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The Journal of Biological Chemistry|December 16, 2003
Soluble CuA domain of cyanobacterial cytochrome c oxidaseMartina Paumann, Borjana Lubura, Günther Regelsberger, et al.
Archives of Biochemistry and Biophysics|February 21, 2018
Posttranslational modification of heme in peroxidases - Impact on structure and catalysisAndrea Nicolussi, Markus Auer, Benjamin Sevcnikar, et al.
FEBS Letters|October 12, 2004
Kinetics of interprotein electron transfer between cytochrome c6 and the soluble CuA domain of cyanobacterial cytochrome c oxidaseMartina Paumann, Markus Feichtinger, Margit Bernroitner, et al.
Biochemistry|June 14, 2016
Interaction with the Redox Cofactor MYW and Functional Role of a Mobile Arginine in Eukaryotic Catalase-PeroxidaseBernhard Gasselhuber, Michael M H Graf, Christa Jakopitsch, et al.
The Journal of Biological Chemistry|July 24, 2012
High conformational stability of secreted eukaryotic catalase-peroxidases: answers from first crystal structure and unfolding studiesMarcel Zámocký, Queralt García-Fernández, Bernhard Gasselhuber, et al.
Biochemistry|February 15, 2021
Arresting the Catalytic Arginine in Chlorite Dismutases: Impact on Heme Coordination, Thermal Stability, and CatalysisDaniel Schmidt, Ilenia Serra, Georg Mlynek, et al.
Biochimica Et Biophysica Acta. Proteins and Proteomics|July 12, 2019
Monomeric and homotrimeric solution structures of truncated human peroxidasin 1 variantsMartina Paumann-Page, Rupert Tscheliessnig, Benjamin Sevcnikar, et al.
Free Radical Biology & Medicine|November 4, 2017
Mechanisms of myeloperoxidase catalyzed oxidation of H<sub>2</sub>S by H<sub>2</sub>O<sub>2</sub> or O<sub>2</sub> to produce potent protein Cys-polysulfide-inducing speciesDorottya Garai, Bessie B Ríos-González, Paul G Furtmüller, et al.
Archives of Biochemistry and Biophysics|June 3, 2020
The leucine-rich repeat domain of human peroxidasin 1 promotes binding to laminin in basement membranesBenjamin Sevcnikar, Irene Schaffner, Christine Y Chuang, et al.
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