A role for transcription factor GTF2IRD2 in executive function in Williams-Beuren syndrome.

Executive functions are amongst the most heritable cognitive traits with twin studies indicating a strong genetic origin. However genes associated with this domain are unknown. Our research into the neurodevelopmental disorder Williams-Beuren syndrome (WBS) has identified a gene within the causative...

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Main Authors: Melanie A Porter, Carol Dobson-Stone, John B J Kwok, Peter R Schofield, William Beckett, May Tassabehji
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3485271?pdf=render
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spelling doaj-5bd28499212c4a71b03d35e2cff3f63b2020-11-25T02:41:25ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01710e4745710.1371/journal.pone.0047457A role for transcription factor GTF2IRD2 in executive function in Williams-Beuren syndrome.Melanie A PorterCarol Dobson-StoneJohn B J KwokPeter R SchofieldWilliam BeckettMay TassabehjiExecutive functions are amongst the most heritable cognitive traits with twin studies indicating a strong genetic origin. However genes associated with this domain are unknown. Our research into the neurodevelopmental disorder Williams-Beuren syndrome (WBS) has identified a gene within the causative recurrent 1.5/1.6 Mb heterozygous microdeletion on chromosome 7q11.23, which may be involved in executive functioning. Comparative genome array screening of 55 WBS patients revealed a larger ∼1.8 Mb microdeletion in 18% of cases, which results in the loss of an additional gene, the transcription factor GTF2IRD2. The GTF gene family of transcription factors (GTF2I, GTF2IRD1 and GTF2IRD2) are all highly expressed in the brain, and GTF2I and GTF2IRD1 are involved in the pathogenesis of the cognitive and behavioural phenotypes associated with WBS. A multi-level analysis of cognitive, behavioural and psychological functioning in WBS patients showed that those with slightly larger deletions encompassing GTF2IRD2 were significantly more cognitively impaired in the areas of spatial functioning, social reasoning, and cognitive flexibility (a form of executive functioning). They also displayed significantly more obsessions and externalizing behaviours, a likely manifestation of poor cognitive flexibility and executive dysfunction. We provide the first evidence for a role for GTF2IRD2 in higher-level (executive functioning) abilities and highlight the importance of integrating detailed molecular characterisation of patients with comprehensive neuropsychological profiling to uncover additional genotype-phenotype correlations. The identification of specific genes which contribute to executive function has important neuropsychological implications in the treatment of patients with conditions like WBS, and will allow further studies into their mechanism of action.http://europepmc.org/articles/PMC3485271?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Melanie A Porter
Carol Dobson-Stone
John B J Kwok
Peter R Schofield
William Beckett
May Tassabehji
spellingShingle Melanie A Porter
Carol Dobson-Stone
John B J Kwok
Peter R Schofield
William Beckett
May Tassabehji
A role for transcription factor GTF2IRD2 in executive function in Williams-Beuren syndrome.
PLoS ONE
author_facet Melanie A Porter
Carol Dobson-Stone
John B J Kwok
Peter R Schofield
William Beckett
May Tassabehji
author_sort Melanie A Porter
title A role for transcription factor GTF2IRD2 in executive function in Williams-Beuren syndrome.
title_short A role for transcription factor GTF2IRD2 in executive function in Williams-Beuren syndrome.
title_full A role for transcription factor GTF2IRD2 in executive function in Williams-Beuren syndrome.
title_fullStr A role for transcription factor GTF2IRD2 in executive function in Williams-Beuren syndrome.
title_full_unstemmed A role for transcription factor GTF2IRD2 in executive function in Williams-Beuren syndrome.
title_sort role for transcription factor gtf2ird2 in executive function in williams-beuren syndrome.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Executive functions are amongst the most heritable cognitive traits with twin studies indicating a strong genetic origin. However genes associated with this domain are unknown. Our research into the neurodevelopmental disorder Williams-Beuren syndrome (WBS) has identified a gene within the causative recurrent 1.5/1.6 Mb heterozygous microdeletion on chromosome 7q11.23, which may be involved in executive functioning. Comparative genome array screening of 55 WBS patients revealed a larger ∼1.8 Mb microdeletion in 18% of cases, which results in the loss of an additional gene, the transcription factor GTF2IRD2. The GTF gene family of transcription factors (GTF2I, GTF2IRD1 and GTF2IRD2) are all highly expressed in the brain, and GTF2I and GTF2IRD1 are involved in the pathogenesis of the cognitive and behavioural phenotypes associated with WBS. A multi-level analysis of cognitive, behavioural and psychological functioning in WBS patients showed that those with slightly larger deletions encompassing GTF2IRD2 were significantly more cognitively impaired in the areas of spatial functioning, social reasoning, and cognitive flexibility (a form of executive functioning). They also displayed significantly more obsessions and externalizing behaviours, a likely manifestation of poor cognitive flexibility and executive dysfunction. We provide the first evidence for a role for GTF2IRD2 in higher-level (executive functioning) abilities and highlight the importance of integrating detailed molecular characterisation of patients with comprehensive neuropsychological profiling to uncover additional genotype-phenotype correlations. The identification of specific genes which contribute to executive function has important neuropsychological implications in the treatment of patients with conditions like WBS, and will allow further studies into their mechanism of action.
url http://europepmc.org/articles/PMC3485271?pdf=render
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