0000000001139037

AUTHOR

Cornelia Oppitz

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NDST1 missense mutations in autosomal recessive intellectual disability.

2014

NDST1 was recently proposed as a candidate gene for autosomal recessive intellectual disability in two families. It encodes a bifunctional GlcNAc N-deacetylase/N-sulfotransferase with important functions in heparan sulfate biosynthesis. In mice, Ndst1 is crucial for embryonic development and homozygous null mutations are perinatally lethal. We now report on two additional unrelated families with homozygous missense NDST1 mutations. All mutations described to date predict the substitution of conserved amino acids in the sulfotransferase domain, and mutation modeling predicts drastic alterations in the local protein conformation. Comparing the four families, we noticed significant overlap in …

AdultMaleModels MolecularCandidate geneAdolescentGenotypeProtein ConformationDNA Mutational AnalysisMutation MissenseGenes RecessiveBiologyBioinformaticsPolymorphism Single NucleotideAnimals Genetically ModifiedEpilepsyConsanguinityYoung AdultProtein structureIntellectual DisabilityIntellectual disabilityGeneticsmedicineMissense mutationAnimalsHumansChildGenetics (clinical)GeneticsGene knockdownMuscular hypotoniaBehavior AnimalComputational BiologyFaciesHigh-Throughput Nucleotide Sequencingmedicine.diseasePhenotypePedigreePhenotypeChild PreschoolGene Knockdown TechniquesDrosophilaFemaleSulfotransferasesGenome-Wide Association StudyAmerican journal of medical genetics. Part A
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