Department of Neuroscience, Faculty of Medicine, Universidad de Chile, Santiago, Chile.
Biomedical Neuroscience Institute, Faculty of Medicine, Universidad de Chile, Santiago, Chile.
Dev Neurobiol. 2018 Mar;78(3):181-208. doi: 10.1002/dneu.22560. Epub 2017 Nov 19.
The endoplasmic reticulum (ER) is highly conserved in eukaryotes and neurons. Indeed, the localization of the organelle in axons has been known for nearly half a century. However, the relevance of the axonal ER is only beginning to emerge. In this review, we discuss the structure of the ER in axons, examining the role of ER-shaping proteins and highlighting reticulons. We analyze the multiple functions of the ER and their potential contribution to axonal physiology. First, we examine the emerging roles of the axonal ER in lipid synthesis, protein translation, processing, quality control, and secretory trafficking of transmembrane proteins. We also review the impact of the ER on calcium dynamics, focusing on intracellular mechanisms and functions. We describe the interactions between the ER and endosomes, mitochondria, and synaptic vesicles. Finally, we analyze available proteomic data of axonal preparations to reveal the dynamic functionality of the ER in axons during development. We suggest that the dynamic proteome and a validated axonal interactome, together with state-of-the-art methodologies, may provide interesting research avenues in axon physiology that may extend to pathology and regeneration. © 2017 Wiley Periodicals, Inc. Develop Neurobiol 78: 181-208, 2018.
内质网(ER)在真核生物和神经元中高度保守。事实上,近半个世纪以来,人们已经知道细胞器在轴突中的定位。然而,轴突 ER 的相关性才刚刚开始显现。在这篇综述中,我们讨论了轴突中 ER 的结构,研究了 ER 成形蛋白的作用,并强调了网质蛋白。我们分析了 ER 的多种功能及其对轴突生理学的潜在贡献。首先,我们研究了轴突 ER 在脂质合成、蛋白质翻译、加工、质量控制和跨膜蛋白分泌运输中的新兴作用。我们还回顾了 ER 对钙动力学的影响,重点关注细胞内机制和功能。我们描述了 ER 与内体、线粒体和突触小泡之间的相互作用。最后,我们分析了轴突制剂的可用蛋白质组学数据,以揭示 ER 在发育过程中轴突中的动态功能。我们认为,动态蛋白质组学和经过验证的轴突相互作用组,以及最先进的方法,可能为轴突生理学提供有趣的研究途径,这些途径可能会扩展到病理学和再生。Wiley 期刊,2017 年,第 78 卷,第 181-208 页。