首页> 外文期刊>The European physical journal, E. Soft matter >Nonlinear ionic pulses along microtubules
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Nonlinear ionic pulses along microtubules

机译:沿着微管的非线性离子脉冲

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摘要

Microtubules are cylindrically shaped cytoskeletal biopolymers that are essential for cell motility, cell division and intracellular trafficking. Here, we investigate their polyelectrolyte character that plays a very important role in ionic transport throughout the intra-cellular environment. The model we propose demonstrates an essentially nonlinear behavior of ionic currents which are guided by microtubules. These features are primarily due to the dynamics of tubulin C-terminal tails which are extended out of the surface of the microtubule cylinder. We also demonstrate that the origin of nonlinearity stems from the nonlinear capacitance of each tubulin dimer. This brings about conditions required for the creation and propagation of solitonic ionic waves along the microtubule axis. We conclude that a microtubule plays the role of a biological nonlinear transmission line for ionic currents. These currents might be of particular significance in cell division and possibly also in cognitive processes taking place in nerve cells.
机译:微管是圆柱形的细胞骨架生物聚合物,对细胞运动,细胞分裂和细胞内运输至关重要。在这里,我们研究了它们的聚电解质特性,该特性在整个细胞内环境中的离子转运中起着非常重要的作用。我们提出的模型证明了由微管引导的离子电流的基本非线性行为。这些特征主要是由于微管蛋白C末端尾巴的动力学,这些尾巴伸出微管圆柱体的表面。我们还证明了非线性的起源是由于每个微管蛋白二聚体的非线性电容。这带来了沿着微管轴产生和传播孤子离子波所需的条件。我们得出的结论是,微管在离子电流中起着生物非线性传输线的作用。这些电流在细胞分裂中可能特别重要,在神经细胞中发生的认知过程中也可能特别重要。

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