Sparacino J, Farías M G, Lamberti P W
Facultad de Matemática, Astronomía y Física, Universidad Nacional de Córdoba and CONICET, Medina Allende s/n, Ciudad Universitaria, 5000 Córdoba, Argentina.
Instituto de Investigación Médica Mercedes y Martín Ferreyra, INIMEC-CONICET and FoNCyT, Friuli 2434, Barrio Parque Vélez Sarsfield, 5016 Córdoba, Argentina.
Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Feb;89(2):022714. doi: 10.1103/PhysRevE.89.022714. Epub 2014 Feb 19.
Intracellular transport based on molecular motors and its regulation are crucial to the functioning of cells. Filamentary tracks of the cells are abundantly decorated with nonmotile microtubule-associated proteins, such as tau. Motivated by experiments on kinesin-tau interactions [Dixit et al., Science 319, 1086 (2008)] we developed a stochastic model of interacting single-headed motor proteins KIF1A that also takes into account the interactions between motor proteins and tau molecules. Our model reproduces experimental observations and predicts significant effects of tau on bound time and run length which suggest an important role of tau in regulation of kinesin-based transport.
基于分子马达的细胞内运输及其调控对细胞功能至关重要。细胞的丝状轨道上大量分布着非运动性微管相关蛋白,如tau蛋白。受驱动蛋白与tau蛋白相互作用实验[Dixit等人,《科学》319, 1086 (2008)]的启发,我们开发了一个相互作用的单头马达蛋白KIF1A的随机模型,该模型还考虑了马达蛋白与tau分子之间的相互作用。我们的模型重现了实验观察结果,并预测了tau蛋白对结合时间和运行长度的显著影响,这表明tau蛋白在基于驱动蛋白的运输调控中起着重要作用。