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Translation initiator EIF4G1 mutations in familial Parkinson disease.

Authors :
Chartier-Harlin MC
Dachsel JC
Vilariño-Güell C
Lincoln SJ
Leprêtre F
Hulihan MM
Kachergus J
Milnerwood AJ
Tapia L
Song MS
Le Rhun E
Mutez E
Larvor L
Duflot A
Vanbesien-Mailliot C
Kreisler A
Ross OA
Nishioka K
Soto-Ortolaza AI
Cobb SA
Melrose HL
Behrouz B
Keeling BH
Bacon JA
Hentati E
Williams L
Yanagiya A
Sonenberg N
Lockhart PJ
Zubair AC
Uitti RJ
Aasly JO
Krygowska-Wajs A
Opala G
Wszolek ZK
Frigerio R
Maraganore DM
Gosal D
Lynch T
Hutchinson M
Bentivoglio AR
Valente EM
Nichols WC
Pankratz N
Foroud T
Gibson RA
Hentati F
Dickson DW
Destée A
Farrer MJ
Source :
American journal of human genetics [Am J Hum Genet] 2011 Sep 09; Vol. 89 (3), pp. 398-406.
Publication Year :
2011

Abstract

Genome-wide analysis of a multi-incident family with autosomal-dominant parkinsonism has implicated a locus on chromosomal region 3q26-q28. Linkage and disease segregation is explained by a missense mutation c.3614G>A (p.Arg1205His) in eukaryotic translation initiation factor 4-gamma (EIF4G1). Subsequent sequence and genotype analysis identified EIF4G1 c.1505C>T (p.Ala502Val), c.2056G>T (p.Gly686Cys), c.3490A>C (p.Ser1164Arg), c.3589C>T (p.Arg1197Trp) and c.3614G>A (p.Arg1205His) substitutions in affected subjects with familial parkinsonism and idiopathic Lewy body disease but not in control subjects. Despite different countries of origin, persons with EIF4G1 c.1505C>T (p.Ala502Val) or c.3614G>A (p.Arg1205His) mutations appear to share haplotypes consistent with ancestral founders. eIF4G1 p.Ala502Val and p.Arg1205His disrupt eIF4E or eIF3e binding, although the wild-type protein does not, and render mutant cells more vulnerable to reactive oxidative species. EIF4G1 mutations implicate mRNA translation initiation in familial parkinsonism and highlight a convergent pathway for monogenic, toxin and perhaps virally-induced Parkinson disease.<br /> (Copyright © 2011 The American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.)

Details

Language :
English
ISSN :
1537-6605
Volume :
89
Issue :
3
Database :
MEDLINE
Journal :
American journal of human genetics
Publication Type :
Academic Journal
Accession number :
21907011
Full Text :
https://doi.org/10.1016/j.ajhg.2011.08.009