Publikationen von S. N. Lindner
Alle Typen
Zeitschriftenartikel (25)
1.
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76, S. 97 - 109 (2023)
Implementation of the β-hydroxyaspartate cycle increases growth performance of Pseudomonas putida on the PET monomer ethylene glycol. Metabolic Engineering 2.
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11, 1091899 (2023)
Optimizing E. coli as a formatotrophic platform for bioproduction via the reductive glycine pathway. Frontiers in Bioengineering and Biotechnology 3.
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14, 8490 (2023)
Engineering a synthetic energy-efficient formaldehyde assimilation cycle in Escherichia coli. Nature Communications 4.
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11, e77492 (2022)
On the flexibility of the cellular amination network in E. coli. eLife 5.
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30, 100417 (2022)
Synthetic metabolism approaches: A valuable resource for systems biology. Current Opinion in Systems Biology 6.
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2022, 9859643 (2022)
Activating Silent Glycolysis Bypasses in Escherichia coli. BioDesign Research 7.
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74, S. 154 - 163 (2022)
Coupling electrochemical CO2 reduction to microbial product generation – identification of the gaps and opportunities. Current Opinion in Biotechnology 8.
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119 (8), e2116871119 (2022)
Toward a glycyl radical enzyme containing synthetic bacterial microcompartment to produce pyruvate from formate and acetate. Proceedings of the National Academy of Sciences of the United States of America 9.
Zeitschriftenartikel
12 (1), 5295 (2021)
Growth-coupled selection of synthetic modules to accelerate cell factory development. Nature Communications 10.
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12 (4), e00329-21 (2021)
Change in cofactor specificity of oxidoreductases by adaptive evolution of an escherichia coli nadph-auxotrophic strain. mBio 11.
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9, 669093 (2021)
Evolving a New Efficient Mode of Fructose Utilization for Improved Bioproduction in Corynebacterium glutamicum. Frontiers in Bioengineering and Biotechnology 12.
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9, e54207 (2020)
Underground isoleucine biosynthesis pathways in E. coli. eLife 13.
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10, S. 7512 - 7525 (2020)
In vivo selection for formate dehydrogenases with high efficiency and specificity towards NADP+. ACS Catalysis 14.
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57, S. 96 - 109 (2020)
Design and engineering of E. coli metabolic sensor strains with a wide sensitivity range for glycerate. Metabolic Engineering 15.
Zeitschriftenartikel
16 (5), S. 538 - 545 (2020)
Growth of E. coli on formate and methanol via the reductive glycine pathway. Nature Chemical Biology 16.
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287 (1), S. 160 - 172 (2020)
A synthetic glycerol assimilation pathway demonstrates biochemical constraints of cellular metabolism. The FEBS Journal 17.
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11 (1), 5812 (2020)
Awakening a latent carbon fixation cycle in Escherichia coli. Nature Communications 18.
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11, 1650 (2020)
Expression of Formate-Tetrahydrofolate Ligase Did Not Improve Growth but Interferes With Nitrogen and Carbon Metabolism of Synechocystissp. PCC 6803. Frontiers in Microbiology 19.
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117 (11), S. 3422 - 3434 (2020)
An “energy-auxotroph” E. coli provides an in vivo platform for assessing NADH regeneration systems. Biotechnology and Bioengineering 20.
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7 (6), S. 1601 - 1611 (2018)
Ribulose Monophosphate Shunt Provides Nearly All Biomass and Energy Required for Growth of E. coli. ACS Synthetic Biology