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Spectrum of γ-Secretase dysfunction as a unifying predictor of ADAD age at onset across PSEN1, PSEN2 and APP causal genes
by
Oria, Cristina Gan
, Ryan, Natalie S.
, Chávez-Gutiérrez, Lucía
, Annaert, Wim
, Fernández, Sara Gutiérrez
, Petit, Dieter
, Ringman, John M.
, Fox, Nick C.
in
Age at dementia onset and Familial Alzheimer’s disease
/ Age of Onset
/ Aged
/ Alzheimer Disease - genetics
/ Alzheimer Disease - metabolism
/ Alzheimer's disease
/ Amyloid beta-Protein Precursor - genetics
/ Amyloid precursor protein
/ Amyloid Precursor Protein Secretases - genetics
/ Amyloid Precursor Protein Secretases - metabolism
/ Amyloid-β
/ APP
/ Autosomal dominant Alzheimer’s disease
/ Biochemical analysis
/ Biomedical and Life Sciences
/ Biomedicine
/ Enzymes
/ Female
/ Humans
/ Male
/ Membrane Proteins
/ Middle Aged
/ Molecular Medicine
/ Mutation
/ Mutation - genetics
/ Neurodegenerative diseases
/ Neurology
/ Neurosciences
/ Pathogenicity
/ Peptides
/ Prediction models
/ Presenilin
/ Presenilin-1 - genetics
/ Presenilin-2 - genetics
/ Research Article
/ Secretase
/ β-Amyloid
2025
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Spectrum of γ-Secretase dysfunction as a unifying predictor of ADAD age at onset across PSEN1, PSEN2 and APP causal genes
by
Oria, Cristina Gan
, Ryan, Natalie S.
, Chávez-Gutiérrez, Lucía
, Annaert, Wim
, Fernández, Sara Gutiérrez
, Petit, Dieter
, Ringman, John M.
, Fox, Nick C.
in
Age at dementia onset and Familial Alzheimer’s disease
/ Age of Onset
/ Aged
/ Alzheimer Disease - genetics
/ Alzheimer Disease - metabolism
/ Alzheimer's disease
/ Amyloid beta-Protein Precursor - genetics
/ Amyloid precursor protein
/ Amyloid Precursor Protein Secretases - genetics
/ Amyloid Precursor Protein Secretases - metabolism
/ Amyloid-β
/ APP
/ Autosomal dominant Alzheimer’s disease
/ Biochemical analysis
/ Biomedical and Life Sciences
/ Biomedicine
/ Enzymes
/ Female
/ Humans
/ Male
/ Membrane Proteins
/ Middle Aged
/ Molecular Medicine
/ Mutation
/ Mutation - genetics
/ Neurodegenerative diseases
/ Neurology
/ Neurosciences
/ Pathogenicity
/ Peptides
/ Prediction models
/ Presenilin
/ Presenilin-1 - genetics
/ Presenilin-2 - genetics
/ Research Article
/ Secretase
/ β-Amyloid
2025
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Spectrum of γ-Secretase dysfunction as a unifying predictor of ADAD age at onset across PSEN1, PSEN2 and APP causal genes
by
Oria, Cristina Gan
, Ryan, Natalie S.
, Chávez-Gutiérrez, Lucía
, Annaert, Wim
, Fernández, Sara Gutiérrez
, Petit, Dieter
, Ringman, John M.
, Fox, Nick C.
in
Age at dementia onset and Familial Alzheimer’s disease
/ Age of Onset
/ Aged
/ Alzheimer Disease - genetics
/ Alzheimer Disease - metabolism
/ Alzheimer's disease
/ Amyloid beta-Protein Precursor - genetics
/ Amyloid precursor protein
/ Amyloid Precursor Protein Secretases - genetics
/ Amyloid Precursor Protein Secretases - metabolism
/ Amyloid-β
/ APP
/ Autosomal dominant Alzheimer’s disease
/ Biochemical analysis
/ Biomedical and Life Sciences
/ Biomedicine
/ Enzymes
/ Female
/ Humans
/ Male
/ Membrane Proteins
/ Middle Aged
/ Molecular Medicine
/ Mutation
/ Mutation - genetics
/ Neurodegenerative diseases
/ Neurology
/ Neurosciences
/ Pathogenicity
/ Peptides
/ Prediction models
/ Presenilin
/ Presenilin-1 - genetics
/ Presenilin-2 - genetics
/ Research Article
/ Secretase
/ β-Amyloid
2025
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Spectrum of γ-Secretase dysfunction as a unifying predictor of ADAD age at onset across PSEN1, PSEN2 and APP causal genes
Journal Article
Spectrum of γ-Secretase dysfunction as a unifying predictor of ADAD age at onset across PSEN1, PSEN2 and APP causal genes
2025
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Overview
Background
Autosomal Dominant Alzheimer's Disease (ADAD), caused by mutations in Presenilins (
PSEN1/2
) and Amyloid Precursor Protein (
APP
) genes, typically manifests with early onset (< 65 years). Age at symptom onset (AAO) is relatively consistent among carriers of the same
PSEN1
mutation, but more variable for
PSEN2
and
APP
variants, with these mutations associated with later AAOs than
PSEN1
. Understanding this clinical variability is crucial for understanding disease mechanisms, developing predictive models and tailored interventions in ADAD, with potential implications for sporadic AD.
Methods
We performed biochemical assessment of γ-secretase dysfunction on 28 PSEN2 and 19 APP mutations, including disease-associated, unclear and benign variants. This analysis has been valuable in the assessment of
PSEN1
variant pathogenicity, disease onset and progression.
Results
Our analysis reveals linear correlations between the molecular composition of Aβ profiles and AAO for both
PSEN2
(R
2
= 0.52) and
APP
(R
2
= 0.69) mutations. The integration of PSEN1, PSEN2 and APP correlation data shows parallel but shifted lines, suggesting a common pathogenic mechanism with gene-specific shifts in onset. We found overall “delays” in AAOs of 27 years for PSEN2 and 8 years for APP variants, compared to PSEN1. Notably, extremely inactivating
PSEN1
variants delayed onset, suggesting that reduced contribution to brain APP processing underlies the later onset of PSEN2 variants.
Conclusion
This study supports a unified model of ADAD pathogenesis wherein γ-secretase dysfunction and the resulting shifts in Aβ profiles are central to disease onset across all causal genes. While similar shifts in Aβ occur across causal genes, their impact on AAO varies in the function of their contribution to APP processing in the brain. This biochemical analysis establishes quantitative relationships that enable predictive AAO modelling with implications for clinical practice and genetic research. Our findings also support the development of therapeutic strategies modulating γ-secretase across different genetic ADAD forms and potentially more broadly in AD.
Publisher
BioMed Central,Springer Nature B.V,BMC
Subject
Age at dementia onset and Familial Alzheimer’s disease
/ Aged
/ Alzheimer Disease - genetics
/ Alzheimer Disease - metabolism
/ Amyloid beta-Protein Precursor - genetics
/ Amyloid Precursor Protein Secretases - genetics
/ Amyloid Precursor Protein Secretases - metabolism
/ APP
/ Autosomal dominant Alzheimer’s disease
/ Biomedical and Life Sciences
/ Enzymes
/ Female
/ Humans
/ Male
/ Mutation
/ Peptides
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