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Recessive LAMC3 mutations cause malformations of occipital cortical development

Authors :
Tanyeri Barak
Richard P. Lifton
Ying Zhu
Alp Dinçer
Hande Kaymakçalan
Ali K. Ozturk
Ergin Atalar
Katja Doerschner
Kaya Bilguvar
Murat Gunel
Cengiz Yalcinkaya
Tayfun Ozcelik
Katsuhito Yasuno
Shrikant Mane
Mehmet Bakırcıoğlu
Huseyin Boyaci
Nenad Sestan
Angeliki Louvi
Richard A. Bronen
Ahmet Okay Caglayan
Murim Choi
Kenneth Y. Kwan
Veysi Demirbilek
Beyhan Tüysüz
Serap Saygi
Saliha Yilmaz
William J Brunken
Boyacı, Hüseyin
Doerschner, Katja
Atalar, Ergin
Özçelik, Tayfun
Acibadem University Dspace
Source :
Nature Genetics
Publication Year :
2011
Publisher :
Nature Publishing Group, 2011.

Abstract

Cataloged from PDF version of article. The biological basis for regional and inter-species differences in cerebral cortical morphology is poorly understood. We focused on consanguineous Turkish families with a single affected member with complex bilateral occipital cortical gyration abnormalities. By using whole-exome sequencing, we initially identified a homozygous 2-bp deletion in LAMC3, the laminin 33 gene, leading to an immediate premature termination codon. In two other affected individuals with nearly identical phenotypes, we identified a homozygous nonsense mutation and a compound heterozygous mutation. In human but not mouse fetal brain, LAMC3 is enriched in postmitotic cortical plate neurons, localizing primarily to the somatodendritic compartment. LAMC3 expression peaks between late gestation and late infancy, paralleling the expression of molecules that are important in dendritogenesis and synapse formation. The discovery of the molecular basis of this unusual occipital malformation furthers our understanding of the complex biology underlying the formation of cortical gyrations. © 2011 Nature America, Inc. All rights reserved.

Details

Language :
English
Database :
OpenAIRE
Journal :
Nature Genetics
Accession number :
edsair.doi.dedup.....1b195428b17fbe90cfd02096177d9995