ADEL Institute of Science & Technology (AIST), ADEL Inc., Seoul, South Korea.
Division of Biological Science and Technology, Yonsei University, Wonju, South Korea.
J Clin Invest. 2023 Apr 17;133(8):e156537. doi: 10.1172/JCI156537.
The spatiotemporal pattern of the spread of pathologically modified tau through brain regions in Alzheimer's disease (AD) can be explained by prion-like cell-to-cell seeding and propagation of misfolded tau aggregates. Hence, to develop targeted therapeutic antibodies, it is important to identify the seeding- and propagation-competent tau species. The hexapeptide 275VQIINK280 of tau is a critical region for tau aggregation, and K280 is acetylated in various tauopathies, including AD. However, the mechanism that links tau acetylated on lysine 280 (tau-acK280) to subsequent progression to neurodegenerative disease remains unclear. Here, we demonstrate that tau-acK280 is critical for tau propagation processes including secretion, aggregation, and seeding. We developed an antibody, Y01, that specifically targets tau-acK280 and solved the crystal structure of Y01 in complex with an acK280 peptide. The structure confirmed that Y01 directly recognizes acK280 and the surrounding residues. Strikingly, upon interaction with acetylated tau aggregates, Y01 prevented tauopathy progression and increased neuronal viability in neuron cultures and in tau-Tg mice through antibody-mediated neutralization and phagocytosis, respectively. Based on our observations that tau-acK280 is a core species involved in seeding and propagation activities, the Y01 antibody that specifically recognizes acK280 represents a promising therapeutic candidate for AD and other neurodegenerative diseases associated with tauopathy.
淀粉样蛋白病变 tau 通过大脑区域在阿尔茨海默病(AD)中的扩散具有时空模式,可以通过朊病毒样细胞到细胞播种和错误折叠 tau 聚集物的传播来解释。因此,为了开发靶向治疗抗体,识别具有播种和传播能力的 tau 物种非常重要。tau 的六肽 275VQIINK280 是 tau 聚集的关键区域,并且 K280 在包括 AD 在内的各种 tau 病中被乙酰化。然而,将赖氨酸 280 上的 tau 乙酰化(tau-acK280)与随后进展为神经退行性疾病的机制仍不清楚。在这里,我们证明 tau-acK280 对于 tau 的传播过程包括分泌、聚集和播种是至关重要的。我们开发了一种抗体 Y01,该抗体专门针对 tau-acK280,并解决了 Y01 与 acK280 肽复合物的晶体结构。该结构证实 Y01 直接识别 acK280 和周围残基。引人注目的是,与乙酰化 tau 聚集物相互作用后,Y01 通过抗体介导的中和和吞噬作用分别在神经元培养物和 tau-Tg 小鼠中阻止 tau 病进展并增加神经元活力。基于我们观察到 tau-acK280 是参与播种和传播活动的核心物种,特异性识别 acK280 的 Y01 抗体代表了 AD 和其他与 tau 病相关的神经退行性疾病的有前途的治疗候选物。