Grund, T. N.; Kabashima, Y.; Kusumoto, T.; Wu, D.; Welsch, S.; Sakamoto, J.; Michel, H.; Safarian, S.: The cryoEM structure of cytochrome bd from C. glutamicum provides novel insights into structural properties of actinobacterial terminal oxidases. Frontiers in Chemistry (2023)
Wu, D.; Grund, T. N.; Welsch, S.; Mills, D.; Michel, M.; Safarian, S.; Michel, H.: Structural basis for amino acid exchange by a human heteromeric amino acid transporter. Proceedings of the National Academy of Sciences of the United States of America 117 (35), 202008111, pp. 21281 - 21287 (2020)
Grund, T. N.: Structural and functional investigations of bd-cytochromes. Dissertation, 192 pp., Fachbereich 14, Biochemie, Chemie und Pharmazie, Johann Wolfgang Goethe-Universität, Frankfurt am Main (2022)
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