Marcus Galander
Technical University of Berlin
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Marcus Galander.
Proceedings of the National Academy of Sciences of the United States of America | 2003
Martin Högbom; Marcus Galander; Martin Andersson; Matthias Kolberg; Wulf Hofbauer; Günter Lassmann; Pär Nordlund; Friedhelm Lendzian
The R2 protein of class I ribonucleotide reductase generates and stores a tyrosyl radical essential for ribonucleotide reduction and, thus, DNA synthesis. X-ray structures of the protein have enabled detailed mechanistic suggestions, but no structural information has been available for the active radical-containing state of the protein. Here we report on methods to generate the functional tyrosyl radical in single crystals of R2 from Escherichia coli (Y122•). We further report on subsequent high-field EPR experiments on the radical-containing crystals. A full rotational pattern of the spectra was collected and the orientation of the g-tensor axes were determined, which directly reflect the orientation of the radical in the crystal frame. The EPR data are discussed in comparison with a 1.42-Å x-ray structure of the met (oxidized) form of the protein, also presented in this paper. Comparison of the orientation of the radical Y122• obtained from high-field EPR with that of the reduced tyrosine Y122-OH reveals a significant rotation of the tyrosyl side chain, away from the diiron center, in the active radical state. Implications for the radical transfer connecting the diiron site in R2 with the substrate-binding site in R1 are discussed. In addition, the present study demonstrates that structural and functional information about active radical states can be obtained by combined x-ray and high-field EPR crystallography.
Biological Chemistry | 2005
Christiane Jung; V. Schünemann; Friedhelm Lendzian; Alfred X. Trautwein; Jörg Contzen; Marcus Galander; Lars H. Böttger; Matthias Richter; Anne-Laure Barra
Abstract From analogy to chloroperoxidase from Caldariomyces fumago, it is believed that the electronic structure of the intermediate iron-oxo species in the catalytic cycle of cytochrome P450 corresponds to an iron(IV) porphyrin-π-cation radical (compound I). However, our recent studies on P450cam revealed that after 8 ms a tyrosine radical and iron(IV) were formed in the reaction of ferric P450 with external oxidants in the shunt pathway. The present study on the heme domain of P450BM3 (P450BMP) shows a similar result. In addition to a tyrosine radical, a contribution from a tryptophan radical was found in the electron paramagnetic resonance (EPR) spectra of P450BMP. Here we present comparative multi-frequency EPR (9.6, 94 and 285 GHz) and Mössbauer spectroscopic studies on freeze-quenched intermediates produced using peroxy acetic acid as oxidant for both P450 cytochromes. After 8 ms in both systems, amino acid radicals occurred instead of the proposed iron(IV) porphyrin-π-cation radical, which may be transiently formed on a much faster time scale. These findings are discussed with respect to other heme thiolate proteins. Our studies demonstrate that intramolecular electron transfer from aromatic amino acids is a common feature in these enzymes. The electron transfer quenches the presumably transiently formed porphyrin-π-cation radical, which makes it extremely difficult to trap compound I.
Journal of Biological Chemistry | 2006
Marcus Galander; Malin Uppsten; Ulla Uhlin; Friedhelm Lendzian
The R2 protein of class I ribonucleotide reductase (RNR) generates and stores a tyrosyl radical, located next to a diferric iron center, which is essential for ribonucleotide reduction and thus DNA synthesis. X-ray structures of class Ia and Ib proteins from various organisms served as bases for detailed mechanistic suggestions. The active site tyrosine in R2F of class Ib RNR of Salmonella typhimurium is located at larger distance to the diiron site, and shows a different side chain orientation, as compared with the tyrosine in R2 of class Ia RNR from Escherichia coli.No structural information has been available for the active tyrosyl radical in R2F. Here we report on high field EPR experiments of single crystals of R2F from S. typhimurium, containing the radical Tyr-105.. Full rotational pattern of the spectra were recorded, and the orientation of the g-tensor axes were determined, which directly reflect the orientation of the radical Tyr-105. in the crystal frame. Comparison with the orientation of the reduced tyrosine Tyr-105-OH from the x-ray structure reveals a rotation of the tyrosyl side chain, which reduces the distance between the tyrosyl radical and the nearest iron ligands toward similar values as observed earlier for Tyr-122. in E. coli R2. Presence of the substrate binding subunit R1E did not change the EPR spectra of Tyr-105., indicating that binding of R2E alone induces no structural change of the diiron site. The present study demonstrates that structural and functional information about active radical states can be obtained by combining x-ray and high-field-EPR crystallography.
Journal of the American Chemical Society | 2005
Tanja Burgdorf; Simone Löscher; Peter Liebisch; Eddy van der Linden; Marcus Galander; Friedhelm Lendzian; Wolfram Meyer-Klaucke; Simon P. J. Albracht; Bärbel Friedrich; Holger Dau; Michael Haumann
Biochimica et Biophysica Acta | 2007
Nina Voevodskaya; Marcus Galander; Martin Högbom; Pål Stenmark; Grant McClarty; Astrid Gräslund; Friedhelm Lendzian
Magnetic Resonance in Chemistry | 2005
Christiane Jung; Friedhelm Lendzian; V. Schünemann; M. Richter; Lars H. Böttger; Alfred X. Trautwein; Jörg Contzen; Marcus Galander; D. K. Ghosh; Anne-Laure Barra
Biochemistry | 2006
Andrei S. Halavaty; Jürgen J. Müller; Jörg Contzen; Christiane Jung; Frank Hannemann; Rita Bernhardt; Marcus Galander; Friedhelm Lendzian; Udo Heinemann
Archive | 2007
F. Lendzian; Nina Voevodskaya; Marcus Galander; Martin Högbom; Astrid Gräslund
Archive | 2005
Nina Voevodskaya; Marcus Galander; Grant McClarty; Astrid Gräslund; F. Lendzian
Astronomy and Astrophysics | 2005
Tanja Burgdorf; Simone Löscher; Peter Liebisch; Linden van der H. P; Marcus Galander; Friedhelm Lendzian; Wolfram Meyer-Klaucke; Simon P. J. Albracht; Bretislav Friedrich; Holger Dau; Michael Haumann