Rabhi Célia, Babault Nicolas, Martin Céline, Desforges Bénédicte, Maucuer Alexandre, Joshi Vandana, Pankivskyi Serhii, Feng Yitian, Bollot Guillaume, Rattenbach Revital, Pastré David, Bouhss Ahmed
Université Paris-Saclay, INSERM U1204, Univ Evry, Structure-Activité des Biomolécules Normales et Pathologiques (SABNP), Evry-Courcouronnes, France.
4P-Pharma, Campus Pasteur Lille, 59000, Lille, France.
Commun Biol. 2025 Jan 28;8(1):136. doi: 10.1038/s42003-025-07456-7.
Protein aggregation is a hallmark of many neurodegenerative disorders, including amyotrophic lateral sclerosis (ALS), in which TDP-43, a nuclear RNA-binding protein, forms cytoplasmic inclusions. Here, we have developed a robust and automated method to assess protein self-assembly in the cytoplasm using microtubules as nanoplatforms. Importantly, we have analyzed specifically the self-assembly of full-length TDP-43 and its mRNA binding that are regulated by the phosphorylation of its self-adhesive C-terminus, which is the recipient of many pathological mutations. We show that C-terminus phosphorylation prevents the recruitment of TDP-43 in mRNA-rich stress granules only under acute stress conditions because of a low affinity for mRNA but not under mild stress conditions. In addition, the self-assembly of the C-terminus is negatively regulated by phosphorylation in the cytoplasm which in turn promotes TDP-43 nuclear import. We anticipate that reducing TDP-43 C-terminus self-assembly in the cytoplasm may be an interesting strategy to reverse TDP-43 nuclear depletion in neurodegenerative diseases.
蛋白质聚集是许多神经退行性疾病的标志,包括肌萎缩侧索硬化症(ALS),在这种疾病中,一种核RNA结合蛋白TDP-43会形成细胞质内含物。在此,我们开发了一种强大的自动化方法,以微管作为纳米平台来评估细胞质中的蛋白质自组装。重要的是,我们专门分析了全长TDP-43的自组装及其mRNA结合情况,它们受其自粘性C末端磷酸化的调节,而该C末端是许多病理突变的发生部位。我们发现,由于对mRNA的亲和力较低,C末端磷酸化仅在急性应激条件下阻止TDP-43在富含mRNA的应激颗粒中的募集,而在轻度应激条件下则不会。此外,C末端的自组装在细胞质中受到磷酸化的负调控,这反过来又促进了TDP-43的核输入。我们预计,减少细胞质中TDP-43 C末端的自组装可能是逆转神经退行性疾病中TDP-43核耗竭的一种有趣策略。