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Biological Chemistry|May 9, 2026
Mechanistic insights on spatiotemporal control of Ras-signalingClotilde Charrier, Sascha Mrachacz, Sabrina Schulze, et al.Biological Chemistry|August 25, 2021
Post-translational lysine ac(et)ylation in health, ageing and diseaseAnna-Theresa Blasl, Sabrina Schulze, Chuan Qin, et al.Current Protocols|November 8, 2021
Assays to Study Enzymatic and Non-Enzymatic Protein Lysine Acetylation In VitroLeonie G Graf, Robert Vogt, Anna-Theresa Blasl, et al.Mbio|January 18, 2022
Diversification by CofC and Control by CofD Govern Biosynthesis and Evolution of Coenzyme F420 and Its Derivative 3PG-F420Mahmudul Hasan, Sabrina Schulze, Leona Berndt, et al.Frontiers in Microbiology|November 1, 2021
Post-translational Lysine Ac(et)ylation in Bacteria: A Biochemical, Structural, and Synthetic Biological PerspectiveMichael LammersMethods in Molecular Biology (Clifton, N.J.)|February 7, 2018
Expression and Purification of Site-Specifically Lysine-Acetylated and Natively-Folded Proteins for Biophysical InvestigationsMichael LammersProceedings of the National Academy of Sciences of the United States of America|October 9, 2013
Arginine oscillation explains Na+ independence in the substrate/product antiporter CaiTSissy Kalayil, Sabrina Schulze, Werner KühlbrandtJournal of Basic Microbiology|November 24, 2004
The Bacillus megaterium comE locus encodes a functional DNA uptake proteinMichael Lammers, Hannes Nahrstedt, Friedhelm MeinhardtNature Communications|February 23, 2024
Bacteria employ lysine acetylation of transcriptional regulators to adapt gene expression to cellular metabolismMagdalena Kremer, Sabrina Schulze, Nadja Eisenbruch, et al.Advanced Biology|October 29, 2021
Genetic Code Expansion Tools to Study Lysine AcylationPetra Neumann-Staubitz, Michael Lammers, Heinz NeumannPageof 6