4.5 Article

A novel p.Ser108LeufsTer15 SOD1 mutation leading to the formation of a premature stop codon in an apparently sporadic ALS patient: insights into the underlying pathomechanisms

Journal

NEUROBIOLOGY OF AGING
Volume 72, Issue -, Pages -

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.neurobiolaging.2018.08.014

Keywords

Amyotrophic lateral sclerosis; SOD1; Truncated protein; Frameshift mutation; Oxidative stress; Protein aggregation

Funding

  1. Ministero della Salute (Ricerca Sanitaria Finalizzata) [RF-2010-2309849, GR-2010-2320550]
  2. Neurodegenerative Disease Research (Sophia Project) - Italian Ministry of Health
  3. Neurodegenerative Disease Research (Strength Project) - Italian Ministry of University and Research
  4. Fondazione Mario e Anna Magnetto
  5. Associazione Piemontese per l'Assistenza alla SLA (APASLA)
  6. European Community [259867, 278611]
  7. Fondazione Vialli e Mauro per la Sclerosi Laterale Amiotrofica onlus

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We report an apparently sporadic amyotrophic lateral sclerosis patient carrying a heterozygous novel frameshift SOD1 mutation (p.Ser108LeufsTer15), predicted to cause a premature protein truncation. RTPCR analysis of SOD1 mRNA and SDS-PAGE/Western blot analysis of PBMC demonstrated that mRNA from the mutant allele is expressed at levels similar to those of the wild-type allele, but the truncated protein is undetectable also in the insoluble fraction and after proteasome inhibition. Accordingly, the dismutation activity in erythrocytes is halved. Thus, the pathogenic mechanism associated with this mutation might be based on an insufficient activity of SOD1 that would make motor neurons more vulnerable to oxidative injury. However, it cannot be excluded that p.Ser108LeufsTer15 SOD1 is present in the nervous tissue and, being less charged and hence having less repulsive forces than the wild-type protein, may trigger toxic mechanisms as a consequence of its propensity to aggregate. (C) 2018 Elsevier Inc. All rights reserved.

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