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Trends in Biochemical Sciences|April 15, 2022
Lysines and cysteines: partners in stress?Fabian Rabe von Pappenheim, Kai TittmannMethods in Enzymology|November 7, 2025
Biophysical and structural studies on transketolasesFabian Rabe von Pappenheim, Kai TittmannCurrent Opinion in Structural Biology|August 21, 2022
Frontiers in the enzymology of thiamin diphosphate-dependent enzymesSabin Prajapati, Fabian Rabe von Pappenheim, Kai TittmannThe Journal of Physical Chemistry. B|September 25, 2023
Dynamic Protonation States Underlie Carbene Formation in ThDP-Dependent Enzymes: A Theoretical StudyJon Uranga, Fabian Rabe von Pappenheim, Kai Tittmann, et al.Nature Chemical Biology|August 26, 2020
Structural basis for antibiotic action of the B1 antivitamin 2'-methoxy-thiamineFabian Rabe von Pappenheim, Matteo Aldeghi, Brateen Shome, et al.Nature Communications|January 11, 2025
Molecular basis for the enzymatic inactivity of class III glutaredoxin ROXY9 on standard glutathionylated substratesPascal Mrozek, Stephan Grunewald, Katrin Treffon, et al.Angewandte Chemie (International Ed. in English)|June 14, 2024
Identification and Characterization of Thiamine Diphosphate-Dependent Lyases with an Unusual CDG MotifLucrezia Lanza, Fabian Rabe von Pappenheim, Daniela Bjarnesen, et al.Nature|September 20, 2019
Low-barrier hydrogen bonds in enzyme cooperativityShaobo Dai, Lisa-Marie Funk, Fabian Rabe von Pappenheim, et al.Nature Chemical Biology|February 15, 2022
Widespread occurrence of covalent lysine-cysteine redox switches in proteinsFabian Rabe von Pappenheim, Marie Wensien, Jin Ye, et al.Nature|May 6, 2021
A lysine-cysteine redox switch with an NOS bridge regulates enzyme functionMarie Wensien, Fabian Rabe von Pappenheim, Lisa-Marie Funk, et al.Pageof 8