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Industrializing a Bacterial Strain for L-Serine Production through Translation Initiation Optimization

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논문

Industrializing a Bacterial Strain for L-Serine Production through Translation Initiation Optimization

학술지

ACS Synthetic biology

저자명

Rennig, Maja; Mundhada, Hemanshu; Wordofa, Gossa G.; Gerngross, Daniel; Wulff, Tune; Worberg, Andreas; Nielsen, Alex T.; Nørholm, Morten H. H.

초록

<P>Turning a proof-of-concept synthetic biology design into a robust, high performing cell factory is a major time and money consuming task, which severely limits the growth of the white biotechnology sector. Here, we extend the use of tunable antibiotic resistance markers for synthetic evolution (TARSyn), a workflow for screening translation initiation region (TIR) libraries with antibiotic selection, to generic pathway engineering, and transform a proof-of-concept synbio design into a process that performs at industrially relevant levels. Using a combination of rational design and adaptive evolution, we recently engineered a high-performing bacterial strain for production of the important building block biochemical <SMALL>L</SMALL>-serine, based on two high-copy pET vectors facilitating expression of the serine biosynthetic genes <I>serA</I>, <I>serC</I>, and <I>serB</I> from three independent transcriptional units. Here, we prepare the bacterial strain for industrial scale up by transferring and reconfiguring the three genes into an operon encoded on a single low-copy plasmid. Not surprisingly, this initially reduces production titers considerably. We use TARSyn to screen both experimental and computational optimization designs resulting in high-performing synthetic serine operons and reach industrially relevant production levels of 50 g/L in fed-batch fermentations, the highest reported so far for serine production.</P><BR>[FIG OMISSION]</BR>

발행연도

2019

발행기관

American Chemical Society

ISSN

2161-5063

8

10

페이지

pp.2347-2358

주제어

gene expression library; operon optimization; selection system; l-serine; fed-batch fermentation; white biotechnology

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1 2023-12-11

논문; 2019-12-31

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