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Interaction of monomeric and dimeric kinesin with microtubules
M Thormählen1, A Marx, S A Müller
1Max-Planck-Unit for Structural Molecular Biology, Notkestrasse 85, Hamburg, D-22603, Germany.
Abstract:
The binding stoichiometry of kinesin to microtubules was determined using several biochemical and biophysical approaches (chemical crosslinking, binding assays, scanning transmission electron microscopy (STEM), image reconstruction, and X-ray scattering). The results show that each tubulin dimer associates with one kinesin head, irrespective of whether kinesin occurs in a monomeric or dimeric form in solution. Moreover, these heads appear to align along the protofilament axis generating a 16 nm periodicity of successive kinesin dimers. This is consistent with a "tightrope" model of movement where the first head of the dimer provides a guiding signal for the following one.