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Biological Chemistry|May 7, 2021
Glutamine synthetase as a central element in hepatic glutamine and ammonia metabolism: novel aspectsBenedikt Frieg, Boris Görg, Holger Gohlke, et al.Chemical Communications (Cambridge, England)|June 9, 2020
Binding modes of thioflavin T and Congo red to the fibril structure of amyloid-β(1-42)Benedikt Frieg, Lothar Gremer, Henrike Heise, et al.Archiv Der Pharmazie|February 6, 2024
Extracting binding energies and binding modes from biomolecular simulations of fragment binding to endothiapepsinBirte Schmitz, Benedikt Frieg, Nadine Homeyer, et al.Plos Computational Biology|February 3, 2016
Molecular Mechanisms of Glutamine Synthetase Mutations that Lead to Clinically Relevant PathologiesBenedikt Frieg, Boris Görg, Nadine Homeyer, et al.EMBO Reports|August 6, 2019
Partially inserted nascent chain unzips the lateral gate of the Sec transloconLukas Kater, Benedikt Frieg, Otto Berninghausen, et al.Journal of Chemical Theory and Computation|June 20, 2020
Mechanism of Fully Reversible, pH-Sensitive Inhibition of Human Glutamine Synthetase by Tyrosine NitrationBenedikt Frieg, Boris Görg, Natalia Qvartskhava, et al.Computational and Structural Biotechnology Journal|August 25, 2021
Aqueous ionic liquids redistribute local enzyme stability via long-range perturbation pathwaysTill El Harrar, Benedikt Frieg, Mehdi D Davari, et al.Scientific Reports|January 5, 2016
Structural basis of lantibiotic recognition by the nisin resistance protein from Streptococcus agalactiaeSakshi Khosa, Benedikt Frieg, Daniel Mulnaes, et al.Bioorganic & Medicinal Chemistry|September 11, 2019
Small-molecule inhibitors of nisin resistance protein NSR from the human pathogen Streptococcus agalactiaeNicola Porta, Julia Zaschke-Kriesche, Benedikt Frieg, et al.Translational Psychiatry|December 18, 2021
Conformational heterogeneity coupled with β-fibril formation of a scaffold protein involved in chronic mental illnessesAbhishek Cukkemane, Nina Becker, Mara Zielinski, et al.Pageof 3