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Neuronal messenger ribonucleoprotein transport follows an aging Lévy walk

机译:Lévy步态衰老后神经元信使核糖核蛋白的运输

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摘要

Localization of messenger ribonucleoproteins (mRNPs) plays an essential role in the regulation of gene expression for long-term memory formation and neuronal development. Knowledge concerning the nature of neuronal mRNP transport is thus crucial for understanding how mRNPs are delivered to their target synapses. Here, we report experimental and theoretical evidence that the active transport dynamics of neuronal mRNPs, which is distinct from the previously reported motor-driven transport, follows an aging Lévy walk. Such nonergodic, transient superdiffusion occurs because of two competing dynamic phases: the motor-involved ballistic run and static localization of mRNPs. Our proposed Lévy walk model reproduces the experimentally extracted key dynamic characteristics of mRNPs with quantitative accuracy. Moreover, the aging status of mRNP particles in an experiment is inferred from the model. This study provides a predictive theoretical model for neuronal mRNP transport and offers insight into the active target search mechanism of mRNP particles in vivo.
机译:信使核糖核蛋白(mRNPs)的定位在长期记忆形成和神经元发育的基因表达调控中起着至关重要的作用。因此,有关神经元mRNP转运性质的知识对于理解mRNP如何传递至其靶突触至关重要。在这里,我们报告的实验和理论证据表明,神经元mRNPs的主动运输动力学,不同于以前报道的电机驱动运输,遵循衰老的Lévy步行。这种非遍历的瞬态超扩散是由于两个相互竞争的动态阶段而发生的:运动相关的弹道运行和mRNP的静态定位。我们提出的Lévy步行模型以定量精度再现了实验提取的mRNP的关键动态特征。而且,从模型中推断出mRNP颗粒在实验中的老化状态。这项研究提供了神经元mRNP转运的预测理论模型,并提供了对体内mRNP颗粒的主动靶标搜索机制的见解。

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