Georgiadou, Panagiota and Erkaya, Bahriye and Niwa-Kawakita, Michiko and Oltan, Merve and Keskin, Yiğit Kemal and Sahin, Egemen and Ozturk, Harun and Tiryaki, Fatmanur and Yildiz, Kutay and Ozgenc, Idil and Odabasi, Ezgi and Pekbilir, Emre and Dogan, Sukru Anil and Lallemand-Breitenbach, Valerie and Vargas, Stephanie and Prochiantz, Alain and Firat-Karalar, Elif Nur and De The, Hugues and Şahin, Umut (2026) Pml loss worsens NEK1-linked ALS and Pml induction drives NEK1 degradation, precluding disease onset. FEBS Journal . ISSN 1742-464X (Print) 1742-4658 (Online) Published Online First https://dx.doi.org/10.1111/febs.70487
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Official URL: https://dx.doi.org/10.1111/febs.70487
Abstract
Germinal mono-allelic loss-of-function mutations of NEK1 drive amyotrophic lateral sclerosis (ALS) at variable penetrance, presumably through haploinsufficiency. Modeling the ALS-associated Arg812Ter mutation in mice revealed that the resulting truncated Nek1 (Nek1t) is aggregation-prone, particularly in alpha-motoneurons (αMNs), and drives canonical ALS symptoms when bi-allelically expressed (Nek1t/t). Promyelocytic leukemia (Pml) ablation allows for ALS symptoms to occur even in heterozygote Nek1wt/t animals, mimicking the human situation. Pml precludes disease occurrence by promoting SUMO-facilitated degradation of Nek1t proteins through PML nuclear bodies (NBs). Conversely, Pml induction, achieved by activating the interferon pathway via poly(I:C) treatment, clears Nek1t puncta in αMNs, dramatically reducing ALS-associated symptoms and extending survival by 5 months. Our studies highlight the role of mutant NEK1 expression in ALS pathogenesis and identifies activation of interferon pathways as a candidate therapeutic strategy that promotes Pml-triggered SUMOylation/degradation of toxic misfolded proteins in vivo, yielding dramatic clinical improvement. These observations provide strong proof-of-concept support to validate PML as a relevant therapeutic target in neurodegenerative conditions associated with protein misfolding and putative aggregation.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | ALS; NEK1; PML; SUMO; ubiquitin |
| Divisions: | Faculty of Engineering and Natural Sciences |
| Depositing User: | Umut Şahin |
| Date Deposited: | 21 Apr 2026 14:05 |
| Last Modified: | 21 Apr 2026 14:05 |
| URI: | https://research.sabanciuniv.edu/id/eprint/53854 |

