Zeitschriftenartikel (16)
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9, e54207 (2020)
Underground isoleucine biosynthesis pathways in E. coli. eLife 2.
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10, S. 7512 - 7525 (2020)
In vivo selection for formate dehydrogenases with high efficiency and specificity towards NADP+. ACS Catalysis 3.
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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 4.
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62, S. 30 - 41 (2020)
Replacing the Calvin cycle with the reductive glycine pathway in Cupriavidus necator. Metabolic Engineering 5.
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117 (36), S. 22452 - 22461 (2020)
Phosphoglycolate salvage in a chemolithoautotroph using the Calvin cycle. Proceedings of the National Academy of Sciences of the United States of America 6.
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62, S. 168 - 180 (2020)
Renewable methanol and formate as microbial feedstocks. Current Opinion in Biotechnology 7.
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9, e59882, S. 1 - 57 (2020)
Functional reconstitution of a bacterial co2 concentrating mechanism in E. coli. eLife 8.
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60, S. 1 - 13 (2020)
An optimized methanol assimilation pathway relying on promiscuous formaldehyde-condensing aldolases in E. coli. Metabolic Engineering 9.
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10 (2), 65 (2020)
In Vivo Rate of Formaldehyde Condensation with Tetrahydrofolate. Metabolites 10.
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16 (5), S. 538 - 545 (2020)
Growth of E. coli on formate and methanol via the reductive glycine pathway. Nature Chemical Biology 11.
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287 (1), S. 160 - 172 (2020)
A synthetic glycerol assimilation pathway demonstrates biochemical constraints of cellular metabolism. The FEBS Journal 12.
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477 (9), S. 1745 - 1757 (2020)
Thioproline formation as a driver of formaldehyde toxicity in Escherichia coli. Biochemical Journal 13.
Zeitschriftenartikel
11 (1), 5090 (2020)
The reductive glycine pathway allows autotrophic growth of Desulfovibrio desulfuricans. Nature Communications 14.
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21 (4), e50273 (2020)
A one-carbon path for fixing CO2. EMBO reports 15.
Zeitschriftenartikel
11 (1), 5812 (2020)
Awakening a latent carbon fixation cycle in Escherichia coli. Nature Communications 16.
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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