Author/Authors :
Iqbal، نويسنده , , Zafar and Neveling، نويسنده , , Kornelia and Razzaq، نويسنده , , Attia and Shahzad، نويسنده , , Mohsin and Zahoor، نويسنده , , Muhammad Yasir and Qasim، نويسنده , , Muhammad and Gilissen، نويسنده , , Christian and Wieskamp، نويسنده , , Nienke and Kwint، نويسنده , , Michael P. and Gijsen، نويسنده , , Sabine and de Brouwer، نويسنده , , Arjan P.M. and Veltman، نويسنده , , Joris A.، نويسنده ,
Abstract :
Backgrounds and Aims
eneration sequencing (NGS) approaches have revolutionized the identification of mutations underlying genetic disorders. This technology is particularly useful for the identification of mutations in known and new genes for conditions with extensive genetic heterogeneity. In the present study we investigated a consanguineous Pakistani family with intellectual disability (ID).
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ping was carried out using 250k and 6k SNP microarrays in order to perform homozygosity mapping and copy number variation (CNV) analysis. Targeted NGS was performed to identify the genetic defect in this family. qPCR was performed to validate and confirm the NGS result.
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gosity mapping positioned the causative defect on chromosome 2p25.3–p25.2. Subsequent targeted NGS revealed an intragenic deletion of five exons of the gene TPO.
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a powerful method to uncover submicroscopic structural variations. This result demonstrates that an unbiased screening approach such as NGS can help to identify even unexpected disease-causing mutations.
Keywords :
Homozygosity mapping , Submicroscopic , TPO , intellectual disability , next generation sequencing , Congenital Hypothyroidism