IEEE Transactions on NanoBioscience · 2014 · 28 citations · 19 references
Biophysical ModelingTubulin Resonant FrequenciesCharge TransferBiochemistryNatural SciencesTaxol BindingMacromolecular MachineBiophysical AspectMolecular BiologyTubulin ProteinsResonant Recognition ModelCytoskeletonBiomolecular InteractionMedicineBiophysics
Tubulin proteins were analyzed using the Resonant Recognition Model to predict possible electromagnetic resonances in tubulin and microtubules. We propose that these electromagnetic resonances are caused by charge transfer through the protein molecule. The frequencies of these electromagnetic resonances depend on charge velocity. Using different velocities of charge transfer, we predicted resonant frequencies in different frequency ranges from KHz to THz. These resonant frequencies could be relevant for taxol binding as well as a possible role of microtubules as a macromolecular computer.
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Satyajit Sahu, Subrata Ghosh, Batu Ghosh et al. · Biosensors and Bioelectronics · 2013 · 169 citations · Full text
Biophysical Modeling, Supramolecular Assembly, Atomic Water Channel +8