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Computer simulation and SERR detection of cytochrome c dynamics at SAM-coated electrodes
Authors:Damiá  n Alvarez Paggi,Anja Kranich,Marcelo A. Martí  ,Daniel H. Murgida
Affiliation:a Departamento de Química Inorgánica, Analítica y Química Física/INQUIMAE-CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Pab. 2, piso 1, C1428EHA Buenos Aires, Argentina
b Institut für Chemie, Technische Universität Berlin, Str. des 17, Juni 135, Sekr. PC14, D-10623 Berlin, Germany
Abstract:In this paper we present a combined experimental and theoretical study of the heterogeneous electron transfer reaction of cytochrome c electrostatically adsorbed on metal electrodes coated with monolayers of 6-mercaptohexanoic acid. Molecular dynamics simulations and pathways calculations show that adsorption of the protein leads to a broad distribution of orientations and, thus, to a correspondingly broad distribution of electron transfer rate constants due to the orientation-dependence of the electronic coupling parameter. The adsorbed protein exhibits significant mobility and, therefore, the measured reaction rate is predicted to be a convolution of protein dynamics and tunnelling probabilities for each orientation. This prediction is confirmed by time-resolved surface enhanced resonance Raman which allows for the direct monitoring of protein (re-)orientation and electron transfer of the immobilised cytochrome c. The results provide a consistent explanation for the non-exponential distance-independence of electron transfer rates usually observed for proteins immobilized on electrodes.
Keywords:Protein electron transfer   SERR   Cytochrome c   Molecular dynamics   Self-assembled monolayers
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