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Improvement of cis,cis-Muconic Acid Production in Saccharomyces cerevisiae through Biosensor-Aided Genome Engineering

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논문

Improvement of cis,cis-Muconic Acid Production in Saccharomyces cerevisiae through Biosensor-Aided Genome Engineering

학술지

ACS Synthetic biology

저자명

Wang, Guokun; Øzmerih, Sü leyman; Guerreiro, Rogé rio; Meireles, Ana C.; Carolas, Ana; Milne, Nicholas; Jensen, Michael K.; Ferreira, Bruno S.; Borodina, Irina

초록

<P>Muconic acid is a potential platform chemical for the production of nylon, polyurethanes, and terephthalic acid. It is also an attractive functional copolymer in plastics due to its two double bonds. At this time, no economically viable process for the production of muconic acid exists. To harness novel genetic targets for improved production of <I>cis,cis</I>-muconic acid (CCM) in the yeast <I>Saccharomyces cerevisiae</I>, we employed a CCM-biosensor coupled to GFP expression with a broad dynamic response to screen UV-mutagenesis libraries of CCM-producing yeast. Via fluorescence activated cell sorting we identified a clone Mut131 with a 49.7% higher CCM titer and 164% higher titer of biosynthetic intermediate-protocatechuic acid (PCA). Genome resequencing of the Mut131 and reverse engineering identified seven causal missense mutations of the native genes (<I>PWP2</I>, <I>EST2</I>, <I>ATG1</I>, <I>DIT1</I>, <I>CDC15</I>, <I>CTS2</I>, and <I>MNE1</I>) and a duplication of two CCM biosynthetic genes, encoding dehydroshikimate dehydratase and catechol 1,2-dioxygenase, which were not recognized as flux controlling before. The Mut131 strain was further rationally engineered by overexpression of the genes encoding for PCA decarboxylase and AROM protein without shikimate dehydrogenase domain (Aro1p<SUP>&Delta;E</SUP>), and by restoring <I>URA3</I> prototrophy. The resulting engineered strain produced 20.8 g/L CCM in controlled fed-batch fermentation, with a yield of 66.2 mg/g glucose and a productivity of 139 mg/L/h, representing the highest reported performance metrics in a yeast for <I>de novo</I> CCM production to date and the highest production of an aromatic compound in yeast. The study illustrates the benefit of biosensor-based selection and brings closer the prospect of biobased muconic acid.</P><BR>[FIG OMISSION]</BR>

발행연도

2020

발행기관

American Chemical Society

ISSN

2161-5063

9

3

페이지

pp.634-646

주제어

biosensor; muconic acid; mutagenesis; Saccharomyces cerevisiae; reverse engineering

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1 2023-12-11

논문; 2020-12-31

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