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Fabian Rabe von Pappenheim

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Trends in Biochemical Sciences|April 15, 2022
Lysines and cysteines: partners in stress?Fabian Rabe von Pappenheim, Kai Tittmann
Methods in Enzymology|November 7, 2025
Biophysical and structural studies on transketolasesFabian Rabe von Pappenheim, Kai Tittmann
Current Opinion in Structural Biology|August 21, 2022
Frontiers in the enzymology of thiamin diphosphate-dependent enzymesSabin Prajapati, Fabian Rabe von Pappenheim, Kai Tittmann
The 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 B<sub>1</sub> 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 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Trends in Biochemical Sciences|April 15, 2022
Lysines and cysteines: partners in stress?Fabian Rabe von Pappenheim, Kai Tittmann
Methods in Enzymology|November 7, 2025
Biophysical and structural studies on transketolasesFabian Rabe von Pappenheim, Kai Tittmann
Current Opinion in Structural Biology|August 21, 2022
Frontiers in the enzymology of thiamin diphosphate-dependent enzymesSabin Prajapati, Fabian Rabe von Pappenheim, Kai Tittmann
The 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 B<sub>1</sub> 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 2