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Loss of TDP‐43 oligomerization or RNA binding elicits distinct aggregation patterns

Manuela Pérez‐Berlanga, Vera I. Wiersma, Aurélie Zbinden, Laura De Vos, Ulrich Wagner, Chiara Foglieni, Izaskun Mallona, A Betz, Antoine Cléry, Julien Weber, Zhongning Guo, Ruben Rigort, Pierre De Rossi, Ruchi Manglunia, Elena Tantardini

The EMBO Journal · 2023 · ▲ 95 citations

Abstract

Aggregation of the RNA-binding protein TAR DNA-binding protein 43 (TDP-43) is the key neuropathological feature of neurodegenerative diseases, including amyotrophic lateral sclerosis (ALS) and frontotemporal lobar degeneration (FTLD). In physiological conditions, TDP-43 is predominantly nuclear, forms oligomers, and is contained in biomolecular condensates assembled by liquid-liquid phase separation (LLPS). In disease, TDP-43 forms cytoplasmic or intranuclear inclusions. How TDP-43 transitions from physiological to pathological states remains poorly understood. Using a variety of cellular systems to express structure-based TDP-43 variants, including human neurons and cell lines with near-physiological expression levels, we show that oligomerization and RNA binding govern TDP-43 stability, splicing functionality, LLPS, and subcellular localization. Importantly, our data reveal that TDP-43 oligomerization is modulated by RNA binding. By mimicking the impaired proteasomal activity observed in ALS/FTLD patients, we found that monomeric TDP-43 forms inclusions in the cytoplasm, whereas its RNA binding-deficient counterpart aggregated in the nucleus. These differentially localized aggregates emerged via distinct pathways: LLPS-driven aggregation in the nucleus and aggresome-dependent inclusion formation in the cytoplasm. Therefore, our work unravels the origins of heterogeneous pathological species reminiscent of those occurring in TDP-43 proteinopathy patients.

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OpenAlex
DOI
10.15252/embj.2022111719
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2026-07-29 MST

Cite this

APA
Pérez‐Berlanga, M., Wiersma, V.I., Zbinden, A., Vos, L.D., Wagner, U., Foglieni, C., Mallona, I., Betz, A., Cléry, A., Weber, J., Guo, Z., Rigort, R., Rossi, P.D., Manglunia, R., Tantardini, E., Sahadevan, S., Stach, O., Hruška-Plocháň, M., Allain, F.H., &amp; Paganetti, P. (2023). Loss of TDP‐43 oligomerization or RNA binding elicits distinct aggregation patterns. <em>The EMBO Journal</em>. https://doi.org/10.15252/embj.2022111719
Vancouver
Pérez‐Berlanga M, Wiersma VI, Zbinden A, Vos LD, Wagner U, Foglieni C, et al. Loss of TDP‐43 oligomerization or RNA binding elicits distinct aggregation patterns. The EMBO Journal. 2023. doi:10.15252/embj.2022111719.
BibTeX
@article{manuela2023Lossof, title = {Loss of TDP‐43 oligomerization or RNA binding elicits distinct aggregation patterns}, author = {Manuela Pérez‐Berlanga and Vera I. Wiersma and Aurélie Zbinden and Laura De Vos and Ulrich Wagner and Chiara Foglieni and Izaskun Mallona and A Betz and Antoine Cléry and Julien Weber and Zhongning Guo and Ruben Rigort and Pierre De Rossi and Ruchi Manglunia and Elena Tantardini and Sonu Sahadevan and Oliver Stach and Marián Hruška-Plocháň and Frédéric H.‐T. Allain and Paolo Paganetti and Magdalini Polymenidou}, journal = {The EMBO Journal}, year = {2023}, doi = {10.15252/embj.2022111719}, }

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