从木质素衍生底物生产香草胺的恶臭假单胞菌代谢工程

IF 4.8 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbial Biotechnology Pub Date : 2021-02-03 DOI:10.1111/1751-7915.13764
Jo?o Heitor Colombelli Manfr?o-Netto, Fredrik Lund, Nina Muratovska, Elin M. Larsson, Nádia Skorupa Parachin, Magnus Carlquist
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引用次数: 11

摘要

利用过表达胺转氨酶(ATAs)的恶臭假单胞菌菌株进行技术木质素的全细胞生物转化有可能成为一种生态高效的生产酚胺的途径。本研究建立了一种新的基于细胞生长的筛选方法来评估重组ATAs对恶臭p.p . putida KT2440中香草胺的体内活性。结果表明,紫色杆菌(Cv-ATA)的天然酶Pp-SpuC-II和ATA在体内对香草胺具有高活性。Pp-SpuC-II和Cv-ATA在菌株GN442ΔPP_2426中过表达,导致特异性转氨酶活性分别增加94倍和92倍,先前设计用于减少香兰素同化。Pp-SpuC-II和Cv-ATA的香草素全细胞生物转化分别产生0.70±0.20 mM和0.92±0.30 mM的香草胺。尽管如此,由于产物的大量再同化和副产物香草酸和香草醇的形成,胺的生产受到限制。枯草芽孢杆菌Cv-ATA和丙氨酸脱氢酶的同时过表达增加了以铵为唯一氮源的香草胺的产量,减少了胺产物再同化的量。鉴定和删除其他编码氧化还原酶作用于香兰素的天然基因是进一步改进的重要工程靶点。
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Metabolic engineering of Pseudomonas putida for production of vanillylamine from lignin-derived substrates

Whole-cell bioconversion of technical lignins using Pseudomonas putida strains overexpressing amine transaminases (ATAs) has the potential to become an eco-efficient route to produce phenolic amines. Here, a novel cell growth-based screening method to evaluate the in vivo activity of recombinant ATAs towards vanillylamine in P. putida KT2440 was developed. It allowed the identification of the native enzyme Pp-SpuC-II and ATA from Chromobacterium violaceum (Cv-ATA) as highly active towards vanillylamine in vivo. Overexpression of Pp-SpuC-II and Cv-ATA in the strain GN442ΔPP_2426, previously engineered for reduced vanillin assimilation, resulted in 94- and 92-fold increased specific transaminase activity, respectively. Whole-cell bioconversion of vanillin yielded 0.70 ± 0.20 mM and 0.92 ± 0.30 mM vanillylamine, for Pp-SpuC-II and Cv-ATA, respectively. Still, amine production was limited by a substantial re-assimilation of the product and formation of the by-products vanillic acid and vanillyl alcohol. Concomitant overexpression of Cv-ATA and alanine dehydrogenase from Bacillus subtilis increased the production of vanillylamine with ammonium as the only nitrogen source and a reduction in the amount of amine product re-assimilation. Identification and deletion of additional native genes encoding oxidoreductases acting on vanillin are crucial engineering targets for further improvement.

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来源期刊
Microbial Biotechnology
Microbial Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-MICROBIOLOGY
CiteScore
9.80
自引率
3.50%
发文量
162
审稿时长
6-12 weeks
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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