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Efficient production of itaconic acid from the single carbon substrate methanol with engineered Komagataella phaffii

Severinsen, M.; Bachleitner, S.; Modenese, V.; Ata, O.; Mattanovich, D.

2024-04-25 microbiology
10.1101/2024.04.25.591069 bioRxiv
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BackgroundAmidst the escalating carbon dioxide levels resulting from fossil fuel consumption, there is a pressing need for sustainable, bio-based alternatives to underpin future global economies. Single carbon feedstocks, derived from CO2, represent promising substrates for biotechnological applications. Especially methanol is gaining prominence for bio-production of commodity chemicals. ResultsIn this study, we show the potential of Komagataella phaffii as a production platform for itaconic acid using methanol as the carbon source. Successful integration of heterologous genes from Aspergillus terreus (cadA, mttA and mfsA) alongside fine-tuning of the mfsA gene expression, led to promising initial itaconic acid titers of 28 g{middle dot}L-1 after five days of fed-batch cultivation. Through the combined efforts of process optimization and strain engineering strategies we further boosted the itaconic acid production reaching titers of 55 g{middle dot}L-1 after less than five days of methanol feed, whilst increasing the product yield on methanol from 0.06 g{middle dot}g- 1 to 0.24 g{middle dot}g-1. ConclusionOur results highlight the potential of K. phaffii as a methanol-based platform organism for sustainable biochemical production.

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