bioRxiv · 10.1101/2025.05.15.654227
Model-independent reorganization of translation in TDP-43 Amyotrophic Lateral Sclerosis
Abstract
The RNA-binding protein TDP-43 is a major contributor and a pathological hallmark of Amyotrophic Lateral Sclerosis (ALS), yet how TDP-43 dysregulation mechanistically alters protein synthesis across neuronal compartments and disease models remains unclear. Here, we dissected TDP-43-driven translational alterations in both in vitro and in vivo TDP-43 models of ALS. Through ribosome and polysome profiling, computational, and biochemical analyses, we observed robust TDP-43-associated translational remodelling at cellular and subcellular resolution. Our findings reveal a conserved mechanism across models, characterized by enhanced ribosome recruitment on polysomes, elongation impairment, axonal downregulation and instability of TDP-43 target mRNAs and redistribution toward non-target transcripts. Notably, TDP-43 dysregulation alters ribosome dynamics and selectively impairs translation of TDP-43 target mRNAs, whilst favouring the translation of other transcripts. This process reflects a compensatory but maladaptive response to TDP-43-induced mRNA destabilization. Together, these data demonstrate that alterations in TDP-43 disrupts neuronal proteostasis through ribosome reorganization and loss of mRNA homeostasis, providing a unifying mechanistic framework for translational imbalance in ALS and revealing early molecular events that may underlie motor neuron vulnerability.
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Lauria, F., Maniscalco, F., Perrucci, C., Marchioretto, M., Bruno, I., Tome, G., Cella, F., Busarello, E., Sevegnani, M., Lunelli, L., Donini, L., Tebaldi, T., D Antoni, M., Pollini, D., Peroni, D., Pisciottani, A., Croci, L., Badaloni, A., Arnese, R., Provenzani, A., Quattrone, A., Consalez, G. G., Clamer, M., Siciliano, V., Basso, M., Viero, G.. 2025-05-16. Model-independent reorganization of translation in TDP-43 Amyotrophic Lateral Sclerosis. https://doi.org/10.1101/2025.05.15.654227
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