Marine Proteobacteria metabolize glycolate via the β-hydroxyaspartate cycle
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DOI: 10.1038/s41586-019-1748-4
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- Enrico Orsi & Helena Schulz-Mirbach & Charles A. R. Cotton & Ari Satanowski & Henrik M. Petri & Susanne L. Arnold & Natalia Grabarczyk & Rutger Verbakel & Karsten S. Jensen & Stefano Donati & Nicole P, 2025. "Computation-aided designs enable developing auxotrophic metabolic sensors for wide-range glyoxylate and glycolate detection," Nature Communications, Nature, vol. 16(1), pages 1-16, December.
- Minrui Ren & Danni Li & Holly Addison & Willem E. M. Noteborn & Elisabeth H. Andeweg & Timo Glatter & Johannes H. Winde & Johannes G. Rebelein & Meindert H. Lamers & Lennart Schada von Borzyskowski, 2025. "NAD-dependent dehydrogenases enable efficient growth of Paracoccus denitrificans on the PET monomer ethylene glycol," Nature Communications, Nature, vol. 16(1), pages 1-15, December.
- Ousmane Dao & Marie Bertrand & Saleh Alseekh & Florian Veillet & Pascaline Auroy & Phuong-Chi Nguyen & Bertrand Légeret & Virginie Epting & Amélie Morin & Stephan Cuiné & Caroline L. Monteil & Luke C., 2025. "The green algae CO2 concentrating mechanism and photorespiration jointly operate during acclimation to low CO2," Nature Communications, Nature, vol. 16(1), pages 1-12, December.
- Cláudio J. R. Frazão & Nils Wagner & Kenny Rabe & Thomas Walther, 2023. "Construction of a synthetic metabolic pathway for biosynthesis of 2,4-dihydroxybutyric acid from ethylene glycol," Nature Communications, Nature, vol. 14(1), pages 1-14, December.
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