Huang Yunpeng, Wu Zhihao, Zhou Bing
State Key Laboratory of Membrane Biology, School of Life Sciences, Tsinghua University, Beijing, 100084, China.
Department of Pathology, Stanford University School of Medicine, Stanford, CA, 94305, USA.
Cell Mol Life Sci. 2016 Jan;73(1):1-21. doi: 10.1007/s00018-015-2042-8. Epub 2015 Sep 24.
tau, a microtubule-associated protein, directly binds with microtubules to dynamically regulate the organization of cellular cytoskeletons, and is especially abundant in neurons of the central nervous system. Under disease conditions such as Pick's disease, progressive supranuclear palsy, frontotemporal dementia, parkinsonism linked to chromosome 17 and Alzheimer's disease, tau proteins can self-assemble to paired helical filaments progressing to neurofibrillary tangles. In these diseases, collectively referred to as "tauopathies", alterations of diverse tau modifications including phosphorylation, metal ion binding, glycosylation, as well as structural changes of tau proteins have all been observed, indicating the complexity and variability of factors in the regulation of tau toxicity. Here, we review our current knowledge and hypotheses from relevant studies on tau toxicity, emphasizing the roles of phosphorylations, metal ions, folding and clearance control underlining tau etiology and their regulations. A summary of clinical efforts and associated findings of drug candidates under development is also presented. It is hoped that a more comprehensive understanding of tau regulation will provide us with a better blueprint of tau networking in neuronal cells and offer hints for the design of more efficient strategies to tackle tau-related diseases in the future.
tau是一种微管相关蛋白,它直接与微管结合以动态调节细胞骨架的组织,并且在中枢神经系统的神经元中尤其丰富。在诸如匹克氏病、进行性核上性麻痹、额颞叶痴呆、与17号染色体相关的帕金森症以及阿尔茨海默病等疾病状态下,tau蛋白可自组装成双螺旋丝,进而发展为神经原纤维缠结。在这些统称为“tau蛋白病”的疾病中,已观察到多种tau修饰的改变,包括磷酸化、金属离子结合、糖基化,以及tau蛋白的结构变化,这表明调节tau毒性的因素具有复杂性和变异性。在此,我们回顾了关于tau毒性的相关研究的现有知识和假说,重点强调了磷酸化、金属离子、折叠和清除控制在tau病因及其调节中的作用。还介绍了正在开发的候选药物的临床研究成果及相关发现。希望对tau调节有更全面的了解,能为我们提供神经元细胞中tau网络的更好蓝图,并为未来设计更有效的策略来攻克与tau相关的疾病提供线索。