Liu Cheng-Hsin, Rasband Matthew Neil
Program in Developmental Biology, Baylor College of Medicine, Houston, TX, United States.
Department of Neuroscience, Baylor College of Medicine, Houston, TX, United States.
Front Cell Neurosci. 2019 May 28;13:234. doi: 10.3389/fncel.2019.00234. eCollection 2019.
Spectrin cytoskeletons are found in all metazoan cells, and their physical interactions between actin and ankyrins establish a meshwork that provides cellular structural integrity. With advanced super-resolution microscopy, the intricate spatial organization and associated functional properties of these cytoskeletons can now be analyzed with unprecedented clarity. Long neuronal processes like peripheral sensory and motor axons may be subject to intense mechanical forces including bending, stretching, and torsion. The spectrin-based cytoskeleton is essential to protect axons against these mechanical stresses. Additionally, spectrins are critical for the assembly and maintenance of axonal excitable domains including the axon initial segment and the nodes of Ranvier (NoR). These sites facilitate rapid and efficient action potential initiation and propagation in the nervous system. Recent studies revealed that pathogenic spectrin variants and diseases that protealyze and breakdown spectrins are associated with congenital neurological disorders and nervous system injury. Here, we review recent studies of spectrins in the nervous system and focus on their functions in axonal health and disease.
血影蛋白细胞骨架存在于所有后生动物细胞中,它们在肌动蛋白和锚蛋白之间的物理相互作用形成了一个网络,为细胞提供结构完整性。借助先进的超分辨率显微镜,现在可以以前所未有的清晰度分析这些细胞骨架的复杂空间组织和相关功能特性。像外周感觉和运动轴突这样的长神经突起可能会受到包括弯曲、拉伸和扭转在内的强大机械力作用。基于血影蛋白的细胞骨架对于保护轴突免受这些机械应力至关重要。此外,血影蛋白对于包括轴突起始段和郎飞结(NoR)在内的轴突可兴奋域的组装和维持也至关重要。这些位点有助于神经系统中动作电位的快速有效起始和传播。最近的研究表明,致病性血影蛋白变体以及降解和破坏血影蛋白的疾病与先天性神经疾病和神经系统损伤有关。在这里,我们综述了近期关于血影蛋白在神经系统中的研究,并重点关注它们在轴突健康和疾病中的功能。