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Elastic vibrations in seamless microtubules
Authors:S. Portet  J. A. Tuszyński  C. W. V. Hogue  J. M. Dixon
Affiliation:(1) The Samuel Lunenfeld Research Institute, Room 1060, Mount Sinai Hospital, 600 Univercity Avenue, Toronto, ON, Canada, M5G 1X5;(2) Department of Physics, University of Alberta, Edmonton, AB, Canada, T6G 2J1;(3) Department of Physics, University of Warwick, Coventry, CV4 7AL, UK
Abstract:Parameters characterizing elastic properties of microtubules, measured in several recent experiments, reflect an anisotropic character. We describe the microscopic dynamical properties of microtubules using a discrete model based on an appropriate lattice of dimers. Adopting a harmonic approximation for the dimer–dimer interactions and estimating the lattice elastic constants, we make predictions regarding vibration dispersion relations and vibration propagation velocities. Vibration frequencies and velocities are expressed as functions of the elastic constants and of the geometrical characteristics of the microtubules. We show that vibrations which propagate along the protofilament do so significantly faster than those along the helix.
Keywords:Microtubule  Microtubule structure  Microtubule dynamics  Lattice  Elastic vibrations
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