Tyagi Sidharth, Higerd-Rusli Grant P, Akin Elizabeth J, Waxman Stephen G, Dib-Hajj Sulayman D
Department of Neurology, Yale School of Medicine, New Haven, CT, USA.
Center for Neuroscience and Regeneration Research, Yale School of Medicine, West Haven, CT, USA.
Nat Rev Neurosci. 2025 Apr 2. doi: 10.1038/s41583-025-00917-2.
The polarized and domain-specific distribution of membrane ion channels is essential for neuronal homeostasis, but delivery of these proteins to distal neuronal compartments (such as the axonal ends of peripheral sensory neurons) presents a logistical challenge. Recent developments have enabled the real-time imaging of single protein trafficking and the investigation of the life cycle of ion channels across neuronal compartments. These studies have revealed a highly regulated process involving post-translational modifications, vesicular sorting, motor protein-driven transport and targeted membrane insertion. Emerging evidence suggests that neuronal activity and disease states can dynamically modulate ion channel localization, directly influencing excitability. This Review synthesizes current knowledge on the spatiotemporal regulation of ion channel trafficking in both central and peripheral nervous system neurons. Understanding these processes not only advances our fundamental knowledge of neuronal excitability, but also reveals potential therapeutic targets for disorders involving aberrant ion channel distribution, such as chronic pain and neurodegenerative diseases.
膜离子通道的极化和区域特异性分布对于神经元内环境稳定至关重要,但将这些蛋白质输送到神经元远端区室(如外周感觉神经元的轴突末端)存在后勤方面的挑战。最近的进展使得能够对单个蛋白质运输进行实时成像,并研究离子通道在神经元各区间的生命周期。这些研究揭示了一个高度受调控的过程,涉及翻译后修饰、囊泡分选、驱动蛋白驱动的运输以及靶向膜插入。新出现的证据表明,神经元活动和疾病状态可动态调节离子通道定位,直接影响兴奋性。本综述综合了目前关于中枢和外周神经系统神经元中离子通道运输的时空调节的知识。了解这些过程不仅能推进我们对神经元兴奋性的基础知识,还能揭示涉及异常离子通道分布的疾病(如慢性疼痛和神经退行性疾病)的潜在治疗靶点。