Identification of NCAN as a candidate gene for developmental dyslexia

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作者
Elisabet Einarsdottir
Myriam Peyrard-Janvid
Fahimeh Darki
Jetro J. Tuulari
Harri Merisaari
Linnea Karlsson
Noora M. Scheinin
Jani Saunavaara
Riitta Parkkola
Katri Kantojärvi
Antti-Jussi Ämmälä
Nancy Yiu-Lin Yu
Hans Matsson
Jaana Nopola-Hemmi
Hasse Karlsson
Tiina Paunio
Torkel Klingberg
Eira Leinonen
Juha Kere
机构
[1] University of Helsinki,Folkhälsan Institute of Genetics, and Molecular Neurology Research Program
[2] Department of Biosciences and Nutrition,Turku PET Centre
[3] Karolinska Institutet,Department of Medical Physics
[4] Department of Neuroscience,Department of Radiology
[5] Karolinska Institutet,Department of Psychiatry
[6] University of Turku,Department of Paediatric Neurology
[7] Institute of Clinical Medicine,undefined
[8] Turku Brain and Mind Center,undefined
[9] FinnBrain Birth Cohort Study,undefined
[10] University of Turku,undefined
[11] University of Turku and Turku University Hospital,undefined
[12] Department of Child Psychiatry,undefined
[13] University of Turku and Turku University Hospital,undefined
[14] Department of Psychiatry,undefined
[15] Turku University Hospital,undefined
[16] Turku University Hospital and Turku University,undefined
[17] Genomics and Biomarkers Unit,undefined
[18] National Institute for Health and Welfare,undefined
[19] University of Helsinki and Helsinki University Central Hospital,undefined
[20] Helsinki University Central Hospital,undefined
[21] Children’s Hospital,undefined
[22] Department of Medical & Molecular Genetics,undefined
[23] King’s College London,undefined
[24] Guy’s Hospital,undefined
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摘要
A whole-genome linkage analysis in a Finnish pedigree of eight cases with developmental dyslexia (DD) revealed several regions shared by the affected individuals. Analysis of coding variants from two affected individuals identified rs146011974G > A (Ala1039Thr), a rare variant within the NCAN gene co-segregating with DD in the pedigree. This variant prompted us to consider this gene as a putative candidate for DD. The RNA expression pattern of the NCAN gene in human tissues was highly correlated (R > 0.8) with that of the previously suggested DD susceptibility genes KIAA0319, CTNND2, CNTNAP2 and GRIN2B. We investigated the association of common variation in NCAN to brain structures in two data sets: young adults (Brainchild study, Sweden) and infants (FinnBrain study, Finland). In young adults, we found associations between a common genetic variant in NCAN, rs1064395, and white matter volume in the left and right temporoparietal as well as the left inferior frontal brain regions. In infants, this same variant was found to be associated with cingulate and prefrontal grey matter volumes. Our results suggest NCAN as a new candidate gene for DD and indicate that NCAN variants affect brain structure.
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