4.5 Article

Novel UBQLN2 mutations linked to amyotrophic lateral sclerosis and atypical hereditary spastic paraplegia phenotype through defective HSP70-mediated proteolysis

Journal

NEUROBIOLOGY OF AGING
Volume 58, Issue -, Pages -

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.neurobiolaging.2017.06.018

Keywords

Motor neuron disease; X-linked ALS; FTD; Proteolysis regulation; Incomplete penetrance; X inactivation; Dimerization

Funding

  1. Association Francaise contre les Myopathies (AFM, France) [R16061DD]
  2. Association pour la Recherche sur la Sclerose laterale amyotrophique et autres maladies du motoneurone (ARSla, France) [R17050DD]
  3. Aide a la Recherche des Maladies du Cerveau association (ARMC, France) [R16009DD]
  4. ICM
  5. CHU de Limoges
  6. Universite de Limoges [ICM.SCI.1800.CRCO]
  7. Agence Nationale de la Recherche (PATAX-QUEST)
  8. Verum Foundation
  9. AFM [18145]

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Mutations in UBQLN2 have been associated with rare cases of X-linked juvenile and adult forms of amyotrophic lateral sclerosis (ALS) and ALS linked to frontotemporal dementia (FTD). Here, we report 1 known (c.1489C>T, p.Pro497Ser, P497S) and 3 novel (c.1481C>T, p.Pro494Leu, P494L; c.1498C>T, p.Pro500Ser, P500S; and c.1516C>G, p.Pro506Ala, P506A) missense mutations in the PXX domain of UBQLN2 in familial motor neuron diseases including ALS and spastic paraplegia (SP). A novel missense mutation (c.1462G>A, p.Ala488Thr, A488T) adjacent to this hotspot UBQLN2 domain was identified in a sporadic case of ALS. These mutations are conserved in mammals, are absent from ExAC and gnomAD browsers, and are predicted to be deleterious by SIFT in silico analysis. Patient lymphoblasts carrying a UBQLN2 mutation showed absence of ubiquilin-2 accumulation, disrupted binding with HSP70, and impaired autophagic pathway. Our results confirm the role of PXX repeat in ALS pathogenesis, show that UBQLN2-linked disease can manifest like a SP phenotype, evidence a highly reduced disease penetrance in females carrying UBQLN2 mutations, which is important information for genetic counseling, and underline the pivotal role of ubiquilin-2 in proteolysis regulation pathways. (C) 2017 Elsevier Inc. All rights reserved.

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