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Improved production of a heterologous amylase in Saccharomyces cerevisiae by inverse metabolic engineering

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논문

Improved production of a heterologous amylase in Saccharomyces cerevisiae by inverse metabolic engineering

학술지

Applied and environmental microbiology

저자명

Liu, Zihe; Liu, Lifang; Ö sterlund, Tobias; Hou, Jin; Huang, Mingtao; Fagerberg, Linn; Petranovic, Dina; Uhlé n, Mathias; Nielsen, Jens

초록

<P>The increasing demand for industrial enzymes and biopharmaceutical proteins relies on robust production hosts with high protein yield and productivity. Being one of the best-studied model organisms and capable of performing posttranslational modifications, the yeast <I>Saccharomyces cerevisiae</I> is widely used as a cell factory for recombinant protein production. However, many recombinant proteins are produced at only 1% (or less) of the theoretical capacity due to the complexity of the secretory pathway, which has not been fully exploited. In this study, we applied the concept of inverse metabolic engineering to identify novel targets for improving protein secretion. Screening that combined UV-random mutagenesis and selection for growth on starch was performed to find mutant strains producing heterologous amylase 5-fold above the level produced by the reference strain. Genomic mutations that could be associated with higher amylase secretion were identified through whole-genome sequencing. Several single-point mutations, including an S196I point mutation in the <I>VTA1</I> gene coding for a protein involved in vacuolar sorting, were evaluated by introducing these to the starting strain. By applying this modification alone, the amylase secretion could be improved by 35%. As a complement to the identification of genomic variants, transcriptome analysis was also performed in order to understand on a global level the transcriptional changes associated with the improved amylase production caused by UV mutagenesis.</P>

발행연도

2014

발행기관

American Society for Microbiology

ISSN

0099-2240

ISSN

1098-5336

80

17

페이지

pp.5542-5550

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1 2023-12-11

논문; 2014-09-01

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