Yayın: Screening slc2a1 gene for sequence and copy number variations associated with glut-1 deficiency syndrome
Tarih
Kurum Yazarları
Örnek, Ergüzeloğlu Cemre
Yazarlar
Kara, Bülent
Karacan, İlker
Özdemir, Ozkan
Kesim, Yeşim
Bebek, Nerses
Özbek, Uğur
Uğur İseri, Sibel Aylin
Danışman
Dil
Türü
Yayıncı:
Istanbul Univ, Fac Medicine, Publ Off
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Özet
Objective: Glucose transporter-1 deficiency syndrome (GLUT1- DS) is defined as a metabolic encephalopathy that is associated with heterozygous and usually de novo pathogenic variations in the SLC2A1 (solute carrier family2 member1) gene.Materials and Methods: In this study, all coding exons and neighboring intronic regions of SLC2A1 were Sanger sequenced in 12 patients with clinically suspected GLUT1-DS. For de novo variations revealed after sequencing and segregation analysis, we also performed genome wide Single Nucleotide Polymor- phism (SNP) genotyping to confirm parental relatedness with the proband. In patients without any sequence variations, real-time quantitative real-time polymerase chain reaction (qPCR) was applied to determine the presence of any copy number variations (CNV).Results: Sanger sequencing followed by bioinformatics analysis, segregation in the family and SNP array genotyping revealed two novel and de novo pathogenic variations associated with the GLUT1-DS phenotype in 2 patients. qPCR results were compatible with one copy loss of SLC2A1 gene in another patient. All variations identified herein are likely to have caused null al-leles and resulted in GLUT1-DS through haplo insufficiency.Disscussion : In this study we used a series of molecular genetic approaches in order to identify all possible variations in SLC2A1 that may be associated with GLUT1-DS. This collective effort fa- cilitated diagnosis in 3 patients.
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Konusu
Glucose transporter-1 deficiency syndrome (glut1-ds), Slc2a1, De novo variations, Cnv analysis, Snp array, Science & technology, Life sciences & biomedicine, Medicine, general & internal, General & internal medicine