3p14.1 de novo microdeletion involving the FOXP1 gene in an adult patient with autism, severe speech delay and deficit of motor coordination

Interstitial deletion of chromosome region 3p14.1, including FOXP1 gene, is relatively rare and, until recently, there were no strong evidences to support the hypothesis that this microdeletion could play a role in the etiology of genomic disorders. Here, we report on an adult patient with a recogni...

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Veröffentlicht in:Gene 2013-03, Vol.516 (1), p.107-113
Hauptverfasser: Palumbo, Orazio, D'Agruma, Leonardo, Minenna, Adelaide Franca, Palumbo, Pietro, Stallone, Raffaella, Palladino, Teresa, Zelante, Leopoldo, Carella, Massimo
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Sprache:eng
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Zusammenfassung:Interstitial deletion of chromosome region 3p14.1, including FOXP1 gene, is relatively rare and, until recently, there were no strong evidences to support the hypothesis that this microdeletion could play a role in the etiology of genomic disorders. Here, we report on an adult patient with a recognizable phenotype of autism, severe speech delay, deficit of motor coordination and typical dysmorphic features. Analysis of a dense whole genome single-nucleotide polymorphism (SNP) array showed a 1Mb interstitial deletion of chromosome region 3p14.1 including the entire coding region of FOXP1 (MIM 605515) gene. In order to study the parental origin of the deletion, we analyzed selected SNPs in the deleted area in the proband and his parents showing Mendelian incompatibilities suggesting a de novo deletion on the chromosome of paternal origin. Despite the frequency of this genomic alteration has not been estimated, our patient confirm the hypothesis that microdeletion of 3p14.1 seems to be a rare cause of cognitive disorders and that haploinsufficiency of FOXP1 may play a role in neurological and language deficits in patients carrying a 3p14.1 deletion. Finally, our patient is also important because useful to further delineate the clinical spectrum secondary to the 3p14.1 microdeletions. ► We report a case with typical phenotype carrying a deletion of FOXP1 gene. ► We analyze the role of FOXP1 in neurological and language deficits. ► The age of our patient provides insights into the adult phenotype of the condition. ► Our study confirms that FOXP1 deletion causes a syndrome with specific phenotype.
ISSN:0378-1119
1879-0038
DOI:10.1016/j.gene.2012.12.073