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工程酵母巴斯德毕赤酵母利用甲醇生产 L-乳酸。

Production of L-lactic acid from methanol by engineered yeast Pichia pastoris.

机构信息

Division of Biotechnology, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China; CAS Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Division of Biotechnology, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China; College of Life and Health, Dalian University, Dalian 116622, China.

出版信息

Bioresour Technol. 2025 Jan;415:131730. doi: 10.1016/j.biortech.2024.131730. Epub 2024 Oct 30.

Abstract

Lactic acid (LA) serves as a widely used platform compound and has received significant attention as a raw material for synthesis of biodegradable polylactic acid. Currently, LA is mainly produced through microbial fermentation, but its high costs undermine its competitive advantage against other materials, necessitating the development of novel production routes. Methanol bioconversion represents an emerging low-carbon circular economy, where LA could become an outstanding representative product. This study successfully established an efficient methanol-based LA synthesis route in Pichia pastoris. Through systematic metabolic engineering strategies, including screening lactate dehydrogenase, modification of cofactor preference, blocking LA consumption pathway, and mitochondrial LA synthesis compartmentalization, 4.2 g/L L-LA was produced in fed-batch fermentation by using methanol as the sole carbon source. Through multi-dimensional and spatial engineering of enzyme, a cell factory was developed for efficient synthesis of L-LA, highlights the significant potential of the low-carbon synthesis route for L-LA via methanol bioconversion.

摘要

乳酸(LA)可用作一种用途广泛的平台化合物,且作为合成可生物降解聚乳酸的原料,已受到广泛关注。目前,LA 主要通过微生物发酵生产,但由于其成本较高,使其相对于其他材料缺乏竞争优势,因此需要开发新的生产路线。甲醇生物转化代表了一种新兴的低碳循环经济,在此过程中,LA 可能成为一种出色的代表性产品。本研究成功在毕赤酵母中建立了一种高效的基于甲醇的 LA 合成途径。通过系统的代谢工程策略,包括筛选乳酸脱氢酶、修饰辅酶偏好性、阻断 LA 消耗途径以及线粒体 LA 合成区室化,仅以甲醇为唯一碳源进行分批补料发酵,可生产 4.2 g/L 的 L-乳酸。通过酶的多维和空间工程改造,开发了用于高效合成 L-乳酸的细胞工厂,这突显了通过甲醇生物转化进行 L-乳酸低碳合成途径的巨大潜力。

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