Department of Molecular Medicine, University of Padova, 35121 Padova, Italy.
Department of Biology, University of Padova, 35121 Padova, Italy.
Biomolecules. 2021 Jan 29;11(2):191. doi: 10.3390/biom11020191.
Axonal trajectories and neural circuit activities strongly rely on a complex system of molecular cues that finely orchestrate the patterning of neural commissures. Several of these axon guidance molecules undergo continuous recycling during brain development, according to incompletely understood intracellular mechanisms, that in part rely on endocytic and autophagic cascades. Based on their pivotal role in both pathways, lysosomes are emerging as a key hub in the sophisticated regulation of axonal guidance cue delivery, localization, and function. In this review, we will attempt to collect some of the most relevant research on the tight connection between lysosomal function and axon guidance regulation, providing some proof of concepts that may be helpful to understanding the relation between lysosomal storage disorders and neurodegenerative diseases.
轴突轨迹和神经回路活动强烈依赖于一个复杂的分子线索系统,该系统精细地协调神经连合的模式形成。根据不完全了解的细胞内机制,这些轴突导向分子中的几种在大脑发育过程中不断进行再循环,部分依赖于内吞作用和自噬级联反应。基于它们在这两个途径中的关键作用,溶酶体作为轴突导向分子传递、定位和功能的复杂调节的关键枢纽正在出现。在这篇综述中,我们将尝试收集一些关于溶酶体功能与轴突导向调节之间紧密联系的最相关研究,提供一些概念验证,这可能有助于理解溶酶体贮积症与神经退行性疾病之间的关系。