Three de novo variants in KMT2A (MLL) identified by whole exome sequencing in patients with Wiedemann–Steiner syndrome

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  • Sukun Luo
  • Bo Bi
  • Wenqian Zhang
  • Rui Zhou
  • Wei Chen
  • Peiwei Zhao
  • Yufeng Huang
  • Li Yuan
  • Xuelian He

Background: Wiedemann–Steiner syndrome (WSS) is an autosomal dominant disorder characterized by short stature, hypertrichosis, intellectual disability, developmental delay, along with facial dysmorphism. WSS patients exhibit great phenotypic heterogeneities. Some variants in KMT2A (MLL) gene have been identified as the cause of WSS. Methods: Whole exome sequencing on the probands followed by Sanger sequencing validations in the family were applied to determine genetic variants. In silico analyses were used for predicting potential effects of the variants. Results: We identified three novel de novo heterozygous variants: c.883A>T (p.Lys295*), c.4171C>T (p.Gln1391*), and c.3499T>C (p.Cys1167Arg), in KMT2A gene from three unrelated Chinese WSS patients. According to the American College of Medical Genetics and Genomics (ACMG) guidelines, these three variants were classified as pathogenic, pathogenic and likely pathogenic variant, respectively. By reviewing all the available cases with same mutated KMT2A regions as the three patients had, we found that in addition to the representative symptoms, our patients exhibited some sporadically observed symptoms, such as severe ophthalmological symptoms, endocardial fibroelastosis, cytomegalovirus infection, and feet eversion. We also revealed that variants in different KMT2A regions contribute to the phenotypic heterogeneity of WSS, highlighting challenges in the diagnosis of syndromic disorders spanning a broad phenotypic spectrum. Conclusion: Our study would aid in further broadening our knowledge about the genotype–phenotype correlation of WSS.

Original languageEnglish
Article numbere1798
JournalMolecular Genetics & Genomic Medicine
Volume9
Issue number10
Number of pages11
ISSN2324-9269
DOIs
Publication statusPublished - 2021

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© 2021 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals LLC

    Research areas

  • de novo variant, endocardial fibroelastosis, KMT2A, neurodevelopment delay, Wiedemann–Steiner syndrome

ID: 280282839