1Department of Pathology, University of California, San Diego, La Jolla, CA, USA.
Neuroscientist. 2014 Feb;20(1):71-81. doi: 10.1177/1073858413498306. Epub 2013 Aug 2.
Axonal transport is the lifeline of axons and synapses. After synthesis in neuronal cell bodies, proteins are conveyed into axons in two distinct rate classes-fast and slow axonal transport. Whereas fast transport delivers vesicular cargoes, slow transport carries cytoskeletal and cytosolic (or soluble) proteins that have critical roles in neuronal structure and function. Although significant progress has been made in dissecting the molecular mechanisms of fast vesicle transport, mechanisms of slow axonal transport are less clear. Why is this so? Historically, conceptual advances in the axonal transport field have paralleled innovations in imaging the movement, and slow-transport cargoes are not as readily seen as motile vesicles. However, new ways of visualizing slow transport have reenergized the field, leading to fundamental insights that have changed our views on axonal transport, motor regulation, and intracellular trafficking in general. This review first summarizes classic studies that characterized axonal transport, and then discusses recent technical and conceptual advances in slow axonal transport that have provided insights into some long-standing mysteries.
轴突运输是轴突和突触的生命线。在神经元细胞体中合成后,蛋白质以两种不同的速率类别——快速和慢速轴突运输——被输送到轴突中。快速运输运送囊泡货物,而慢速运输则携带细胞骨架和细胞质(或可溶性)蛋白,这些蛋白对神经元的结构和功能至关重要。尽管在剖析快速囊泡运输的分子机制方面已经取得了重大进展,但慢速轴突运输的机制尚不清楚。为什么会这样呢?从历史上看,轴突运输领域的概念进展与对运动的成像创新是平行的,而慢速运输货物不像运动囊泡那样容易被看到。然而,观察慢速运输的新方法重新激发了该领域的活力,为我们对轴突运输、运动调节以及一般细胞内运输的看法带来了根本性的改变。这篇综述首先总结了经典的轴突运输研究,然后讨论了最近在慢速轴突运输方面的技术和概念进展,这些进展为一些长期存在的谜团提供了新的认识。