Metabolomics-Driven Identification of the Rate-Limiting Steps in 1-Propanol Production

Author:

Ohtake Toshiyuki,Kawase Naoki,Pontrelli Sammy,Nitta Katsuaki,Laviña Walter A.,Shen Claire R.,Putri Sastia P.,Liao James C.,Fukusaki Eiichiro

Abstract

The concerted effort for bioproduction of higher alcohols and other commodity chemicals has yielded a consortium of metabolic engineering techniques to identify targets to enhance performance of engineered microbial strains. Here, we demonstrate the use of metabolomics as a tool to systematically identify targets for improved production phenotypes in Escherichia coli. Gas chromatography/mass spectrometry (GC/MS) and ion-pair LC-MS/MS were performed to investigate metabolic perturbations in various 1-propanol producing strains. Two initial strains were compared that differ in the expression of the citramalate and threonine pathways, which hold a synergistic relationship to maximize production yields. While this results in increased productivity, no change in titer was observed when the threonine pathway was overexpressed beyond native levels. Metabolomics revealed accumulation of upstream byproducts, norvaline and 2-aminobutyrate, both of which are derived from 2-ketobutyrate (2KB). Eliminating the competing pathway by gene knockouts or improving flux through overexpression of glycolysis gene effectively increased the intracellular 2KB pool. However, the increase in 2KB intracellular concentration yielded decreased production titers, indicating toxicity caused by 2KB and an insufficient turnover rate of 2KB to 1-propanol. Optimization of alcohol dehydrogenase YqhD activity using an ribosome binding site (RBS) library improved 1-propanol titer (g/L) and yield (g/g of glucose) by 38 and 29% in 72 h compared to the base strain, respectively. This study demonstrates the use of metabolomics as a powerful tool to aid systematic strain improvement for metabolically engineered organisms.

Funder

Japan Science and Technology Agency

Publisher

Frontiers Media SA

Subject

Microbiology (medical),Microbiology

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Metabolomics-based development of bioproduction processes toward industrial-scale production;Current Opinion in Biotechnology;2024-02

2. Metabolomics application for food quality improvement and reduction of food loss;AIP Conference Proceedings;2024

3. Metabolomics as a Tool for Phenotypic Characterization and Strain Improvement;Detection and Analysis of Microorganisms by Mass Spectrometry;2023-10-06

4. Metabolomics-driven strain improvement: A mini review;Frontiers in Molecular Biosciences;2022-11-09

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