Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA 02139.
Department of Pharmaceutical Chemistry, University of California, San Francisco, CA 94158.
Proc Natl Acad Sci U S A. 2019 Aug 13;116(33):16357-16366. doi: 10.1073/pnas.1906839116. Epub 2019 Jul 29.
Misfolding of the microtubule-binding protein tau into filamentous aggregates is characteristic of many neurodegenerative diseases such as Alzheimer's disease and progressive supranuclear palsy. Determining the structures and dynamics of these tau fibrils is important for designing inhibitors against tau aggregation. Tau fibrils obtained from patient brains have been found by cryo-electron microscopy to adopt disease-specific molecular conformations. However, in vitro heparin-fibrillized 2N4R tau, which contains all four microtubule-binding repeats (4R), was recently found to adopt polymorphic structures. Here we use solid-state NMR spectroscopy to investigate the global fold and dynamics of heparin-fibrillized 0N4R tau. A single set of C and N chemical shifts was observed for residues in the four repeats, indicating a single β-sheet conformation for the fibril core. This rigid core spans the R2 and R3 repeats and adopts a hairpin-like fold that has similarities to but also clear differences from any of the polymorphic 2N4R folds. Obtaining a homogeneous fibril sample required careful purification of the protein and removal of any proteolytic fragments. A variety of experiments and polarization transfer from water and mobile side chains indicate that 0N4R tau fibrils exhibit heterogeneous dynamics: Outside the rigid R2-R3 core, the R1 and R4 repeats are semirigid even though they exhibit β-strand character and the proline-rich domains undergo large-amplitude anisotropic motions, whereas the two termini are nearly isotropically flexible. These results have significant implications for the structure and dynamics of 4R tau fibrils in vivo.
微管结合蛋白 tau 的错误折叠成纤维状聚集体是许多神经退行性疾病的特征,如阿尔茨海默病和进行性核上性麻痹。确定这些 tau 纤维的结构和动力学对于设计针对 tau 聚集的抑制剂非常重要。通过冷冻电子显微镜发现,来自患者大脑的 tau 纤维采用了特定疾病的分子构象。然而,最近发现体外肝素纤维化成的 2N4R tau(包含所有四个微管结合重复序列(4R))采用了多态结构。在这里,我们使用固态 NMR 光谱学研究肝素纤维化成的 0N4R tau 的整体折叠和动力学。在四个重复序列中的残基观察到一组单一的 C 和 N 化学位移,表明纤维核心具有单一的β-折叠构象。这个刚性核心跨越 R2 和 R3 重复序列,并采用发夹样折叠,与任何多态 2N4R 折叠具有相似之处,但也有明显的区别。获得均一的纤维样品需要仔细纯化蛋白质并去除任何蛋白水解片段。各种实验和来自水和可移动侧链的极化转移表明,0N4R tau 纤维表现出异质动力学:在刚性 R2-R3 核心之外,R1 和 R4 重复序列是半刚性的,尽管它们表现出β-折叠特征,脯氨酸丰富的结构域发生大振幅各向异性运动,而两个末端几乎是各向同性的柔性。这些结果对体内 4R tau 纤维的结构和动力学具有重要意义。