Oligosaccharyltransferase-subunit mutations in nonsyndromic mental retardation

被引:112
|
作者
Molinari, Florence [1 ]
Foulquier, Francois [2 ,3 ]
Tarpey, Patrick S. [4 ]
Morelle, Willy [3 ]
Boissel, Sarah [1 ]
Teague, Jon [4 ]
Edkins, Sarah [4 ]
Futreal, P. Andrew [4 ]
Stratton, Michael R. [4 ]
Turner, Gillian [5 ,6 ]
Matthijs, Gert [2 ]
Gecz, Jozef [7 ,8 ,9 ]
Munnich, Arnold [1 ]
Colleaux, Laurence [1 ]
机构
[1] Univ Paris 05, Hop Necker Enfants Malad, Neurosensorielles & Dev INSERM U 781, Lab Genet & Epigenet Malad Metab, F-75015 Paris, France
[2] Katholieke Univ Leuven, Ctr Human Genet, Lab Mol Diagnost, B-3000 Louvain, Belgium
[3] USTL, CNRS, Unite Mixte Rech 8576, IFR 147, F-59655 Villeneuve Dascq, France
[4] Wellcome Trust Sanger Inst, Canc Genome Project, Cambridge CB10 1SA, England
[5] Univ Newcastle, Newcastle, NSW 2308, Australia
[6] Univ Newcastle, Gold Serv Hunter Genet, Newcastle, NSW 2308, Australia
[7] Womens & Childrens Hosp, Dept Med Genet, Adelaide, SA 5005, Australia
[8] Univ Adelaide, Dept Pediat, Adelaide, SA 5005, Australia
[9] Univ Adelaide, Dept Pediat, Sch Mol & Biomed Sci, Adelaide, SA 5005, Australia
关键词
D O I
10.1016/j.ajhg.2008.03.021
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Mental retardation (MR) is the most frequent handicap among children and young adults. Although a large proportion of X-linked MR genes have been identified, only four genes responsible for autosomal-recessive nonsyndromic MR (AR-NSMR) have been described so far. Here, we report on two genes involved in autosomal-recessive and X-linked NSMR. First, autozygosity mapping in two sibs born to first-cousin French parents led to the identification of a region on 8p22-p23.1. This interval encompasses the gene N33/TUSC3 encoding one subunit of the oligosaccharyltransferase (OTase) complex, which catalyzes the transfer of an oligosaccharide chain on nascent proteins, the key step of N-glycosylation. Sequencing N33/TUSC3 identified a I bp insertion, c. 787_788insC, resulting in a premature stop codon, p.N263fsX300, and leading to mRNA decay. Surprisingly, glycosylation analyses of patient fibroblasts showed normal N-glycan synthesis and transfer, suggesting that normal N-glycosylation observed in patient fibroblasts may be due to functional compensation. Subsequently, screening of the X-linked N33/TUSC3 paralog, the IAP gene, identified a missense mutation (c.932T -> G, p.V311G) in a family with X-linked NSMR. Recent studies of fucosylation and polysialic-acid modification of neuronal cell-adhesion glycoproteins have shown the critical role of glycosylation in synaptic plasticity. However, our data provide the first demonstration that a defect in N-glycosylation can result in NSMR. Together, our results demonstrate that fine regulation of OTase activity is essential for normal cognitive-function development, providing therefore further insights to understand the pathophysiological bases of MR.
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收藏
页码:1150 / 1157
页数:8
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