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Updated: Sep 13, 2025

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Published on: December 6, 2021
Coherent Electron Transfer in Cytochrome Nanowires at 300 K
William W Parson1, Peter J Dahl2,3, Nikhil S Malvankar2,3
1Dept. of Biochemistry, University of Washington, Seattle, Washington 98105, United States.
Abstract:
Electron transfer in cytochrome OmcZ and OmcS "nanowires" is explored computationally by integrating the quantum-mechanical stochastic Liouville equation with fluctuating energies and interaction matrix elements obtained from molecular-dynamics simulations and including a detailed treatment of vibronic coupling. Electron density oscillates between adjacent hemes very rapidly relative to thermal equilibration. These oscillations last for about 1.5 ns, which is long enough for a coherent wave of electron density to travel ∼60 Å, more than the length of the proteins' subunits. The calculated rates of electron flow underestimate the measured rates but reproduce the finding that long-range diffusion of electrons is significantly faster in OmcZ than in OmcS.
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