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Evaluation of non-coding variation in GLUT1 deficiency
journal contribution
posted on 2016-12-01, 00:00 authored by Yu-Chi Liu, Jia Wei Audrey Lee, Susannah Bellows, John A Damiano, Saul A Mullen, Samuel F Berkovic, Melanie Bahlo, Ingrid E Scheffer, Michael S Hildebrand, Clinical GroupAIM: Loss-of-function mutations in SLC2A1, encoding glucose transporter-1 (GLUT-1), lead to dysfunction of glucose transport across the blood-brain barrier. Ten percent of cases with hypoglycorrhachia (fasting cerebrospinal fluid [CSF] glucose <2.2mmol/L) do not have mutations. We hypothesized that GLUT1 deficiency could be due to non-coding SLC2A1 variants. METHOD: We performed whole exome sequencing of one proband with a GLUT1 phenotype and hypoglycorrhachia negative for SLC2A1 sequencing and copy number variants. We studied a further 55 patients with different epilepsies and low CSF glucose who did not have exonic mutations or copy number variants. We sequenced non-coding promoter and intronic regions. We performed mRNA studies for the recurrent intronic variant. RESULTS: The proband had a de novo splice site mutation five base pairs from the intron-exon boundary. Three of 55 patients had deep intronic SLC2A1 variants, including a recurrent variant in two. The recurrent variant produced less SLC2A1 mRNA transcript. INTERPRETATION: Fasting CSF glucose levels show an age-dependent correlation, which makes the definition of hypoglycorrhachia challenging. Low CSF glucose levels may be associated with pathogenic SLC2A1 mutations including deep intronic SLC2A1 variants. Extending genetic screening to non-coding regions will enable diagnosis of more patients with GLUT1 deficiency, allowing implementation of the ketogenic diet to improve outcomes.
History
Journal
Developmental Medicine & Child NeurologyVolume
58Issue
12Pagination
1295 - 1302Publisher
WileyLocation
Chichester, Eng.Publisher DOI
ISSN
0012-1622eISSN
1469-8749Language
engPublication classification
C1.1 Refereed article in a scholarly journalCopyright notice
2016, Mac Keith PressUsage metrics
Categories
No categories selectedKeywords
AdultCarbohydrate Metabolism, Inborn ErrorsChild, PreschoolEpilepsyExomeFemaleGlucoseGlucose Transporter Type 1HumansInfantMaleMonosaccharide Transport ProteinsPedigreeSequence AnalysisScience & TechnologyLife Sciences & BiomedicineClinical NeurologyPediatricsNeurosciences & NeurologyGLUCOSE-TRANSPORTER GLUT1GLUCOSE-TRANSPORTER-1 DEFICIENCYSLC2A1METABOLISMEXPRESSIONMUTATIONSSPECTRUMClinical Group