Ostermeier, C.; Harrenga, A.; Ermler, U.; Michel, H.: Structure at 2.7 Å resolution of the Paracoccus denitrificans two subunit cytochrome c oxidase complexed with an antibody Fv fragment. Proceedings of the National Academy of Sciences of the United States of America 94 (20), pp. 10547 - 10553 (1997)
Ostermeier, C.; Michel, H.: Improved Cloning of Antibody Variable Regions From Hybridomas by an Antisense-Directed RNase H Digestion of the P3-X63-Ag8.653 Derived Pseudogene mRNA. Nucleic Acids Research (London) 24 (10), pp. 1979 - 1980 (1996)
Hellwig, P.; Rost, B.; Kaiser, U.; Ostermeier, C.; Michel, H.; Mäntele, W.: Carboxyl group protonation upon reduction of the Paracoccus denitrificans cytochrome c oxidase: direct evidence by FTIR spectroscopy. FEBS Letters 385 (1-2), pp. 53 - 57 (1996)
Iwata, S.; Ostermeier, C.; Ludwig, B.; Michel, H.: Structure at 2.8 Å resolution of cytochrome c oxidase from Paracoccus denitrificans. Nature 376 (6542), pp. 660 - 669 (1995)
Kleymann, G.; Ostermeier, C.; Ludwig, B.; Skerra, A.; Michel, H.: Engineered Fv Fragments as a Tool for the One-Step Purification of Integral Multisubunit Membrane Protein Complexes. Nature Biotechnology 155, pp. 155 - 160 (1995)
Ostermeier, C.; Essen, L.-O.; Michel, H.: Crystals of an antibody FV fragment against an integral membrane protein diffracting to 1.28 Å resolution. Proteins: Structure, Function, and Bioinformatics 21, pp. 74 - 77 (1995)
Araníbar, N.; Ostermeier, C.; Legrum, B.; Rüterjans, H.; Passow, H.: Influence of stilbene disulfonates on the accessibility of the substrate-binding site for anions in the band 3 protein (AEB1). Renal Physiology and Biochemistry 17 (3-4), pp. 187 - 189 (1994)
Ostermeier, C.: Kristallisation des Membranproteinkomplexes Cytchrome c Oxidase mit Hilfe eines Antikkörpers-Fv-Fragmentes. Dissertation, 204 pp., Fachbereich Chemie, Johann Wolfgang Goethe-Universität, Frankfurt am Main (1995)
Ostermeier, C.: Mechanismus der Hemmwirkung von Stilbendisulfonaten auf den Anionentransport durch die Membran menschlicher, roter Blutkörperchen. Diploma, Johann Wolfgang Goethe-Universität, Frankfurt am Main (1991)
Researchers at the Max Planck Institute of Biophysics and the University of Cologne developed a new optical tool to study ferroptosis, a form of iron-driven cell death. Better understanding of how it spreads could open doors to new therapies.
On February 5, 2024, we participated in the “Frankfurt Stands Up for Democracy” demonstration, standing alongside nearly 20,000 participants representing over 100 institutions, organizations, and companies across the Frankfurt region.
The Max Planck Institute of Biophysics is part of the new science network Frankfurt Alliance together with 15 other research institutions in the Rhine-Main metropolitan area
The fellow program promotes cooperation between Max Planck Institutes and outstanding professors at universities. From March 2024, Müller-McNicoll will lead a small research group at the MPI in Frankfurt for five years to investigate RNA, the carrier of genetic information in the cell, and its regulation.