Profesores

Daniel H. Murgida
Daniel H. Murgida
Profesor asociado

Investigador principal CONICET

dhmurgida@qi.fcen.uba.ar
  • Formación académica

    Licenciatura en Química, Fac. Cs. Exactas y Naturales, Universidad de Buenos Aires, 1992

    Doctorado en Química, Departamento de Química Orgánica, Fac. Cs. Exactas y Naturales, Universidad de Buenos Aires, 1997

    Postdoctorado, Instituto Max Planck de Radioquímica, Alemania, 1999-2001

  • Áreas de interés

    Biofisicoquímica

    Química Bioinorgánica

    Metaloproteínas

    Transferencia Electrónica

    Espectroscopia y Espectroelectroquímica Raman

  • Docencia

    Grado: Química General e Inorgánica I

    Optativa grado y post-grado: Tópicos de Fisicoquímica en Sistemas Biológicos

  • Publicaciones seleccionadas

    Specific methionine oxidation of cytochrome c in complexes with zwitterionic lipids by hydrogen peroxide: potential implications for apoptosis
    D. A. Capdevila, W. A. Marmisollé, F. Tomasina, V. Demicheli, M. Portela, R. Radi, D. H. Murgida
    Chem. Science 2015, 6, 705-713

    Reversible Switching of Redox Active Molecular Orbitals and Electron Transfer Pathways in CuA Sites
    Zitare, U., Álvarez-Paggi, D., Morgada, M. N., Abriata, L. A., Vila, A. J., Murgida, D. H.
    Angew. Chem. Int. Ed. 2015, 54, 9555-9559

    Coupling of tyrosine deprotonation and axial ligand exchange in nitrocytochrome c
    D. Capdevila, D. Álvarez-Paggi, M. A. Castro, V. Tórtora, V. Demicheli, D. A. Estrín, R. Radi, D. H. Murgida
    Chem. Comm. 2014, 50, 2592-2594

    The role of protein dynamics and thermal fluctuations in regulating cytochrome c / cytochrome c oxidase electron transfer
    D. Álvarez-Paggi, U. Zitare, D. H. Murgida
    BBA-Bioenergetics 2014, 1837, 1196-1207

    Electrostatically-driven second sphere ligand switch between high and low reorganization energy forms of native cytochrome c
    D. Alvarez-Paggi, M. A. Castro, V. Tórtora, L. Castro, R. Radi, D. H. Murgida
    J. Am. Chem. Soc. 2013, 135, 4389-4397

    Native CuA Redox Sites are Largely Resilient to pH Variations within Physiological Range
    D. Alvarez-Paggi, L. A. Abriata, D. H. Murgida*, A. J. Vila
    Chem. Comm. 2013, 49, 5381-5383

    Alternative ground states enable pathway switching in biological electron transfer
    Abriata L. A., Álvarez-Paggi D., Ledesma G. N., Blackburn N. J., Vila A. J., Murgida D. H.
    Proc. Natl. Acad. Sci. USA 2012, 109, 17348-17353

    Molecular Basis of Coupled Protein and Electron Transfer Dynamics of Cytochrome c in Biomimetic Complexes
    Alvarez-Paggi, D., Martín, D. F., De Biase, P. M., Hildebrandt, P., Martí, M. A., Murgida, D. H.
    J. Am. Chem. Soc. 2010, 132, 5769-5778

    Direct Observation of the Gating Step in Protein Electron Transfer: Electric Field Controlled Protein Dynamics
    Kranich, A., Ly, H. K., Hildebrandt, P., Murgida, D. H.
    J. Am. Chem. Soc. 2008, 130, 9844-9848

    Disentangling interfacial redox processes of proteins by SERR spectroscopy
    Murgida, D. H., Hildebrandt, P.
    Chem. Soc. Rev. 2008, 37, 937-945

    The Chromophore Structural Changes in the Photocycle of Phytochrome: a Combined Resonance Raman Spectroscopic and Quantum Chemical Approach
    Mroginski, M. A., Murgida, D. H., Hildebrandt, P.
    Acc. Chem. Res. 2007, 40, 258-266

    Midpoint Potentials of Hemes a and a3 in the Quinol Oxidase from Acidianus ambivalens are Inverted
    Todorovic, S., Bandeiras, T. M., Sousa, F. L., Pereira, M. M., Texeira, M., Hildebrandt, P., Murgida, D. H.
    J. Am. Chem. Soc. 2005, 127, 13561-13566

    Electron Transfer Processes of Cytochrome c at Interfaces. New Insights by Surface-Enhanced Resonance Raman Spectroscopy
    Murgida, D. H., Hildebrandt, P.
    Acc. Chem. Res. 2004, 37, 854-861

    Proton-Coupled Electron Transfer of Cytochrome c
    Murgida, D. H., Hildebrandt, P.
    J. Am. Chem. Soc. 2001, 123, 4062-4068

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