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The dyslexia susceptibility KIAA0319 gene shows a specific expression pattern during zebrafish development supporting a role beyond neuronal migration

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Date
01/11/2019
Author
Gostic, Monika
Martinelli, Angela
Tucker, Carl
Yang, Zhengyi
Gasparoli, Federico Maria
Ewart, Jade-Yi
Dholakia, Kishan
Sillar, Keith
Tello, Javier
Paracchini, Silvia
Keywords
Dyslexia
Development
Zebrafish
Gene expression
Sensory organs
Notochord
BF Psychology
QH301 Biology
QH426 Genetics
RC0321 Neuroscience. Biological psychiatry. Neuropsychiatry
NDAS
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Abstract
Dyslexia is a common neurodevelopmental disorder caused by a significant genetic component. The KIAA0319 gene is one of the most robust dyslexia susceptibility factors but its function remains poorly understood. Initial RNA‐interference studies in rats suggested a role in neuronal migration whereas subsequent work with double knock‐out mouse models for both Kiaa0319 and its paralogue Kiaa0319‐like reported effects in the auditory system but not in neuronal migration. To further understand the role of KIAA0319 during neurodevelopment, we carried out an expression study of its zebrafish orthologue at different embryonic stages. We used different approaches including RNAscope in situ hybridization combined with light‐sheet microscopy. The results show particularly high expression during the first few hours of development. Later, expression becomes localised in well‐defined structures. In addition to high expression in the brain, we report for the first time expression in the eyes and the notochord. Surprisingly, kiaa0319‐like, which generally shows a similar expression pattern to kiaa0319, was not expressed in the notochord suggesting a distinct role for kiaa0319 in this structure. This observation was supported by the identification of notochord enhancers enriched upstream of the KIAA0319 transcription start site, in both zebrafish and humans. This study supports a developmental role for KIAA0319 in the brain as well as in other developing structures, particularly in the notochord which, is key for establishing body patterning in vertebrates.
Citation
Gostic , M , Martinelli , A , Tucker , C , Yang , Z , Gasparoli , F M , Ewart , J-Y , Dholakia , K , Sillar , K , Tello , J & Paracchini , S 2019 , ' The dyslexia susceptibility KIAA0319 gene shows a specific expression pattern during zebrafish development supporting a role beyond neuronal migration ' , The Journal of Comparative Neurology , vol. 527 , no. 16 , pp. 2634-2643 . https://doi.org/10.1002/cne.24696
Publication
The Journal of Comparative Neurology
Status
Peer reviewed
DOI
https://doi.org/10.1002/cne.24696
ISSN
0021-9967
Type
Journal article
Rights
© 2019 The Authors. The Journal of Comparative Neurology published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
Description
Funding information: Carnegie Trust for the Universities of Scotland, Grant/Award Number: 50341; Engineering and Physical Sciences Research Council, Grant/Award Numbers: EP/R004854/1, EP/P030017/1; EuFishBioMed; Northwood Trust; Royal Society, Grant/Award Number: RG160373
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  • University of St Andrews Research
URL
https://doi.org/10.1101/267617
URI
http://hdl.handle.net/10023/17535

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