Elucidating aromatic acid tolerance at low pH inSaccharomyces cerevisiaeusing adaptive laboratory evolution

Author:

Pereira RuiORCID,Mohamed Elsayed T.ORCID,Radi Mohammad S.ORCID,Herrgård Markus J.,Feist Adam M.ORCID,Nielsen JensORCID,Chen YunORCID

Abstract

Toxicity from the external presence or internal production of compounds can reduce the growth and viability of microbial cell factories and compromise productivity. Aromatic compounds are generally toxic for microorganisms, which makes their production in microbial hosts challenging. Here we use adaptive laboratory evolution to generateSaccharomyces cerevisiaemutants tolerant to two aromatic acids, coumaric acid and ferulic acid. The evolution experiments were performed at low pH (3.5) to reproduce conditions typical of industrial processes. Mutant strains tolerant to levels of aromatic acids near the solubility limit were then analyzed by whole genome sequencing, which revealed prevalent point mutations in a transcriptional activator (Aro80) that is responsible for regulating the use of aromatic amino acids as the nitrogen source. Among the genes regulated by Aro80,ESBP6was found to be responsible for increasing tolerance to aromatic acids by exporting them out of the cell. Further examination of the native function of Esbp6 revealed that this transporter can excrete fusel acids (byproducts of aromatic amino acid catabolism) and this role is shared with at least one additional transporter native toS. cerevisiae(Pdr12). Besides conferring tolerance to aromatic acids,ESBP6overexpression was also shown to significantly improve the secretion in coumaric acid production strains. Overall, we showed that regulating the activity of transporters is a major mechanism to improve tolerance to aromatic acids. These findings can be used to modulate the intracellular concentration of aromatic compounds to optimize the excretion of such products while keeping precursor molecules inside the cell.

Funder

the Novo Nordisk Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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