Department of Translational Neuroscience, College of Human Medicine, Michigan State University, Grand Rapids, MI, USA.
Neuroscience Program, Michigan State University, East Lansing, MI, USA.
Adv Exp Med Biol. 2019;1184:81-95. doi: 10.1007/978-981-32-9358-8_7.
Tau is a microtubule-associated protein that is involved in both normal and pathological processes in neurons. Since the discovery and characterization of tau over 40 years ago, our understanding of tau's normal functions and toxic roles in neurodegenerative tauopathies has continued to expand. Fast axonal transport is a critical process for maintaining axons and functioning synapses, critical subcellular compartments underlying neuronal connectivity. Signs of fast axonal transport disruption are pervasive in Alzheimer's disease and other tauopathies and various mechanisms have been proposed for regulation of fast axonal transport by tau. Post-translational modifications of tau including phosphorylation at specific sites, FTDP-17 point mutations, and oligomerization, confer upon tau a toxic effect on fast axonal transport. Consistent with the well-established dependence of axons on fast axonal transport, these disease-related modifications are closely associated temporally and spatially with axonal degeneration in the early disease stages. These factors position tau as a potentially critical factor mediating the disruption of fast axonal transport that precedes synaptic dysfunction and axonal degeneration at later disease stages. In this chapter, we review the evidence that tau affects fast axonal transport and examine several potential mechanisms proposed to underlie this toxicity.
tau 是一种微管相关蛋白,参与神经元的正常和病理过程。自 40 多年前 tau 的发现和特性描述以来,我们对 tau 在神经退行性 tau 病中的正常功能和毒性作用的理解不断扩展。快速轴突运输是维持轴突和功能突触的关键过程,是神经元连接的关键亚细胞区室。快速轴突运输破坏的迹象在阿尔茨海默病和其他 tau 病中普遍存在,并且已经提出了各种机制来调节 tau 对快速轴突运输的调节。tau 的翻译后修饰,包括特定部位的磷酸化、FTDP-17 点突变和寡聚化,赋予 tau 对快速轴突运输的毒性作用。与轴突对快速轴突运输的高度依赖一致,这些与疾病相关的修饰在疾病早期阶段与轴突变性在时间和空间上密切相关。这些因素使 tau 成为一个潜在的关键因素,介导了快速轴突运输的破坏,而快速轴突运输的破坏先于突触功能障碍和轴突变性在后期疾病阶段。在这一章中,我们回顾了 tau 影响快速轴突运输的证据,并检查了几个潜在的机制,这些机制被认为是这种毒性的基础。