25-环氧葫芦二烯醇以及11-氧邻葫芦二烯醇和11-羟基葫芦二烯醇,并通过液相色谱-固相法证实了其结构萃取-核磁共振-质谱联用(LC-SPE-NMR-MS)。两者合计,这些结果表明CYP87D18在罗汉果苷途径中作为多功能葫芦二烯醇氧化酶的作用。

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