IF 5.7 2区 生物学
Zhangrao Huang, Yongpeng Yao, Rouyu Di, JianChao Zhang, Yuanyuan Pan, Gang Liu
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引用次数: 0

摘要

迷幻药是一种从色胺中提取的生物碱,已被美国食品及药物管理局授予 "突破性疗法 "称号,用于治疗耐药性抑郁症,凸显了其临床重要性。因此,迫切需要可持续和经济的生产方式。在大肠杆菌中生产迷幻药引起了广泛关注。然而,由于真核细胞色素 P450 酶 PsiH 在迷幻素生物合成途径中的表达量和活性较低,原核细胞中迷幻素的从头合成一直受到阻碍。为了克服这一困境,我们在本文中通过构建具有 N 端结构域修饰的 PsiH 变体,并在一致的低温条件下表达整个生物合成途径,证明了在大肠杆菌中从头合成迷幻药。通过改进前体供应和 P450 电子传递链的工程设计,使迷幻素生物合成的关键中间体去甲迷幻素的滴度(105.3 毫克/升)提高了 33 倍,迷幻素的滴度(14 毫克/升)提高了 17 倍。通过过量表达额外拷贝的甲基转移酶基因 psiM,将去甲花青素转化为迷幻药,进一步提高了迷幻药的产量。最后,通过优化烧瓶发酵条件,产生了 79.4 毫克/升的迷幻素,比初始菌株提高了 100 倍。我们的工作表明,真菌 P450 工程学成功地提高了大肠杆菌的催化活性,并将推动在原核微生物细胞中可持续地生产重要的抗抑郁剂迷幻药。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

De Novo Biosynthesis of Antidepressant Psilocybin in Escherichia coli

De Novo Biosynthesis of Antidepressant Psilocybin in Escherichia coli

Psilocybin, a tryptamine-derived alkaloid, has been granted Breakthrough Therapy designation by the U.S. FDA for treatment-resistant depression, underscoring its clinical importance. Therefore, sustainable and economic production is urgently needed. Manufacturing of psilocybin in Escherichia coli has drawn great attention. However, due to the low expression and activity of the eukaryotic cytochrome P450 enzyme PsiH in the psilocybin biosynthetic pathway, de novo synthesis of psilocybin in prokaryotic cells has been hampered. To overcome this dilemma, we herein demonstrated de novo synthesis of psilocybin in E. coli by constructing PsiH variants with N-terminal domain modifications and expressing the entire biosynthetic pathway at a concordantly low temperature. Improving the supply of precursor and engineering the P450 electron transfer chain resulted in a 33-fold increase in the titre of norbaeocystin (105.3 mg/L), a key intermediate of psilocybin biosynthesis, and a 17-fold increase in the titre of psilocybin (14 mg/L). Further enhancement of psilocybin production was achieved by converting norbaeocystin to psilocybin by overexpressing an extra copy of the methyltransferase gene psiM. Finally, 79.4 mg/L of psilocybin was produced by optimising flask fermentation conditions, a 100-fold improvement over the starting strain. Our work demonstrates the successful fungal P450 engineering to improve the catalytic activity in E. coli and will advance the sustainable production of the important antidepressant psilocybin in prokaryotic microbial cells.

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来源期刊
Microbial Biotechnology
Microbial Biotechnology Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
11.20
自引率
3.50%
发文量
162
审稿时长
1 months
期刊介绍: Microbial Biotechnology publishes papers of original research reporting significant advances in any aspect of microbial applications, including, but not limited to biotechnologies related to: Green chemistry; Primary metabolites; Food, beverages and supplements; Secondary metabolites and natural products; Pharmaceuticals; Diagnostics; Agriculture; Bioenergy; Biomining, including oil recovery and processing; Bioremediation; Biopolymers, biomaterials; Bionanotechnology; Biosurfactants and bioemulsifiers; Compatible solutes and bioprotectants; Biosensors, monitoring systems, quantitative microbial risk assessment; Technology development; Protein engineering; Functional genomics; Metabolic engineering; Metabolic design; Systems analysis, modelling; Process engineering; Biologically-based analytical methods; Microbially-based strategies in public health; Microbially-based strategies to influence global processes
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