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参与荷叶碱生物合成的可食用叶片中α-甲基转移酶的表征及分子工程改造

Characterization and Molecular Engineering of a -Methyltransferase from Edible Leaves Involved in Nuciferine Biosynthesis.

作者信息

Chen Sha, Wang Zhennan, Dong GangQiang, Zhao Hedi, Zhu Yongping, Liu Yan, Yuan Ling, Jiang Jinzhu, Liu XianJu, Liu An, Yu Yuetong

机构信息

State Key Laboratory for Quality Ensurance and Sustainable Use of Dao-Di Herbs, Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, No. 16, Nanxiaojie, Dongzhimennei, Beijing 100700, China.

Amway (China) Botanical R&D Centre, Wuxi 214115, China.

出版信息

J Agric Food Chem. 2024 Oct 4. doi: 10.1021/acs.jafc.4c04818.

Abstract

Lotus leaf, traditionally used as both edible tea and herbal medicine in Asia, contains nuciferine, a lipid-lowering and weight-loss compoud. The biosynthetic pathways of nuciferine in remain unclear. We characterized a specific -methyltransferase, NnNMT, which had a novel function and catalyzed only nuciferine synthesis from the aporphine-type alkaloid -nornuciferine. The expression profile of NnNMT was in agreement with BIA accumulation patterns in four tissues from three varieties, suggesting that NnNMT is involved in nucleiferine biosynthesis in . Protein engineering based on molecular docking and dynamic simulations revealed key residues (Y98, H208, F256, Y81, F329, G260, P76, and H80) crucial for NnNMT activity, with the F257A mutant showing increased efficiency. These findings enhance our understanding of aporphine alkaloid biosynthesis and support the development of lotus-based functional foods and medicinal applications.

摘要

荷叶在亚洲传统上既用作可食用的茶,也用作草药,它含有荷叶碱,一种具有降血脂和减肥作用的化合物。荷叶碱在荷叶中的生物合成途径仍不清楚。我们鉴定了一种特定的甲基转移酶NnNMT,它具有新功能,仅催化从阿朴啡型生物碱去甲荷叶碱合成荷叶碱。NnNMT的表达谱与三个品种四个组织中生物碱的积累模式一致,表明NnNMT参与荷叶中荷叶碱的生物合成。基于分子对接和动态模拟的蛋白质工程揭示了对NnNMT活性至关重要的关键残基(Y98、H208、F256、Y81、F329、G260、P76和H80),其中F257A突变体显示出更高的效率。这些发现加深了我们对阿朴啡生物碱生物合成的理解,并支持基于荷叶的功能性食品和药用应用的开发。

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