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Targeting Neuroplasticity, Cardiovascular, and Cognitive-Associated Genomic Variants in Familial Alzheimer’s Disease
by
Isaza-Ruget, Mario A.
, Lopera, Francisco
, Acosta-López, Johan E.
, Piñeros, Laura B.
, Silva, Claudia Tamar
, Quintero, Gustavo A.
, Cervantes-Henríquez, Martha L.
, Arcos-Burgos, Mauricio
, Creagh, Penelope K.
, Espinosa, Lady G.
, Vélez, Jorge I.
, Mastronardi, Claudio A.
, Easteal, Simon
, Das, Debjani
in
Age of Onset
/ Alleles
/ Alzheimer Disease - genetics
/ Alzheimer's disease
/ Anatomy
/ Apolipoprotein E
/ Biomedical and Life Sciences
/ Biomedicine
/ Cardiovascular System - pathology
/ Cell Biology
/ Cognition
/ Cognitive ability
/ Epistasis
/ Epistasis, Genetic
/ Female
/ Genetic diversity
/ Genetic Predisposition to Disease
/ Genome, Human
/ Genomics
/ Humans
/ Male
/ Mutation
/ Neurobiology
/ Neurology
/ Neuronal Plasticity - genetics
/ Neuroplasticity
/ Neurosciences
/ Pedigree
/ Polymorphism, Single Nucleotide - genetics
/ Precision medicine
/ Quality control
/ Single-nucleotide polymorphism
2019
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Targeting Neuroplasticity, Cardiovascular, and Cognitive-Associated Genomic Variants in Familial Alzheimer’s Disease
by
Isaza-Ruget, Mario A.
, Lopera, Francisco
, Acosta-López, Johan E.
, Piñeros, Laura B.
, Silva, Claudia Tamar
, Quintero, Gustavo A.
, Cervantes-Henríquez, Martha L.
, Arcos-Burgos, Mauricio
, Creagh, Penelope K.
, Espinosa, Lady G.
, Vélez, Jorge I.
, Mastronardi, Claudio A.
, Easteal, Simon
, Das, Debjani
in
Age of Onset
/ Alleles
/ Alzheimer Disease - genetics
/ Alzheimer's disease
/ Anatomy
/ Apolipoprotein E
/ Biomedical and Life Sciences
/ Biomedicine
/ Cardiovascular System - pathology
/ Cell Biology
/ Cognition
/ Cognitive ability
/ Epistasis
/ Epistasis, Genetic
/ Female
/ Genetic diversity
/ Genetic Predisposition to Disease
/ Genome, Human
/ Genomics
/ Humans
/ Male
/ Mutation
/ Neurobiology
/ Neurology
/ Neuronal Plasticity - genetics
/ Neuroplasticity
/ Neurosciences
/ Pedigree
/ Polymorphism, Single Nucleotide - genetics
/ Precision medicine
/ Quality control
/ Single-nucleotide polymorphism
2019
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Targeting Neuroplasticity, Cardiovascular, and Cognitive-Associated Genomic Variants in Familial Alzheimer’s Disease
by
Isaza-Ruget, Mario A.
, Lopera, Francisco
, Acosta-López, Johan E.
, Piñeros, Laura B.
, Silva, Claudia Tamar
, Quintero, Gustavo A.
, Cervantes-Henríquez, Martha L.
, Arcos-Burgos, Mauricio
, Creagh, Penelope K.
, Espinosa, Lady G.
, Vélez, Jorge I.
, Mastronardi, Claudio A.
, Easteal, Simon
, Das, Debjani
in
Age of Onset
/ Alleles
/ Alzheimer Disease - genetics
/ Alzheimer's disease
/ Anatomy
/ Apolipoprotein E
/ Biomedical and Life Sciences
/ Biomedicine
/ Cardiovascular System - pathology
/ Cell Biology
/ Cognition
/ Cognitive ability
/ Epistasis
/ Epistasis, Genetic
/ Female
/ Genetic diversity
/ Genetic Predisposition to Disease
/ Genome, Human
/ Genomics
/ Humans
/ Male
/ Mutation
/ Neurobiology
/ Neurology
/ Neuronal Plasticity - genetics
/ Neuroplasticity
/ Neurosciences
/ Pedigree
/ Polymorphism, Single Nucleotide - genetics
/ Precision medicine
/ Quality control
/ Single-nucleotide polymorphism
2019
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Targeting Neuroplasticity, Cardiovascular, and Cognitive-Associated Genomic Variants in Familial Alzheimer’s Disease
Journal Article
Targeting Neuroplasticity, Cardiovascular, and Cognitive-Associated Genomic Variants in Familial Alzheimer’s Disease
2019
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Overview
The identification of novel genetic variants contributing to the widespread in the age of onset (AOO) of Alzheimer’s disease (AD) could aid in the prognosis and/or development of new therapeutic strategies focused on early interventions. We recruited 78 individuals with AD from the Paisa genetic isolate in Antioquia, Colombia. These individuals belong to the world largest multigenerational and extended pedigree segregating AD as a consequence of a dominant fully penetrant mutation in the
PSEN1
gene and exhibit an AOO ranging from the early 1930s to the late 1970s. To shed light on the genetic underpinning that could explain the large spread of the age of onset (AOO) of AD, 64 single nucleotide polymorphisms (SNP) associated with neuroanatomical, cardiovascular, and cognitive measures in AD were genotyped. Standard quality control and filtering procedures were applied, and single- and multi-locus linear mixed-effects models were used to identify AOO-associated SNPs. A full two-locus interaction model was fitted to define how identified SNPs interact to modulate AOO. We identified two key epistatic interactions between the
APOE*E2
allele and SNPs
ASTN2
-rs7852878 and
SNTG1
-rs16914781 that delay AOO by up to ~ 8 years (95% CI 3.2–12.7,
P
= 1.83 × 10
−3
) and ~ 7.6 years (95% CI 3.3–11.8,
P
= 8.69 × 10
−4
), respectively, and validated our previous finding indicating that
APOE*E2
delays AOO of AD in
PSEN1
E280 mutation carriers. This new evidence involving
APOE*E2
as an AOO delayer could be used for developing precision medicine approaches and predictive genomics models to potentially determine AOO in individuals genetically predisposed to AD.
Publisher
Springer US,Springer Nature B.V
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