bioRxiv · 10.1101/2024.01.07.574541
TDP-43 pathology links innate and adaptive immunity in amyotrophic lateral sclerosis
Abstract
Amyotrophic lateral sclerosis is the most common fatal motor neuron disease. Approximately 90% of ALS patients exhibit pathology of the master RNA regulator, Transactive Response DNA Binding protein (TDP-43). Despite the prevalence TDP-43 pathology in ALS motor neurons, recent findings suggest immune dysfunction is a determinant of disease progression in patients. Whether TDP-43 pathology elicits disease-modifying immune responses in ALS remains underexplored. In this study, we demonstrate that TDP-43 pathology is internalized by antigen presenting cells, causes vesicle rupture, and leads to innate and adaptive immune cell activation. Using a multiplex imaging platform, we observed interactions between innate and adaptive immune cells near TDP-43 pathological lesions in ALS brain. We used a mass cytometry-based whole-blood stimulation assay to provide evidence that ALS patient peripheral immune cells exhibit responses to TDP-43 aggregates. Taken together, this study provides a novel link between TDP-43 pathology and ALS immune dysfunction, and further highlights the translational and diagnostic implications of monitoring and manipulating the ALS immune response.
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Evangelista, B. A., Ragusa, J. V., Pellegrino, K., Wu, Y., Quiroga-Barber, I., Cahalan, S. R., Arooji, O. K., Madren, J. A., Schroeter, S., Cozzarin, J., Xie, L., Chen, X., White, K. K., Ezzell, J. A., Iannone, M. A., Cohen, S., Traub, R. E., Li, X., Bedlack, R., Phanstiel, D. H., Meeker, R., Stanley, N., Cohen, T. J.. 2024-01-07. TDP-43 pathology links innate and adaptive immunity in amyotrophic lateral sclerosis. https://doi.org/10.1101/2024.01.07.574541
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