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Two Cases of Recessive Intellectual Disability Caused by NDST1 and METTL23 Variants.


ABSTRACT: Intellectual disability (ID) is a highly heterogeneous genetic condition with more than a thousand genes described so far. By exome sequencing of two consanguineous families presenting hallmark features of ID, we identified two homozygous variants in two genes previously associated with autosomal recessive ID: NDST1 (c.1966G>A; p.Asp656Asn) and METTL23 (c.310T>C; p.Phe104Leu). The segregation of the variants was validated by Sanger sequencing in all family members. In silico homology modeling of wild-type and mutated proteins revealed substantial changes in the secondary structure of both proteins, indicating a possible effect on function. The identification and validation of new pathogenic NDST1 and METTL23 variants in two cases of autosomal recessive ID further highlight the importance of these genes in proper brain function and development.

SUBMITTER: Khan A 

PROVIDER: S-EPMC7563614 | biostudies-literature | 2020 Aug

REPOSITORIES: biostudies-literature

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Two Cases of Recessive Intellectual Disability Caused by <i>NDST1</i> and <i>METTL23</i> Variants.

Khan Amjad A   Miao Zhichao Z   Umair Muhammad M   Ullah Amir A   Alshabeeb Mohammad A MA   Bilal Muhammad M   Ahmad Farooq F   Rappold Gudrun A GA   Ansar Muhammad M   Carapito Raphael R  

Genes 20200831 9


Intellectual disability (ID) is a highly heterogeneous genetic condition with more than a thousand genes described so far. By exome sequencing of two consanguineous families presenting hallmark features of ID, we identified two homozygous variants in two genes previously associated with autosomal recessive ID: <i>NDST1</i> (c.1966G>A; p.Asp656Asn) and <i>METTL23</i> (c.310T>C; p.Phe104Leu). The segregation of the variants was validated by Sanger sequencing in all family members. In silico homolo  ...[more]

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