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首页> 外文期刊>The Journal of biological chemistry >Enzymatic 13C Labeling and Multidimensional NMR Analysis of Miltiradiene Synthesized by Bifunctional Diterpene Cyclase in Selaginella moellendorffii
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Enzymatic 13C Labeling and Multidimensional NMR Analysis of Miltiradiene Synthesized by Bifunctional Diterpene Cyclase in Selaginella moellendorffii

机译:双官能二萜环菌在塞拉尼亚莫尔德菲利双官能二萜环化酶合成的酶13C标记和多维NMR分析

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摘要

Diterpenes show diverse chemical structures and various physiological roles. The diversity of diterpene is primarily established by diterpene cyclases that catalyze a cyclization reaction to form the carbon skeleton of cyclic diterpene. Diterpene cyclases are divided into two types, monofunctional and bifunctional cyclases. Bifunctional diterpene cyclases (BDTCs) are involved in hormone and defense compound biosyntheses in bryophytes and gymnosperms, respectively. The BDTCs catalyze the successive two-step type-B (protonation-initiated cyclization) and type-A (ionization-initiated cyclization) reactions of geranylgeranyl diphosphate (GGDP). We found that the genome of a lycophyte, Selaginella moellendorffii, contains six BDTC genes with the majority being uncharacterized. The cDNA from S. moellendorffii encoding a BDTC-like enzyme, miltiradiene synthase (SmMDS), was cloned. The recombinant SmMDS converted GGDP to a diterpene hydrocarbon product with a molecular mass of 272 Da. Mutation in the type-B active motif of SmMDS abolished the cyclase activity, whereas (+)-copalyl diphosphate, the reaction intermediate from the conversion of GGDP to the hydrocarbon product, rescued the cyclase activity of the mutant to form a diterpene hydrocarbon. Another mutant lacking type-A activity accumulated copalyl diphosphate as the reaction intermediate. When the diterpene hydrocarbon was enzymatically synthesized from [U-13C6]mevalonate, all carbons were labeled with 13C stable isotope (>99%). The fully 13C-labeled product was subjected to 13C-13C COSY NMR spectroscopic analyses. The direct carbon-carbon connectivities observed in the multidimensional NMR spectra demonstrated that the hydrocarbon product by SmMDS is miltiradiene, a putative biosynthetic precursor of tanshinone identified from the Chinese medicinal herb Salvia miltiorrhiza. Hence, SmMDS functions as a bifunctional miltiradiene synthase in S. moellendorffii. In this study, we demonstrate that one-dimensional and multidimensional 13C NMR analyses of completely 13C-labeled compound are powerful methods for biosynthetic studies.
机译:Diterpenes显示不同的化学结构和各种生理作用。二萜的多样性主要由催化环化反应的二萜环酶建立,以形成环状二萜的碳骨架。二萜类酶分为两种类型,单官能和双官能的环酶。双官能二萜酶(BDTCs)分别参与血栓形成和裸子植物中的激素和防御复合生物合成。 BDTCS催化成连续的两步型-B(质子化引发的环化)和型(电离引发的环化)反二磷酸二磷酸(GGDP)的型(电离引发的环化)反应。我们发现淋巴结霉菌的基因组Selaginella Moellendorffii含有六种BDTC基因,其中大多数是无表的。克隆了编码BDTC样酶,Miltiradiene合酶(SMMDS)的S. moellendorffii的cDNA。重组SMMDS将GGDP转化为具有272Da的分子量的二萜烃产物。 SMMDS型活性基质中的突变废除了环酶活性,而(+) - 二磷酸二磷酸,从GGDP转化为烃产物的反应中间体,救出了突变体的环酶活性以形成二萜烃。另一个缺乏类型的突变体 - 作为反应中间体作为反应中间体累积的二磷酸二磷酸的活性。当从甲羟戊酯酶促合成二萜烃时,将所有碳均用13C稳定同位素(> 99%)标记。将完全13C标记的产物进行13C-13C舒适的NMR光谱分析。在多维核磁共振谱中观察到的直接碳 - 碳连接性证明SMMDS的烃类产品是Miltiradiene,该丹参的推定生物合成前体鉴定在中药草药丹参米尔蒂氏粒子。因此,SMMDS在S. Moellendorffii中用作双官能Miltiradiene合酶。在这项研究中,我们证明了完全13C标记化合物的一维和多维13C NMR分析是生物合成研究的强大方法。

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