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Reversible Active Site Sulfoxygenation Can Explain the Oxygen Tolerance of a NAD(+)-Reducing [NiFe] Hydrogenase and Its Unusual Infrared Spectroscopic Properties

Horch, M., Lauterbach, L., Mroginski, M. A., Hildebrandt, P., Lenz, O. and Zebger, I.

Journal of the American Chemical Society 137, 2555–2564. 2015

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Metal-induced histidine deprotonation in biocatalysis? Experimental and theoretical insights into superoxide reductase

Horch, M., Pinto, A. F., Mroginski, M. A., Teixeira, M., Hildebrandt, P. and Zebger, I.

Rsc Advances 4, 54091–54095. 2014

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Reductive activation and structural rearrangement in superoxide reductase: a combined infrared spectroscopic and computational study

Horch, M., Pinto, A. F., Utesch, T., Mroginski, M. A., Romao, C. V., Teixeira, M., Hildebrandt, P. and Zebger, I.

Physical Chemistry Chemical Physics 16, 14220–14230. 2014

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Resonance Raman Spectroscopy on [NiFe] Hydrogenase Provides Structural Insights into Catalytic Intermediates and Reactions

Horch, M., Schoknecht, J., Mroginski, M. A., Lenz, O., Hildebrandt, P. and Zebger, I.

Journal of the American Chemical Society 136, 9870–9873. 2014

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Domain motions and electron transfer dynamics in 2Fe-superoxide reductase

Horch, M., Utesch, T., Hildebrandt, P., Mroginski, M. A. and Zebger, I.

Phys. Chem. Chem. Phys. 18, 23053-23066. 2016

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Voltage sensitive phosphatases as tools to generate molecular switches with defined substrate specificities

Hobiger, K., Halaszovich, C. R., Utesch, T., Mroginski, M. A. and Oliver, D.

Acta Physiologica 216 2016

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Coupling of Ci-VSP Modules Requires a Combination of Structure and Electrostatics within the Linker

Hobiger, K., Utesch, T., Mroginski, M. A. and Friedrich, T.

BIOPHYSICAL JOURNAL 102, 1313-1322. 2012

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The Linker Pivot in Ci-VSP: The Key to Unlock Catalysis

Hobiger, ,. K. A. U. ,. T. A. M. ,. M. A. A. S. ,. G. A. F. ,. T.

PLoS ONE 8, e70272. 2013

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Spectroscopic, Structural, and Conformational Properties of (Z)-4,4, 4-Trifluoro-3-(2-hydroxyethylamino)-1-(2-hydroxypheny1)-2-buten-1-one, C12H12F3NO3: A Trifluoromethyl-Substituted beta-Aminoenone

Hidalgo, A., Avendano Jimenez, L. P., Ramos, L. A., Mroginski, M. A., Jios, J. L., Ulic, S. E., Echeverria, G. A., Piro, O. E. and Castellano, E.

JOURNAL OF PHYSICAL CHEMISTRY A 116, 1110-1118. 2012

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