English

Swirling Instability of the Microtubule Cytoskeleton

Soft Condensed Matter 2021-01-20 v1 Pattern Formation and Solitons Biological Physics Subcellular Processes

Abstract

In the cellular phenomena of cytoplasmic streaming, molecular motors carrying cargo along a network of microtubules entrain the surrounding fluid. The piconewton forces produced by individual motors are sufficient to deform long microtubules, as are the collective fluid flows generated by many moving motors. Studies of streaming during oocyte development in the fruit fly D. melanogasterD.~melanogaster have shown a transition from a spatially-disordered cytoskeleton, supporting flows with only short-ranged correlations, to an ordered state with a cell-spanning vortical flow. To test the hypothesis that this transition is driven by fluid-structure interactions we study a discrete-filament model and a coarse-grained continuum theory for motors moving on a deformable cytoskeleton, both of which are shown to exhibit a swirling instabilityswirling~instability to spontaneous large-scale rotational motion, as observed.

Keywords

Cite

@article{arxiv.2008.12018,
  title  = {Swirling Instability of the Microtubule Cytoskeleton},
  author = {David B. Stein and Gabriele De Canio and Eric Lauga and Michael J. Shelley and Raymond E. Goldstein},
  journal= {arXiv preprint arXiv:2008.12018},
  year   = {2021}
}

Comments

6 pages, 5 figures and Supplementay Material (5 pages, 5 figures); SM video at website of REG