Literature DB >> 19617637

Over-expression of a human chromosome 22q11.2 segment including TXNRD2, COMT and ARVCF developmentally affects incentive learning and working memory in mice.

Go Suzuki1, Kathryn M Harper, Takeshi Hiramoto, Birgit Funke, MoonSook Lee, Gina Kang, Mahalah Buell, Mark A Geyer, Raju Kucherlapati, Bernice Morrow, Pekka T Männistö, Soh Agatsuma, Noboru Hiroi.   

Abstract

Duplication of human chromosome 22q11.2 is associated with elevated rates of mental retardation, autism and many other behavioral phenotypes. However, because duplications cover 1.5-6 Mb, the precise manner in which segments of 22q11.2 causally affect behavior is not known in humans. We have now determined the developmental impact of over-expression of an approximately 190 kb segment of human 22q11.2, which includes the genes TXNRD2, COMT and ARVCF, on behaviors in bacterial artificial chromosome (BAC) transgenic (TG) mice. BAC TG mice and wild-type (WT) mice were tested for their cognitive capacities, affect- and stress-related behaviors and motor activity at 1 and 2 months of age. An enzymatic assay determined the impact of BAC over-expression on the activity level of COMT. BAC TG mice approached a rewarded goal faster (i.e. incentive learning), but were impaired in delayed rewarded alternation during development. In contrast, BAC TG and WT mice were indistinguishable in rewarded alternation without delays, spontaneous alternation, prepulse inhibition, social interaction, anxiety-, stress- and fear-related behaviors and motor activity. Compared with WT mice, BAC TG mice had an approximately 2-fold higher level of COMT activity in the prefrontal cortex, striatum and hippocampus. These data suggest that over-expression of this 22q11.2 segment enhances incentive learning and impairs the prolonged maintenance of working memory, but has no apparent effect on working memory per se, affect- and stress-related behaviors or motor capacity. High copy numbers of this 22q11.2 segment might contribute to a highly selective set of phenotypes in learning and cognition during development.

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Year:  2009        PMID: 19617637      PMCID: PMC2748897          DOI: 10.1093/hmg/ddp334

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  60 in total

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  21 in total

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Review 4.  Critical reappraisal of mechanistic links of copy number variants to dimensional constructs of neuropsychiatric disorders in mouse models.

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Review 5.  Molecular mechanisms in 22q11 deletion syndrome.

Authors:  Nigel M Williams
Journal:  Schizophr Bull       Date:  2011-09       Impact factor: 9.306

6.  Comparative Phosphoproteomic Profiling of Type III Adenylyl Cyclase Knockout and Control, Male, and Female Mice.

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7.  Tbx1: identification of a 22q11.2 gene as a risk factor for autism spectrum disorder in a mouse model.

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Journal:  Hum Mol Genet       Date:  2011-09-09       Impact factor: 6.150

Review 8.  Copy number variation at 22q11.2: from rare variants to common mechanisms of developmental neuropsychiatric disorders.

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9.  Exome-Wide Association Study Identified New Risk Loci for Hirschsprung's Disease.

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10.  Reciprocal Copy Number Variations at 22q11.2 Produce Distinct and Convergent Neurobehavioral Impairments Relevant for Schizophrenia and Autism Spectrum Disorder.

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