English

Superdiffusion dominates intracellular particle motion in the supercrowded space of pathogenic Acanthamoeba castellanii

Biological Physics 2015-07-03 v1 Soft Condensed Matter Cell Behavior

Abstract

Acanthamoebae are free-living protists and human pathogens, whose cellular functions and pathogenicity strongly depend on the transport of intracellular vesicles and granules through the cytosol. Using high-speed live cell imaging in combination with single-particle tracking analysis, we show here that the motion of endogenous intracellular particles in the size range from a few hundred nanometers to several micrometers in Acanthamoeba castellanii is strongly superdiffusive and influenced by cell locomotion, cytoskeletal elements, and myosin II. We demonstrate that cell locomotion significantly contributes to intracellular particle motion, but is clearly not the only origin of superdiffusivity. By analyzing the contribution of microtubules, actin, and myosin II motors we show that myosin II is a major driving force of intracellular motion in A. castellanii. The cytoplasm of A. castellanii is supercrowded with intracellular vesicles and granules, such that significant intracellular motion can only be achieved by actively driven motion, while purely thermally driven diffusion is negligible.

Keywords

Cite

@article{arxiv.1507.00716,
  title  = {Superdiffusion dominates intracellular particle motion in the supercrowded space of pathogenic Acanthamoeba castellanii},
  author = {J. F. Reverey and J. -H. Jeon and H. Bao and M. Leippe and R. Metzler and C. Selhuber-Unkel},
  journal= {arXiv preprint arXiv:1507.00716},
  year   = {2015}
}

Comments

23 pages, 9 figures