Spaulding Emily L, Burgess Robert W
The Jackson LaboratoryBar Harbor, ME, United States.
Graduate School of Biomedical Sciences and Engineering, University of MaineOrono, ME, United States.
Front Neurosci. 2017 May 31;11:312. doi: 10.3389/fnins.2017.00312. eCollection 2017.
The specialized structure of the neuron requires that homeostasis is sustained over the meter or more that may separate a cell body from its axonal terminus. Given this impressive distance and an axonal volume that is many times that of the cell body, how is such a compartment grown during development, re-grown after injury, and maintained throughout adulthood? While early answers to these questions focused on the local environment or the cell soma as supplying the needs of the axon, it is now well-established that the axon has some unique needs that can only be met from within. Decades of research have revealed local translation as an indispensable mechanism of axonal homeostasis during development and regeneration in both invertebrates and vertebrates. In contrast, the extent to which the adult, mammalian axonal proteome is maintained through local translation remains unclear and controversial. This mini-review aims to highlight important experiments that have helped to shape the field of axonal translation, to discuss conceptual arguments and recent evidence that supports local translation as important to the maintenance of adult axons, and to suggest experimental approaches that have the potential to further illuminate the role of axonal translation in neuronal homeostasis.
神经元的特殊结构要求在可能将细胞体与其轴突末端分隔开一米或更长的距离上维持内环境稳定。鉴于这一惊人的距离以及轴突体积是细胞体的许多倍,这样一个区域在发育过程中是如何生长的,在损伤后又是如何重新生长的,并且在成年期如何维持?虽然这些问题的早期答案集中在局部环境或细胞体为轴突提供所需,但现在已经明确,轴突有一些独特的需求,只能从其内部得到满足。数十年的研究已经揭示,在无脊椎动物和脊椎动物的发育和再生过程中,局部翻译是轴突内环境稳定不可或缺的机制。相比之下,成年哺乳动物轴突蛋白质组通过局部翻译得以维持的程度仍不清楚且存在争议。这篇小型综述旨在强调有助于塑造轴突翻译领域的重要实验,讨论支持局部翻译对成年轴突维持很重要的概念性论点和最新证据,并提出有可能进一步阐明轴突翻译在神经元内环境稳定中作用的实验方法。