Resource reallocation in engineered Escherichia coli strains with reduced genomes
Egbert, R.; Chazin-Gray, A.; Nakayasu, E. S.; Eaton, A.; Francis, R.; Auberry, D.; Munoz, N.; Cottam, J.; Zucker, J.; Kumar, N.; Nicora, C.; Mitchell, H.; Kim, Y.-M.; Nelson, W. C.
Show abstract
A major challenge in synthetic biology is properly balancing evolved and engineered functions without compromising microbial fitness. Many microbial proteins are not required for growth in regular laboratory conditions, but it is unclear what fraction of the proteome can be eliminated to increase bioproduction and maintain fitness. Here, we investigated the effects of massive genome reduction in E. coli on the expression level and evolutionary stability of a model biosynthetic pathway to produce the pigment protodeoxyviolacein (PDV). We identified an amino acid metabolism imbalance and compromised growth that were correlated with elimination of genes associated with significant proteome fraction. Proteomic profiling suggested that increased amino acid pools are responsible for an alleviation of fitness defects associated with PDV expression. In addition, all strains with genome reductions that significantly affected the proteome exhibited decreased stability of PDV production compared to the wild-type strain under persistent PDV expression conditions despite the alleviation of fitness defects. These findings exhibit the importance of balancing evolved functions with engineered ones to achieve an optimal balance of fitness and bioproduction.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Implementation of the β-hydroxyaspartate cycle increases growth performance of Pseudomonas putida on the PET monomer ethylene glycol 97%
- Ribo-seq guided design of enhanced protein secretion in Komagataella phaffii 96%
- Evolution guided tolerance engineering of Pseudomonas putida KT2440 for production of the sustainable aviation fuel precursor isoprenol 96%
Similar papers in this journal
- Scalable, methanol-free manufacturing of the SARS-CoV-2 receptor binding domain in engineered Komagataella phaffii 96%
- Improved, scalable, two-stage, autoinduction of recombinant protein expression in E. coli utilizing phosphate depletion. 95%
- Balancing doses of EL222 and light improves optogenetic induction of protein production in Komagataella phaffii 93%
Similar papers in this journal
- Tri-Functional CRISPR Screen Reveals Overexpression of QDR2 and QDR3 Transporters Increase Fumaric Acid Production in Kluyveromyces marxianus 96%
- A broad-host-range CRISPRi toolkit for silencing gene expression in Burkholderia 96%
- Komagataeibacter tool kit (KTK): a modular cloning system for multigene constructs and programmed protein secretion from cellulose producing bacteria 96%
Similar papers in this journal
- Rational engineering of Kluyveromyces marxianus to create a chassis for the production of aromatic products 95%
- Discovery of a high-performance phage-derived promoter/repressor system for probiotic lactobacillus engineering 95%
- Conversion of methionine biosynthesis in E. coli from trans- to direct-sulfurylation enhances extracellular methionine levels 95%
Similar papers in this journal
- Orthogonal chemical genomics approaches reveal genomic targets for increasing anaerobic chemical tolerance in Zymomonas mobilis 94%
- Exploring Proteomes of Robust Yarrowia lipolytica Isolates Cultivated in Biomass Hydrolysate Reveal Key Processes Impacting Mixed Sugar Utilization, Lipid Accumulation, and Degradation 94%
- A high content microscopy screening identifies new genes involved in cell width control in Bacillus subtilis 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.