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Intragenic deletions of the IGF1 receptor gene in five individuals with psychiatric phenotypes and developmental delay.


ABSTRACT: Haploinsufficiency of the gene encoding the insulin-like growth factor 1 receptor (IGF1R), either caused by telomeric 15q26 deletions, or by heterozygous point mutations in IGF1R, segregate with short stature and various other phenotypes, including microcephaly and dysmorphic facial features. Psychomotor retardation and behavioral anomalies have been seen in some cases. Here we report small, intragenic deletions of IGF1R, identified by chromosome microarray analysis in two unrelated families affected primarily with neuropsychiatric phenotypes including developmental delay, intellectual disability and aggressive/autoaggressive behaviors. The deletions are in frame, and both wild-type and mutant mRNAs are expressed as measured by quantitative real-time PCR. While short stature is considered a phenotypic hallmark of IGF1R haploinsufficiency, the present report suggests that in frame exon deletions of IGF1R present predominantly with cognitive and neuropsychiatric phenotypes.

SUBMITTER: Witsch J 

PROVIDER: S-EPMC3798847 | biostudies-literature | 2013 Nov

REPOSITORIES: biostudies-literature

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Intragenic deletions of the IGF1 receptor gene in five individuals with psychiatric phenotypes and developmental delay.

Witsch Jens J   Szafranski Przemyslaw P   Chen Chun-An CA   Immken LaDonna L   Simpson Patel Gayle G   Hixson Patricia P   Cheung Sau Wai SW   Stankiewicz Pawel P   Schaaf Christian P CP  

European journal of human genetics : EJHG 20130313 11


Haploinsufficiency of the gene encoding the insulin-like growth factor 1 receptor (IGF1R), either caused by telomeric 15q26 deletions, or by heterozygous point mutations in IGF1R, segregate with short stature and various other phenotypes, including microcephaly and dysmorphic facial features. Psychomotor retardation and behavioral anomalies have been seen in some cases. Here we report small, intragenic deletions of IGF1R, identified by chromosome microarray analysis in two unrelated families aff  ...[more]

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