IFNγ protects motor neurons from oxidative stress via enhanced global protein synthesis in FUS‐associated amyotrophic lateral sclerosis

Author:

Assoni Amanda Faria12,Guerrero Erika N.13,Wardenaar René1,Oliveira Danyllo2,Bakker Petra L.1,Alves Luciana M.2,Carvalho Valdemir M.4ORCID,Okamoto Oswaldo Keith2,Zatz Mayana2,Foijer Floris1ORCID

Affiliation:

1. European Research Institute for the Biology of Ageing (ERIBA) University of Groningen, University Medical Center Groningen Groningen The Netherlands

2. Instituto de Biociências Universidade de São Paulo São Paulo Brazil

3. Department of Stem Cell Research Gorgas Memorial Institute for Health Studies Panama City Republic of Panama

4. Division of Research and Development Fleury Group São Paulo Brazil

Abstract

AbstractAmyotrophic lateral sclerosis type 6 (ALS6) is a familial subtype of ALS linked to Fused in Sarcoma (FUS) gene mutation. FUS mutations lead to decreased global protein synthesis, but the mechanism that drives this has not been established. Here, we used ALS6 patient‐derived induced pluripotent stem cells (hIPSCs) to study the effect of the ALS6 FUSR521H mutation on the translation machinery in motor neurons (MNs). We find, in agreement with findings of others, that protein synthesis is decreased in FUSR521H MNs. Furthermore, FUSR521H MNs are more sensitive to oxidative stress and display reduced expression of TGF‐β and mTORC gene pathways when stressed. Finally, we show that IFNγ treatment reduces apoptosis of FUSR521H MNs exposed to oxidative stress and partially restores the translation rates in FUSR521H MNs. Overall, these findings suggest that a functional IFNγ response is important for FUS‐mediated protein synthesis, possibly by FUS nuclear translocation in ALS6.

Publisher

Wiley

Subject

Neurology (clinical),Pathology and Forensic Medicine,General Neuroscience

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