通过赋予柚皮苷羟基化的 P450BM3 活性,在柑橘榨汁机中生物合成麦饭石酚。

IF 3.9 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Applied Microbiology and Biotechnology Pub Date : 2024-12-01 Epub Date: 2024-01-08 DOI:10.1007/s00253-023-12867-9
Xingyi Zhang, Yinghui Feng, Yuanzhe Hua, Chuanxi Zhang, Bohuan Fang, Xiang Long, Yue Pan, Bei Gao, John Z H Zhang, Lijun Li, Hui Ni, Lujia Zhang
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By well analyzing the catalytic mechanism and the conformations of the naringenin in P450, we proposed that the intermediate Cmpd I ((porphyrin)Fe = O) is more reasonable as key conformation for the hydrolyzation, and the distance between C3'/C5' of naringenin to the O atom of CmpdI determines the hydroxylating activity for the naringenin. Thus, the \"flying kite model\" that gradually drags the C-H bond of the substrate to the O atom of CmpdI was put forward for rational design. With ab initio design, we successfully endowed the self-sufficient P450-BM3 hydroxylic activity to naringenin and obtained mutant M5-5, with k<sub>cat</sub>, K<sub>m</sub>, and k<sub>cat</sub>/K<sub>m</sub> values of 230.45 min<sup>-1</sup>, 310.48 µM, and 0.742 min<sup>-1</sup> µM<sup>-1</sup>, respectively. Furthermore, the mutant M4186 was screened with k<sub>cat</sub>/K<sub>m</sub> of 4.28-fold highly improved than the reported M13. 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引用次数: 0

摘要

柚皮中含有丰富的黄酮类化合物柚皮苷,废弃物中未经加工的柚皮苷直接丢弃对环境不利。幸运的是,从柚皮苷中提取的羟基化产物二碘酪醇(eriodictyol)具有显著的抗氧化和抗癌特性。P450s 被认为有望用于黄酮类化合物的生物转化,但天然存在的 P450s 对柚皮苷的 C3'具有羟化活性的较少。通过深入分析催化机理和柚皮苷在 P450 中的构象,我们提出中间体 Cmpd I((卟啉)Fe = O)作为水解的关键构象更为合理,而柚皮苷的 C3'/C5' 与 CmpdI 的 O 原子之间的距离决定了柚皮苷的羟化活性。因此,我们提出了将底物的 C-H 键逐渐拖向 CmpdI 的 O 原子的 "放飞风筝模型 "来进行合理设计。通过ab initio设计,我们成功地赋予了柚皮苷自给自足的P450-BM3羟化活性,得到了突变体M5-5,其kcat、Km和kcat/Km值分别为230.45 min-1、310.48 µM和0.742 min-1 µM-1。此外,还筛选出了突变体 M4186,其 kcat/Km 比已报道的 M13 提高了 4.28 倍。M4186 还显示出 62.57% 的二碘tyol 收率,更适合工业应用。这项研究为合理设计 P450s 非原生化合物提供了理论指导。关键点-根据 Cmpd I 的 O 与柚皮苷的 C3'/C5' 之间的距离,提出了 "飞鸢模型"--通过 ab initio 修饰得到了比 M13 活性高 1.6 倍的突变体 M15-5。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Biosynthesis of eriodictyol in citrus waster by endowing P450BM3 activity of naringenin hydroxylation.

The flavonoid naringenin is abundantly present in pomelo peels, and the unprocessed naringenin in wastes is not friendly for the environment once discarded directly. Fortunately, the hydroxylated product of eriodictyol from naringenin exhibits remarkable antioxidant and anticancer properties. The P450s was suggested promising for the bioconversion of the flavonoids, but less naturally existed P450s show hydroxylation activity to C3' of the naringenin. By well analyzing the catalytic mechanism and the conformations of the naringenin in P450, we proposed that the intermediate Cmpd I ((porphyrin)Fe = O) is more reasonable as key conformation for the hydrolyzation, and the distance between C3'/C5' of naringenin to the O atom of CmpdI determines the hydroxylating activity for the naringenin. Thus, the "flying kite model" that gradually drags the C-H bond of the substrate to the O atom of CmpdI was put forward for rational design. With ab initio design, we successfully endowed the self-sufficient P450-BM3 hydroxylic activity to naringenin and obtained mutant M5-5, with kcat, Km, and kcat/Km values of 230.45 min-1, 310.48 µM, and 0.742 min-1 µM-1, respectively. Furthermore, the mutant M4186 was screened with kcat/Km of 4.28-fold highly improved than the reported M13. The M4186 also exhibited 62.57% yield of eriodictyol, more suitable for the industrial application. This study provided a theoretical guide for the rational design of P450s to the nonnative compounds. KEY POINTS: •The compound I is proposed as the starting point for the rational design of the P450BM3 •"Flying kite model" is proposed based on the distance between O of Cmpd I and C3'/C5' of naringenin •Mutant M15-5 with 1.6-fold of activity than M13 was obtained by ab initio modification.

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来源期刊
Applied Microbiology and Biotechnology
Applied Microbiology and Biotechnology 工程技术-生物工程与应用微生物
CiteScore
10.00
自引率
4.00%
发文量
535
审稿时长
2 months
期刊介绍: Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.
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