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Revisiting Exome Data Identified Missed Splice Site Variant of the Asparagine Synthetase ( ASNS ) Gene.


ABSTRACT: Next-generation sequencing, such as whole-exome sequencing (WES), is increasingly used in the study of Mendelian disorders, yet many are reported as "negative." Inappropriate variant annotation and filtering steps are reasons for missing the molecular diagnosis. Noncoding variants, including splicing mutations, are examples of variants that can be overlooked. Herein, we report a family of four affected newborns, and all presented with severe congenital microcephaly. Initial research WES analysis identified a damaging homozygous variant in NME1 gene as a possible cause of primary microcephaly phenotype in these patients. However, reanalysis of the exome data uncovered a biallelic splice site variant in asparagine synthetase gene which seems to be the possible cause of the phenotype in these patients. This study highlights the importance of revisiting the exome data and the issue of "negative" exome and the afterward approaches to identify and prove new candidate genes.

SUBMITTER: Al-Kasbi G 

PROVIDER: S-EPMC10984708 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Revisiting Exome Data Identified Missed Splice Site Variant of the Asparagine Synthetase ( <i>ASNS</i> ) Gene.

Al-Kasbi Ghalia G   Al-Murshedi Fathiya F   Al-Futaisi Amna A   Al-Jabry Tariq T   Zadjali Fahad F   Al-Yahyaee Said S   Al-Maawali Almundher A  

Journal of pediatric genetics 20221013 1


Next-generation sequencing, such as whole-exome sequencing (WES), is increasingly used in the study of Mendelian disorders, yet many are reported as "negative." Inappropriate variant annotation and filtering steps are reasons for missing the molecular diagnosis. Noncoding variants, including splicing mutations, are examples of variants that can be overlooked. Herein, we report a family of four affected newborns, and all presented with severe congenital microcephaly. Initial research WES analysis  ...[more]

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