[雷公藤对戊烷二萜C-19氧化酶TwKO的定点诱变]。

Q3 Pharmacology, Toxicology and Pharmaceutics
Rong-Feng Wang, Zheng Liu, Xin-Meng Wang, Wei Gao, Jia-Dian Wang, Ya-Ting Hu, Lu-Qi Huang
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引用次数: 0

摘要

Tripterifordin和neotripterifordin是中药材三尖杉中重要的ent-kaurane二萜类化合物,具有显著的抗HIV(人类免疫缺陷病毒)活性。在阐明这些化合物天然生物合成途径的基础上,利用微生物细胞工厂进行异源生产有助于减轻对植物资源的依赖,为可持续生产提供丰富的原料。TwKO 是第一个参与三尖杉酯素和新三尖杉酯素生物合成的 CYP450 酶。本研究旨在通过定点突变提高 TwKO 的催化活性,以利于在酵母中生产三尖杉酯苷和新三尖杉酯苷。研究人员利用基于 AlphaFold 2 建立的 AlphaFold DB 获得了 TwKO 的蛋白质模型。根据多序列比对和自然进化原理,确定了影响 TwKO 与底物结合的关键残基。随后,在酿酒酵母中对突变体进行了功能表征。共获得 71 个突变体,其中 11 个突变体和 11 个突变体分别具有提高 16α-hydroxy-ent-kaurenol 和 16α-hydroxy-ent-kaurenoic acid 产量的能力。此外,有 10 个突变体可以增加 16α-hydroxy-ent-kaurenol 氧化产物的比例。其中,R304 被确定为影响 TwKO 催化特异性的关键残基,突变该残基会导致 16α-hydroxy-ent-kaurenol 的特异性催化。该研究首次揭示了影响 TwKO 催化活性的关键残基,并获得了提高 TwKO 活性的突变体,为三尖杉酯苷和新三尖杉酯苷的生物合成奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Site-directed mutagenesis of ent-kaurane diterpenoid C-19 oxidase TwKO in Tripterygium wilfordii].

Tripterifordin and neotripterifordin are important ent-kaurane diterpenoids in the Chinese medicinal herb Tripterygium wilfordii, possessing significant anti-HIV(human immunodeficiency virus) activity. On the basis of elucidating the natural biosynthetic pathways of these compounds, heterologous production with microbial cell factories can help to alleviate the reliance on plant resources and provide abundant raw materials for sustainable production. TwKO is the first CYP450 enzyme involved in the biosynthesis of tripterifordin and neotripterifordin. This study aimed to enhance the catalytic activity of TwKO by site-directed mutagenesis to benefit the production of tripterifordin and neotripterifordin in yeast. The AlphaFold DB established based on the AlphaFold 2 was employed to obtain the protein model of TwKO. According to multiple sequence alignments and principles of natural evolution, the key residues influencing the binding of TwKO to the substrate were identified. Subsequently, functional characterization of the mutants were conducted in Saccharomyces cerevisiae. A total of 71 mutants were obtained, among which 11 and 11 mutants had the abilities of enhancing the production of 16α-hydroxy-ent-kaurenol and 16α-hydroxy-ent-kaurenoic acid, respectively. In addition, 10 mutants could increase the proportion of the oxidation product of 16α-hydroxy-ent-kaurenol. In particular, R304 was identified as a key residue affecting the catalytic specificity of TwKO, the mutation of which led to the specific prodiction of 16α-hydroxy-ent-kaurenol. This study was the first to reveal the key residue affecting the catalytic activity of TwKO and obtained the mutants with increased TwKO activity, lay a foundation for the biosynthesis of tripterifordin and neotripterifordin.

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来源期刊
Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
自引率
0.00%
发文量
581
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