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A Child With Mild X-Linked Intellectual Disability and a Microduplication at Xp22.12 Including RPS6KA3

多重连接依赖探针扩增 先证者 基因复制 医学 遗传学 智力残疾 精神运动迟缓 基因 生物 外显子 病理 突变 替代医学
作者
María‐Isabel Tejada,Cristina Martínez-Bouzas,Ainhoa García-Ribes,Susana Larrucea,Francesco Acquadro,Juan C. Cigudosa,Stefanie Belet,Guy Froyen,Maria-Asun López-Aríztegui
出处
期刊:Pediatrics [American Academy of Pediatrics]
卷期号:128 (4): e1029-e1033 被引量:15
标识
DOI:10.1542/peds.2010-0388
摘要

Multiplex ligation-dependent probe amplification (MLPA) and array- comparative genomic hybridization analysis have been proven to be useful in the identification of submicroscopic copy-number imbalances in families with nonsyndromic X-linked intellectual disability (NS-XLID). Here we report the first description of a child with mild intellectual disability and a submicroscopic duplication at Xp22.12 identified by MLPA with a P106 MRX kit (MRC-Holland, Amsterdam, Netherlands) and further confirmed and characterized with a custom 244-k oligo-array, fluorescence in situ hybridization, quantitative polymerase chain reaction (qPCR), and immunoblotting. This 1.05-megabase duplication encompasses 7 genes, RPS6KA3 being the only of these genes known to be related to ID. The proband was an 8-year-old boy referred to the genetics unit for psychomotor retardation and learning disabilities. Both maternal brothers also showed learning difficulties and delayed language during childhood in a similar way to the proband. These boys also carried the duplication, as did the healthy mother and grandmother of the proband. The same duplication was also observed in the 5-year-old younger brother who presented with features of developmental delay and learning disabilities during the previous year. Increased RPS6KA3/RSK2 levels were demonstrated in the proband by qPCR and immunoblotting. To our knowledge, this is the first family identified with a submicroscopic duplication including the entire RPS6KA3/RSK2 gene, and our findings suggest that an increased dose of this gene is responsible for a mild form of NS-XLID.
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