The presenilin 1 mutation P436S causes familial Alzheimer's disease with elevated Aβ43 and atypical clinical manifestations

Author:

Arber Charles1ORCID,Belder Christopher R. S.234,Tomczuk Filip5,Gabriele Rebecca1,Buhidma Yazead1,Farrell Clíona13,O'Connor Antoinette2,Rice Helen123,Lashley Tammaryn1,Fox Nick C.123,Ryan Natalie S.123,Wray Selina1

Affiliation:

1. Department of Neurodegenerative Disease UCL Queen Square Institute of Neurology London UK

2. Dementia Research Centre UCL Queen Square Institute of Neurology London UK

3. UCL Queen Square Institute of Neurology UK Dementia Research Institute at UCL London UK

4. Adelaide Medical School The University of Adelaide Adelaide South Australia Australia

5. Department of Genetics Institute of Psychiatry and Neurology Warsaw Poland

Abstract

AbstractINTRODUCTIONFamilial Alzheimer's disease (fAD) is heterogeneous in terms of age at onset and clinical presentation. A greater understanding of the pathogenicity of fAD variants and how these contribute to heterogeneity will enhance our understanding of the mechanisms of AD more widely.METHODSTo determine the pathogenicity of the unclassified PSEN1 P436S mutation, we studied an expanded kindred of eight affected individuals, with magnetic resonance imaging (MRI) (two individuals), patient‐derived induced pluripotent stem cell (iPSC) models (two donors), and post‐mortem histology (one donor).RESULTSAn autosomal dominant pattern of inheritance of fAD was seen, with an average age at symptom onset of 46 years and atypical features. iPSC models and post‐mortem tissue supported high production of amyloid beta 43 (Aβ43). PSEN1 peptide maturation was unimpaired.DISCUSSIONWe confirm that the P436S mutation in PSEN1 causes atypical fAD. The location of the mutation in the critical PSEN1 proline‐alanine‐leucine‐proline (PALP) motif may explain the early age at onset despite appropriate protein maturation.Highlights PSEN1 P436S mutations cause familial Alzheimer's disease. This mutation is associated with atypical clinical presentation. Induced pluripotent stem cells (iPSCs) and post‐mortem studies support increased amyloid beta (Aβ43) production. Early age at onset highlights the importance of the PALP motif in PSEN1 function.

Funder

UK Dementia Research Institute

Medical Research Council

Publisher

Wiley

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