TY - JOUR
T1 - Rare Variants in PLD3 Do Not Affect Risk for Early-Onset Alzheimer Disease in a European Consortium Cohort
AU - Belgium Neurology (BELNEU) Consortium and the European Early-Onset Dementia (EU EOD) Consortium
AU - Cacace, Rita
AU - Van den Bossche, Tobi
AU - Engelborghs, Sebastiaan
AU - Geerts, Nathalie
AU - Laureys, Annelies
AU - Dillen, Lubina
AU - Graff, Caroline
AU - Thonberg, Håkan
AU - Chiang, Huei Hsin
AU - Pastor, Pau
AU - Ortega-Cubero, Sara
AU - Pastor, Maria A.
AU - Diehl-Schmid, Janine
AU - Alexopoulos, Panagiotis
AU - Benussi, Luisa
AU - Ghidoni, Roberta
AU - Binetti, Giuliano
AU - Nacmias, Benedetta
AU - Sorbi, Sandro
AU - Sanchez-Valle, Raquel
AU - Lladó, Albert
AU - Gelpi, Ellen
AU - Almeida, Maria Rosário
AU - Santana, Isabel
AU - Tsolaki, Magda
AU - Koutroumani, Maria
AU - Clarimon, Jordi
AU - Lleó, Alberto
AU - Fortea, Juan
AU - de Mendonça, Alexandre
AU - Martins, Madalena
AU - Borroni, Barbara
AU - Padovani, Alessandro
AU - Matej, Radoslav
AU - Rohan, Zdenek
AU - Vandenbulcke, Mathieu
AU - Vandenberghe, Rik
AU - De Deyn, Peter P.
AU - Cras, Patrick
AU - van der Zee, Julie
AU - Sleegers, Kristel
AU - Van Broeckhoven, Christine
N1 - Publisher Copyright:
© 2015 Wiley Periodicals, Inc.
PY - 2015/12
Y1 - 2015/12
N2 - Rare variants in the phospholipase D3 gene (PLD3) were associated with increased risk for late-onset Alzheimer disease (LOAD). We identified a missense mutation in PLD3 in whole-genome sequence data of a patient with autopsy confirmed Alzheimer disease (AD) and onset age of 50 years. Subsequently, we sequenced PLD3 in a Belgian early-onset Alzheimer disease (EOAD) patient (N = 261) and control (N = 319) cohort, as well as in European EOAD patients (N = 946) and control individuals (N = 1,209) ascertained in different European countries. Overall, we identified 22 rare variants with a minor allele frequency <1%, 20 missense and two splicing mutations. Burden analysis did not provide significant evidence for an enrichment of rare PLD3 variants in EOAD patients in any of the patient/control cohorts. Also, meta-analysis of the PLD3 data, including a published dataset of a German EOAD cohort, was not significant (P = 0.43; OR = 1.53, 95% CI 0.60-3.31). Consequently, our data do not support a role for PLD3 rare variants in the genetic etiology of EOAD in European EOAD patients. Our data corroborate the negative replication data obtained in LOAD studies and therefore a genetic role of PLD3 in AD remains to be demonstrated.
AB - Rare variants in the phospholipase D3 gene (PLD3) were associated with increased risk for late-onset Alzheimer disease (LOAD). We identified a missense mutation in PLD3 in whole-genome sequence data of a patient with autopsy confirmed Alzheimer disease (AD) and onset age of 50 years. Subsequently, we sequenced PLD3 in a Belgian early-onset Alzheimer disease (EOAD) patient (N = 261) and control (N = 319) cohort, as well as in European EOAD patients (N = 946) and control individuals (N = 1,209) ascertained in different European countries. Overall, we identified 22 rare variants with a minor allele frequency <1%, 20 missense and two splicing mutations. Burden analysis did not provide significant evidence for an enrichment of rare PLD3 variants in EOAD patients in any of the patient/control cohorts. Also, meta-analysis of the PLD3 data, including a published dataset of a German EOAD cohort, was not significant (P = 0.43; OR = 1.53, 95% CI 0.60-3.31). Consequently, our data do not support a role for PLD3 rare variants in the genetic etiology of EOAD in European EOAD patients. Our data corroborate the negative replication data obtained in LOAD studies and therefore a genetic role of PLD3 in AD remains to be demonstrated.
KW - Alzheimer dementia
KW - EOAD
KW - Meta-analysis
KW - Next-generation sequencing
KW - PLD3
KW - Rare variants
UR - http://www.scopus.com/inward/record.url?scp=84946555494&partnerID=8YFLogxK
U2 - 10.1002/humu.22908
DO - 10.1002/humu.22908
M3 - Article
C2 - 26411346
AN - SCOPUS:84946555494
SN - 1059-7794
VL - 36
SP - 1226
EP - 1235
JO - Human Mutation
JF - Human Mutation
IS - 12
ER -