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Updated: May 20, 2026

Single-Molecule Imaging of Nuclear Transport
Published on: June 9, 2010
From the cell membrane to the nucleus: unearthing transport mechanisms for dynein
Laurie Crossley1, Caroline A Garrett, Majid Hafezparast
1School of Mathematical and Physical Sciences, Department of Mathematics, University of Sussex, Pev III, 5C15, Brighton, BN1 9QH, UK.
Abstract:
Mutations in the motor protein cytoplasmic dynein have been found to cause Charcot-Marie-Tooth disease, spinal muscular atrophy, and severe intellectual disabilities in humans. In mouse models, neurodegeneration is observed. We sought to develop a novel model which could incorporate the effects of mutations on distance travelled and velocity. A mechanical model for the dynein mediated transport of endosomes is derived from first principles and solved numerically. The effects of variations in model parameter values are analysed to find those that have a significant impact on velocity and distance travelled. The model successfully describes the processivity of dynein and matches qualitatively the velocity profiles observed in experiments.
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