Publications of Niels N. Oehlmann

Journal Article (4)

2024
Journal Article
Oehlmann, N. N.; Schmidt, F. V.; Herzog, M.; Goldman, A. L.; Rebelein, J. G.: The iron nitrogenase reduces carbon dioxide to formate and methane under physiological conditions: A route to feedstock chemicals. Science Advances 10 (33), eado7729 (2024)
Journal Article
Körner, D.; Schäfer, N. M.; Lagares Jr., A.; Birmes, L.; Oehlmann, N. N.; Addison, H. G.; Pöhl, S.; Thanbichler, M.; Rebelein, J. G.; Petersen, J. et al.; Becker, A.: Modular low-copy-number plasmid vectors for Rhodobacterales with extended host range in Alphaproteobacteria. ACS Synthetic Biology 13 (5), pp. 1537 - 1548 (2024)
Journal Article
Schmidt, F. V.; Schulz, L.; Zarzycki, J.; Prinz, S.; Oehlmann, N. N.; Erb, T. J.; Rebelein, J. G.: Structural insights into the iron nitrogenase complex. Nature Structural & Molecular Biology 31 (1), pp. 150 - 158 (2024)
2022
Journal Article
Oehlmann, N. N.; Rebelein, J. G.: The conversion of carbon monoxide and carbon dioxide by nitrogenases. Chembiochem 23, e202100453 (2022)

Book Chapter (1)

2025
Book Chapter
Oehlmann, N. N.; Rebelein, J. G.: Generating site saturation mutagenesis libraries and transferring them to broad host-range plasmids using Golden Gate cloning. In: Golden Gate Cloning. Methods in Molecular Biology, Vol. 2850, pp. 251 - 264 (Ed. Schindler, D.). Humana, New York, NY (2025)

Preprint (3)

2023
Preprint
Oehlmann, N. N.; Schmidt, F. V.; Herzog, M.; Goldman, A. L.; Rebelein, J. G.: CO2 reduction by the iron nitrogenase competes with N2 fixation under physiological conditions. bioRxiv: the preprint server for biology, 2023.11.30.569367 (2023)
Preprint
Oehlmann, N. N.; Rebelein, J. G.: Generating site saturation mutagenesis libraries and transferring them to broad host range plasmids using type IIS restriction enzymes. arXiv, arXiv.2311.00138 (2023)
Preprint
Schmidt, F. V.; Schulz, L.; Zarzycki, J.; Oehlmann, N. N.; Prinz, S.; Erb, T. J.; Rebelein, J. G.: Structural insights into the iron nitrogenase complex. bioRxiv: the preprint server for biology, 2023.05.02.539077 (2023)
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