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Microbial Cell (Graz, Austria)|November 3, 2018
The biosynthesis of pyoverdinesMichael T Ringel, Thomas BrüserThe Journal of Biological Chemistry|December 7, 2017
PvdO is required for the oxidation of dihydropyoverdine as the last step of fluorophore formation in <i>Pseudomonas fluorescens</i>Michael T Ringel, Gerald Dräger, Thomas BrüserThe Journal of Biological Chemistry|September 16, 2017
The periplasmic transaminase PtaA of <i>Pseudomonas fluorescens</i> converts the glutamic acid residue at the pyoverdine fluorophore to α-ketoglutaric acidMichael T Ringel, Gerald Dräger, Thomas BrüserThe Journal of Biological Chemistry|October 6, 2016
PvdN Enzyme Catalyzes a Periplasmic Pyoverdine ModificationMichael T Ringel, Gerald Dräger, Thomas BrüserThe Journal of Biological Chemistry|June 28, 2022
PvdM of fluorescent pseudomonads is required for the oxidation of ferribactin by PvdP in periplasmic pyoverdine maturationMichael-Frederick Sugue, Ali Nazmi Burdur, Michael T Ringel, et al.Microbial Biotechnology|January 25, 2021
An unusual overrepresentation of genetic factors related to iron homeostasis in the genome of the fluorescent Pseudomonas sp. ABC1Daniel Valenzuela-Heredia, Carlos Henríquez-Castillo, Raúl Donoso, et al.Applied Microbiology and Biotechnology|May 4, 2007
The twin-arginine translocation system and its capability for protein secretion in biotechnological protein productionThomas BrüserThe Journal of Biological Chemistry|July 9, 2022
TatA and TatB generate a hydrophobic mismatch important for the function and assembly of the Tat translocon in Escherichia coliDenise Mehner-Breitfeld, Michael T Ringel, Daniel Alexander Tichy, et al.Microbial Cell (Graz, Austria)|May 21, 2026
The mechanism of Tat-dependent protein translocationThomas Brüser, Carsten SandersBiomolecular Concepts|May 12, 2015
The Tat-dependent protein translocation pathwayBo Hou, Thomas BrüserPageof 6