Mamede Lohany Dias, Hu Miwei, Titus Amanda R, Vaquer-Alicea Jaime, French Rachel L, Diamond Marc I, Miller Timothy M, Ayala Yuna M
Edward Doisy Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, St. Louis MO 63104, USA.
Department of Neurology, Washington University in St. Louis, St. Louis MO 63110, USA.
bioRxiv. 2025 Feb 12:2025.02.11.637743. doi: 10.1101/2025.02.11.637743.
The aggregation, cellular mislocalization and dysfunction of TDP-43 are hallmarks of multiple neurodegenerative disorders. We find that inducing TDP-43 aggregation through prion-like seeding gradually diminishes normal TDP-43 nuclear localization and function. Aggregate-affected cells show signature features of TDP-43 loss of function, such as DNA damage and dysregulated TDP-43-target expression. We also observe strong activation of TDP-43-controlled cryptic exons in cells, including human neurons treated with proteopathic seeds. Furthermore, aggregate seeding impairs TDP-43 autoregulation, an essential mechanism controlling TDP-43 homeostasis. Interestingly, proteins that normally interact with TDP-43 are not recruited to aggregates, while other factors linked to TDP-43 pathology, including Ataxin 2, specifically colocalize to inclusions and modify seeding-induced aggregation. Our findings indicate that TDP-43 aggregation, mislocalization and loss of function are strongly linked and suggest that disruption of TDP-43 autoregulation establishes a toxic feed-forward mechanism that amplifies aggregation and may be central in mediating this pathological connection.
TDP-43的聚集、细胞定位错误及功能障碍是多种神经退行性疾病的标志。我们发现,通过朊病毒样种子诱导TDP-43聚集会逐渐减少正常TDP-43的核定位和功能。受聚集影响的细胞表现出TDP-43功能丧失的标志性特征,如DNA损伤和TDP-43靶标表达失调。我们还观察到细胞中TDP-43控制的隐蔽外显子有强烈激活,包括用蛋白病种子处理的人类神经元。此外,种子聚集会损害TDP-43的自我调节,这是控制TDP-43稳态的关键机制。有趣的是,正常与TDP-43相互作用的蛋白质不会被募集到聚集体中,而其他与TDP-43病理学相关的因子,包括共济失调蛋白2,会特异性地与包涵体共定位并改变种子诱导的聚集。我们的研究结果表明,TDP-43的聚集、定位错误和功能丧失紧密相关,并表明TDP-43自我调节的破坏建立了一种毒性前馈机制,该机制会放大聚集,可能是介导这种病理联系的核心。