NACH OBEN

Publikationen (CESAR)

 

Sagurna, L., Heinrich, S., Kaufmann, L.-S., Rückert, C., Busche, T., Wolf, A., Eickhoff, J., Klebl, B., Kalinowski, J., Bandow, J.E. (2023) Characterization of the antibacterial activity of quinone-based compounds originating from the alnumycin biosynthetic gene cluster of a Streptomyces isolate. Antibiotics, 12,1116.


Schäkermann, S., Dietze, P., Bandow, J.E. (2023) Label-free quantitation of ribosomal proteins from Bacillus subtilis for antibiotic research. Methods Mol Biol, 2601,363-378.


Senges, C.H.R. & Bandow, J.E. (2023) Elemental analysis for the characterization of antimicrobial effects. Methods Mol Biol, 2601,349-361.


Senges, C.H.R., Warmut, H.L., Vázquez-Hernández M., Sagurna, L., Dietze, P., Schmidt, C., Mücher, B., Herlitze, S., Krämer, U., Ott, I., Günther Pomorski, T., Bandow, J.E. (2022) Effects of 4-Br-A23187 on Bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophor. Proteomics, 22 (17), e2200061.


Steinke, T., Wonner, P., Gauld, R.M., Heinrich, S., Huber, S.M. (2022) Catalytic activation by chalcogen bond donors in a povarov [4+2] cycloaddiction reaction. Chem Eur J, 28, e20220917.


Uzun, H.D., Vázquez-Hernández M., Bandow, J.E., Günther Pomorski, T.(2022) In vitro assay to evaluate cation transport of ionophores. Bio-protocol, 12 (22), e4552.


Wüllner, D., Gesper, M., Haupt, A., Liang, X., Zhou, P., Dietze, P., Narberhaus, F., Bandow, J.E. (2022) Adaptive responses of Pseudomonas aeruginosa to treatment with antibiotics. Antimicrobial Agents and Chemotherapy, 66 (1), e0087821


Beyer, C. D., Thavalingam S., Guseva, T., Schardt, L., Zimmermann, R., Werner, C., Dietze, P., Bandow, J. E., Metzler-Nolte, N. & Rosenhahn, A. (2021) Zwitterionic peptides reduce accumulation of marine and freshwater biofilm formers. ACS Applied Materials & Interfaces, 13, 49682-91.


Burmeister, H., Dietze, P., Preu, L., Bandow, J., & Ott, I. (2021) Evaluation of ruthenium(II) N-heterocyclic carbene complexes as antibacterial agents and inhibitors of bacterial thioredoxin reductase. Molecules26 (14), 1–9.


König, G., Sokkar, P., Pryk, N., Heinrich, S., Möller, D., Cimicata, G., Matzov, D., Dietze, P., Thiel, W., Bashan, A., Bandow, J., Zuegg, J., Yonath, A., Schulz, F., & Sánchez García, E. (2021) Rational prioritization strategy allows the design of macrolide derivatives that overcome antibiotic resistance. Proceedings of the National Academy of Sciences of the United States of America118(46), e2113632118.


Schäkermann, S., Wüllner, D., Yayci, A., Emili, A. & Bandow, J. E. (2021) Applicability of chromatographic co-elution for antibiotic target identification. Proteomics21(1), 1–5.


Senges, C. H. R., Stepanek, J. J., Wenzel, M., Raatschen, N., Ay, Ü., Märtens, Y., Prochnow, P., Vázquez Hernández, M., Yayci, A., Schubert, B., Janzing, N. B. M., Warmuth, H. L., Kozik, M., Bongard, J., Alumasa, J. N., Albada, B., Penkova, M., Lukežič, T., Sorto, N. A., Lorenz, N., Miller, R., Zhu, B., Benda, M., Stülke, J., Schäkermann, S., Leichert, L. I., Scheinpflug, K., Brötz-Oesterhelt, H., Hertweck, C., Shaw, J. T., Petković, H., Brunel, J. M., Keiler, K. C., Metzler-Nolte, N. & Bandow, J. E. (2020) Comparison of proteomic responses as global approach to antibiotic mechanism of action elucidation. Antimicrobial Agents and Chemotherapy65(1), 1–33.

Publikationen LS Angewandte Mikrobiologie

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