4.7 Article

Widespread FUS mislocalization is a molecular hallmark of amyotrophic lateral sclerosis

期刊

BRAIN
卷 142, 期 -, 页码 2572-2580

出版社

OXFORD UNIV PRESS
DOI: 10.1093/brain/awz217

关键词

amyotrophic lateral sclerosis (ALS); fused in sarcoma FUS; RNA binding protein; intron retention

资金

  1. Francis Crick Institute - Cancer Research UK [FC010110]
  2. UK Medical Research Council [FC010110]
  3. Wellcome Trust [FC010110]
  4. MRC Senior Clinical Fellowship [MR/S006591/1]
  5. Wellcome Trust Senior Investigator Award [103760/Z/14/Z]
  6. MRC eMedLab Medical Bioinformatics Infrastructure Award [MR/L016311/1]
  7. Marie Curie Post-doctoral Research Fellowship [657749-NeuroUTR]
  8. Swiss National Science Foundation [P300PA_174461]
  9. Winton Charitable Foundation
  10. Swiss National Science Foundation (SNF) [P300PA_174461] Funding Source: Swiss National Science Foundation (SNF)
  11. MRC [MR/S006591/1, MR/M02492X/1] Funding Source: UKRI
  12. Wellcome Trust [103760/Z/14/Z] Funding Source: Wellcome Trust

向作者/读者索取更多资源

Mutations causing amyotrophic lateral sclerosis (ALS) clearly implicate ubiquitously expressed and predominantly nuclear RNA binding proteins, which form pathological cytoplasmic inclusions in this context. However, the possibility that wild-type RNA binding proteins mislocalize without necessarily becoming constituents of cytoplasmic inclusions themselves remains relatively unexplored. We hypothesized that nuclear-to-cytoplasmic mislocalization of the RNA binding protein fused in sarcoma (FUS), in an unaggregated state, may occur more widely in ALS than previously recognized. To address this hypothesis, we analysed motor neurons from a human ALS induced-pluripotent stem cell model caused by the VCP mutation. Additionally, we examined mouse transgenic models and post-mortem tissue from human sporadic ALS cases. We report nuclear-to-cytoplasmic mislocalization of FUS in both VCP-mutation related ALS and, crucially, in sporadic ALS spinal cord tissue from multiple cases. Furthermore, we provide evidence that FUS protein binds to an aberrantly retained intron within the SFPQ transcript, which is exported from the nucleus into the cytoplasm. Collectively, these data support a model for ALS pathogenesis whereby aberrant intron retention in SFPQ transcripts contributes to FUS mislocalization through their direct interaction and nuclear export. In summary, we report widespread mislocalization of the FUS protein in ALS and propose a putative underlying mechanism for this process.

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