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耐产物面包酵母过氧化物酶体中香叶醇的产生

Production of the Fragrance Geraniol in Peroxisomes of a Product-Tolerant Baker's Yeast.

作者信息

Gerke Jennifer, Frauendorf Holm, Schneider Dominik, Wintergoller Maxim, Hofmeister Thomas, Poehlein Anja, Zebec Ziga, Takano Eriko, Scrutton Nigel S, Braus Gerhard H

机构信息

Department of Molecular Microbiology and Genetics, Institute of Microbiology and Genetics, Georg-August-Universität Göttingen, Göttingen, Germany.

Institute of Organic and Biomolecular Chemistry, Georg-August-Universität Göttingen, Göttingen, Germany.

出版信息

Front Bioeng Biotechnol. 2020 Sep 23;8:582052. doi: 10.3389/fbioe.2020.582052. eCollection 2020.

Abstract

Monoterpenoids, such as the plant metabolite geraniol, are of high industrial relevance since they are important fragrance materials for perfumes, cosmetics, and household products. Chemical synthesis or extraction from plant material for industry purposes are complex, environmentally harmful or expensive and depend on seasonal variations. Heterologous microbial production offers a cost-efficient and sustainable alternative but suffers from low metabolic flux of the precursors and toxicity of the monoterpenoid to the cells. In this study, we evaluated two approaches to counteract both issues by compartmentalizing the biosynthetic enzymes for geraniol to the peroxisomes of as production sites and by improving the geraniol tolerance of the yeast cells. The combination of both approaches led to an 80% increase in the geraniol titers. In the future, the inclusion of product tolerance and peroxisomal compartmentalization into the general chassis engineering toolbox for monoterpenoids or other host-damaging, industrially relevant metabolites may lead to an efficient, low-cost, and eco-friendly microbial production for industrial purposes.

摘要

单萜类化合物,如植物代谢产物香叶醇,具有很高的工业相关性,因为它们是香水、化妆品和家用产品的重要香料原料。出于工业目的,从植物材料中进行化学合成或提取复杂、对环境有害或成本高昂,且依赖于季节变化。异源微生物生产提供了一种经济高效且可持续的替代方案,但存在前体代谢通量低以及单萜类化合物对细胞有毒性的问题。在本研究中,我们评估了两种方法来解决这两个问题,即将香叶醇生物合成酶分隔到过氧化物酶体作为生产位点,并提高酵母细胞对香叶醇的耐受性。两种方法的结合使香叶醇滴度提高了80%。未来,将产物耐受性和过氧化物酶体分隔纳入单萜类化合物或其他对宿主有害的、具有工业相关性的代谢物的通用底盘工程工具箱中,可能会实现高效、低成本且环保的工业微生物生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d6/7546902/84291adf5b45/fbioe-08-582052-g001.jpg

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