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CAR-Associated Vesicular Transport of an Adenovirus in Motor Neuron Axons

机译:在汽车神经元轴突中腺病毒的汽车相关囊泡运输。

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摘要

Axonal transport is responsible for the movement of signals and cargo between nerve termini and cell bodies. Pathogens also exploit this pathway to enter and exit the central nervous system. In this study, we characterised the binding, endocytosis and axonal transport of an adenovirus (CAV-2) that preferentially infects neurons. Using biochemical, cell biology, genetic, ultrastructural and live-cell imaging approaches, we show that interaction with the neuronal membrane correlates with coxsackievirus and adenovirus receptor (CAR) surface expression, followed by endocytosis involving clathrin. In axons, long-range CAV-2 motility was bidirectional with a bias for retrograde transport in nonacidic Rab7-positive organelles. Unexpectedly, we found that CAR was associated with CAV-2 vesicles that also transported cargo as functionally distinct as tetanus toxin, neurotrophins, and their receptors. These results suggest that a single axonal transport carrier is capable of transporting functionally distinct cargoes that target different membrane compartments in the soma. We propose that CAV-2 transport is dictated by an innate trafficking of CAR, suggesting an unsuspected function for this adhesion protein during neuronal homeostasis.
机译:轴突运输负责神经末端和细胞体之间的信号和货物运动。病原体也利用这种途径进入和退出中枢神经系统。在这项研究中,我们表征了优先感染神经元的腺病毒(CAV-2)的结合,内吞作用和轴突运输。使用生化,细胞生物学,遗传,超微结构和活细胞成像方法,我们显示与神经元膜的相互作用与柯萨奇病毒和腺病毒受体(CAR)表面表达相关,然后涉及网格蛋白的内吞作用。在轴突中,远程CAV-2运动是双向的,在非酸性Rab7阳性细胞器中存在逆行转运的偏向。出乎意料的是,我们发现CAR与CAV-2囊泡相关,该囊泡还以破伤风毒素,神经营养蛋白及其受体的功能运输货物。这些结果表明,单个轴突运输载体能够运输针对体中不同膜区室的功能不同的货物。我们建议,CAV-2的运输是由先天的CAR贩运所决定的,这表明在神经元稳态过程中这种粘附蛋白具有意想不到的功能。

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