bioRxiv · 10.1101/2021.08.10.455842
Modeling myosin Va liposome transport through actin filament networks reveals a percolation threshold that modulates transport properties
Abstract
Myosin Va (myoVa) motors transport membrane-bound cargo through three-dimensional, intracellular actin filament networks. We developed a coarse-grained, in silico model to predict how actin filament density (3-800 filaments) within a randomly oriented actin network affects fluid-like liposome (350nm vs. 1,750nm) transport by myoVa motors. 5,000 simulated liposomes transported within each network adopted one of three states: transport, tug of war, or diffusion. Diffusion due to liposome detachment from actin rarely occurred given at least 10 motors on the liposome surface. However, with increased actin density, liposomes transitioned from primarily directed transport on single actin filaments to an apparent random walk, resulting from a mixture of transport and tug of wars as the probability of encountering additional actin filaments increased. This phase transition arises from a percolation phase transition at a critical number of accessible actin filaments, Nc. Nc, is a geometric property of the actin network that depends only on the position and polarity of the actin filaments and the liposome diameter, as evidenced by a five-fold increase in liposome diameter resulting in a five-fold decrease in Nc. Thus, in cells, actin network density and cargo size may be regulated to match cargo delivery to the cells physiological demands.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Walcott, S., Warshaw, D. M.. 2021-08-10. Modeling myosin Va liposome transport through actin filament networks reveals a percolation threshold that modulates transport properties. https://doi.org/10.1101/2021.08.10.455842
Cite the original work for its findings. Save a collection to share your selection of sources.