The axon guidance receptor gene ROBO1 is a candidate gene for developmental dyslexia.

Dyslexia, or specific reading disability, is the most common learning disorder with a complex, partially genetic basis, but its biochemical mechanisms remain poorly understood. A locus on Chromosome 3, DYX5, has been linked to dyslexia in one large family and speech-sound disorder in a subset of sma...

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Main Authors: Katariina Hannula-Jouppi, Nina Kaminen-Ahola, Mikko Taipale, Ranja Eklund, Jaana Nopola-Hemmi, Helena Kääriäinen, Juha Kere
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2005-10-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC1270007?pdf=render
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spelling doaj-2c1a54394a7f4878a992e6b27a8615f62020-11-25T01:19:26ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042005-10-0114e5010.1371/journal.pgen.0010050The axon guidance receptor gene ROBO1 is a candidate gene for developmental dyslexia.Katariina Hannula-JouppiNina Kaminen-AholaMikko TaipaleRanja EklundJaana Nopola-HemmiHelena KääriäinenJuha KereDyslexia, or specific reading disability, is the most common learning disorder with a complex, partially genetic basis, but its biochemical mechanisms remain poorly understood. A locus on Chromosome 3, DYX5, has been linked to dyslexia in one large family and speech-sound disorder in a subset of small families. We found that the axon guidance receptor gene ROBO1, orthologous to the Drosophila roundabout gene, is disrupted by a chromosome translocation in a dyslexic individual. In a large pedigree with 21 dyslexic individuals genetically linked to a specific haplotype of ROBO1 (not found in any other chromosomes in our samples), the expression of ROBO1 from this haplotype was absent or attenuated in affected individuals. Sequencing of ROBO1 in apes revealed multiple coding differences, and the selection pressure was significantly different between the human, chimpanzee, and gorilla branch as compared to orangutan. We also identified novel exons and splice variants of ROBO1 that may explain the apparent phenotypic differences between human and mouse in heterozygous loss of ROBO1. We conclude that dyslexia may be caused by partial haplo-insufficiency for ROBO1 in rare families. Thus, our data suggest that a slight disturbance in neuronal axon crossing across the midline between brain hemispheres, dendrite guidance, or another function of ROBO1 may manifest as a specific reading disability in humans.http://europepmc.org/articles/PMC1270007?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Katariina Hannula-Jouppi
Nina Kaminen-Ahola
Mikko Taipale
Ranja Eklund
Jaana Nopola-Hemmi
Helena Kääriäinen
Juha Kere
spellingShingle Katariina Hannula-Jouppi
Nina Kaminen-Ahola
Mikko Taipale
Ranja Eklund
Jaana Nopola-Hemmi
Helena Kääriäinen
Juha Kere
The axon guidance receptor gene ROBO1 is a candidate gene for developmental dyslexia.
PLoS Genetics
author_facet Katariina Hannula-Jouppi
Nina Kaminen-Ahola
Mikko Taipale
Ranja Eklund
Jaana Nopola-Hemmi
Helena Kääriäinen
Juha Kere
author_sort Katariina Hannula-Jouppi
title The axon guidance receptor gene ROBO1 is a candidate gene for developmental dyslexia.
title_short The axon guidance receptor gene ROBO1 is a candidate gene for developmental dyslexia.
title_full The axon guidance receptor gene ROBO1 is a candidate gene for developmental dyslexia.
title_fullStr The axon guidance receptor gene ROBO1 is a candidate gene for developmental dyslexia.
title_full_unstemmed The axon guidance receptor gene ROBO1 is a candidate gene for developmental dyslexia.
title_sort axon guidance receptor gene robo1 is a candidate gene for developmental dyslexia.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2005-10-01
description Dyslexia, or specific reading disability, is the most common learning disorder with a complex, partially genetic basis, but its biochemical mechanisms remain poorly understood. A locus on Chromosome 3, DYX5, has been linked to dyslexia in one large family and speech-sound disorder in a subset of small families. We found that the axon guidance receptor gene ROBO1, orthologous to the Drosophila roundabout gene, is disrupted by a chromosome translocation in a dyslexic individual. In a large pedigree with 21 dyslexic individuals genetically linked to a specific haplotype of ROBO1 (not found in any other chromosomes in our samples), the expression of ROBO1 from this haplotype was absent or attenuated in affected individuals. Sequencing of ROBO1 in apes revealed multiple coding differences, and the selection pressure was significantly different between the human, chimpanzee, and gorilla branch as compared to orangutan. We also identified novel exons and splice variants of ROBO1 that may explain the apparent phenotypic differences between human and mouse in heterozygous loss of ROBO1. We conclude that dyslexia may be caused by partial haplo-insufficiency for ROBO1 in rare families. Thus, our data suggest that a slight disturbance in neuronal axon crossing across the midline between brain hemispheres, dendrite guidance, or another function of ROBO1 may manifest as a specific reading disability in humans.
url http://europepmc.org/articles/PMC1270007?pdf=render
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