Publication: Exome-wide rare variant analysis in familial essential tremor.
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Identifiers
Date
2020-11-21
Authors
Diez-Fairen, Monica
Houle, Gabrielle
Ortega-Cubero, Sara
Bandres-Ciga, Sara
Alvarez, Ignacio
Carcel, Maria
Ibañez, Laura
Fernandez, Maria Victoria
Budde, John P
Trotta, Jean-Remi
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier Ltd
Abstract
Essential tremor (ET) is one of the most common movement disorders. Despite its high prevalence and heritability, its genetic etiology remains elusive with only a few susceptibility genes identified and poorly replicated. Our aim was to find novel candidate genes involved in ET predisposition through whole exome sequencing. We studied eight multigenerational families (N = 40 individuals) with an autosomal-dominant inheritance using a comprehensive strategy combining whole exome sequencing followed by case-control association testing of prioritized variants in a separate cohort comprising 521 ET cases and 596 controls. We further performed gene-based burden analyses in an additional dataset comprising 789 ET patients and 770 healthy individuals to investigate whether there was an enrichment of rare deleterious variants within our candidate genes. Fifteen variants co-segregated with disease status in at least one of the families, among which rs749875462 in CCDC183, rs535864157 in MMP10 and rs114285050 in GPR151 showed a nominal association with ET. However, we found no significant enrichment of rare variants within these genes in cases compared with controls. Interestingly, MMP10 protein is involved in the inflammatory response to neuronal damage and has been previously associated with other neurological disorders. We prioritized a set of promising genes, especially MMP10, for further genetic and functional studies in ET. Our study suggests that rare deleterious coding variants that markedly increase susceptibility to ET are likely to be found in many genes. Future studies are needed to replicate and further infer biological mechanisms and potential disease causality for our identified genes.
Description
MeSH Terms
Adult
Age of Onset
Aged
Aged, 80 and over
Essential Tremor
Female
Genetic Predisposition to Disease
Humans
Male
Matrix Metalloproteinase 10
Middle Aged
Pedigree
Exome Sequencing
Young Adult
Age of Onset
Aged
Aged, 80 and over
Essential Tremor
Female
Genetic Predisposition to Disease
Humans
Male
Matrix Metalloproteinase 10
Middle Aged
Pedigree
Exome Sequencing
Young Adult
DeCS Terms
Masculino
Adulto
Anciano
Anciano de 80 o más Años
Edad de Inicio
Femenino
Humanos
Linaje
Metaloproteinasa 10 de la matriz
Persona de mediana edad
Predisposición genética a la enfermedad
Secuenciación del exoma
Temblor esencial
Adulto
Anciano
Anciano de 80 o más Años
Edad de Inicio
Femenino
Humanos
Linaje
Metaloproteinasa 10 de la matriz
Persona de mediana edad
Predisposición genética a la enfermedad
Secuenciación del exoma
Temblor esencial
CIE Terms
Keywords
Essential tremor, Genetic risk, MMP10, Rare variants, WES
Citation
Diez-Fairen M, Houle G, Ortega-Cubero S, Bandres-Ciga S, Alvarez I, Carcel M, et al. Exome-wide rare variant analysis in familial essential tremor. Parkinsonism Relat Disord. 2021 Jan;82:109-116.