Publications of Niklas Steube

Journal Article (4)

2024
Journal Article
Jakob, Sara, Steinchen, Wieland, Hanßmann, Juri, Rosum, Julia, Langenfeld, Katja, Osorio-Valeriano, Manuel, Steube, Niklas, Giammarinaro, Pietro I., Hochberg, Georg K. A., Glatter, Timo, Bange, Gert, Diepold, Andreas and Thanbichler, Martin: (2024) The virulence regulator VirB from Shigella flexneri uses a CTP-dependent switch mechanism to activate gene expression, Nature Communications, London, Nature Publishing Group, 15 (1).
2023
Journal Article
Priyadarshini, Nibedita, Steube, Niklas, Wiens, Dennis, Narikawa, Rei, Wilde, Annegret, Hochberg, Georg K. A. and Enomoto, Gen: (2023) Evidence for an early green/red photocycle that precedes the diversification of GAF domain photoreceptor cyanobacteriochromes., Photochemical & Photobiological Sciences, Cambridge, UK, Royal Society of Chemistry, 22, pp. 1415–1427.
Journal Article
Steube, Niklas, Moldenhauer, Marcus, Weiland, Paul, Saman, Dominik, Kilb, Alexandra, Ramírez Rojas, Adán Andrés, Garg, Sriram, Schindler, Daniel, Graumann, Peter L., Benesch, Justin L. P., Bange, Gert, Friedrich, Thomas and Hochberg, Georg K. A.: (2023) Fortuitously compatible protein surfaces primed allosteric control in cyanobacterial photoprotection, Nature Ecology & Evolution, London, Nature Publishing Group, 7, pp. 756–767.
2022
Journal Article
Hernandez-Tamayo, Rogelio, Steube, Niklas, Heimerl, Thomas, Hochberg, Georg K. A. and Graumann, Peter L: (2022) ATPase activity of Bacillus subtilis RecA affects the dynamic formation of RecA filaments at DNA double strand breaks., mSphere, Washington, DC, American Society for Microbiology, 7 (6).

Working Paper (1)

2023
Working Paper
Steube, Niklas and Moldenhauer, Marcus: (2023) Accidental surface compatibility paved the way for a new molecular interaction, Nature Ecology & Evolution, London, Nature Publishing Group.

Preprint (1)

2022
Preprint
Hernández-Tamayo, Rogelio, Steube, Niklas, Heimerl, Thomas, Hochberg, Georg K. A. and Graumann, Peter L.: (2022) ATPase activity of B. subtilis RecA affects the dynamic formation of RecA filaments at DNA double strand breaks, bioRxiv: the preprint server for biology.
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