Department of Chemistry, Massachusetts Institute of Technology, 170 Albany Street, Cambridge, Massachusetts 02139, United States.
Department of Pharmaceutical Chemistry, University of California, 555 Mission Bay Blvd. South, CVRB, Room 452 V, San Francisco, California 94158-9001, United States.
J Am Chem Soc. 2021 May 26;143(20):7839-7851. doi: 10.1021/jacs.1c03314. Epub 2021 May 13.
Many neurodegenerative diseases such as Alzheimer's disease are characterized by pathological β-sheet filaments of the tau protein, which spread in a prion-like manner in patient brains. To date, high-resolution structures of tau filaments obtained from patient brains show that the β-sheet core only includes portions of the microtubule-binding repeat domains and excludes the C-terminal residues, indicating that the C-terminus is dynamically disordered. Here, we use solid-state NMR spectroscopy to identify the β-sheet core of full-length 0N3R tau fibrillized using heparin. Assignment of C and N chemical shifts of the rigid core of the protein revealed a single predominant β-sheet conformation, which spans not only the R3, R4, R' repeats but also the entire C-terminal domain (CT) of the protein. This massive β-sheet core qualitatively differs from all other tau fibril structures known to date. Using long-range correlation NMR experiments, we found that the R3 and R4 repeats form a β-arch, similar to that seen in some of the brain-derived tau fibrils, but the R1 and R3 domains additionally stack against the CT, reminiscent of previously reported transient interactions of the CT with the microtubule-binding repeats. This expanded β-sheet core structure suggests that the CT may have a protective effect against the formation of pathological tau fibrils by shielding the amyloidogenic R3 and R4 domains, preventing side-on nucleation. Truncation and post-translational modification of the CT may thus play an important role in the progression of tauopathies.
许多神经退行性疾病,如阿尔茨海默病,其特征是tau 蛋白病理性β-折叠丝,这些丝以类朊病毒的方式在患者大脑中传播。迄今为止,从患者大脑中获得的 tau 丝的高分辨率结构表明,β-折叠核心仅包含微管结合重复结构域的部分,排除了 C 端残基,表明 C 端是动态无序的。在这里,我们使用固态 NMR 光谱学来鉴定肝素诱导的全长 0N3R tau 纤维化的β-折叠核心。蛋白质刚性核心的 C 和 N 化学位移的分配揭示了单一主要的β-折叠构象,该构象不仅跨越 R3、R4、R' 重复结构域,而且跨越蛋白质的整个 C 端结构域 (CT)。这种大规模的β-折叠核心与迄今为止已知的所有其他 tau 纤维结构明显不同。使用长程相关 NMR 实验,我们发现 R3 和 R4 重复结构域形成β-拱,类似于一些脑源性 tau 纤维中观察到的结构,但 R1 和 R3 结构域另外与 CT 堆叠,类似于先前报道的 CT 与微管结合重复结构域的瞬时相互作用。这种扩展的β-折叠核心结构表明,CT 可能通过屏蔽淀粉样形成的 R3 和 R4 结构域来防止侧向成核,从而对病理性 tau 纤维的形成具有保护作用。CT 的截断和翻译后修饰可能在 tau 病的进展中起着重要作用。