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Microsecond rotational dynamics of actin: spectroscopic detection and theoretical simulation.

作者信息

Prochniewicz E, Zhang Q, Howard E C, Thomas D D

机构信息

Department of Biochemistry University of Minnesota Medical School, Minneapolis 55455, USA.

出版信息

J Mol Biol. 1996 Jan 26;255(3):446-57. doi: 10.1006/jmbi.1996.0037.

Abstract

We have investigated the microsecond rotational dynamics of F-actin with transient phosphorescence anisotropy (TPA) spectroscopy, and analyzed the data to determine the relative contributions from rigid-body rotations and from intrafilament bending and twisting, using a theoretical model developed for DNA dynamics by Schurr and co-workers. The fits of the data to the model were constrained by independently determining the orientation of the dye's absorption dipole (by transient absorption anisotropy, TAA) and the actin filament length distribution (by electron microscopy). We conclude that (1) the Schurr theory enables calculation of the torsional flexibility of actin independent of any contribution from rigid body rotations of the whole filament, (2) the TPA decays cannot be explained by rigid-body or bending rotations, but reflect primary twisting motions within actin filaments, and (3) the dynamic properties of actin filaments are best ascribed to a continuous elasticity. This analysis establishes a firm methodological foundation for future studies of the effects or perturbations of the dynamics of actin on its functional properties.

摘要

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