FAM20A-Associated Amelogenesis Imperfecta: Gene Variants with Functional Verification and Histological Features

Chin J Dent Res. 2024 Mar 28;27(1):53-63. doi: 10.3290/j.cjdr.b5136761.

Abstract

Objective: To investigate FAM20A gene variants and histological features of amelogenesis imperfecta and to further explore the functional impact of these variants.

Methods: Whole-exome sequencing (WES) and Sanger sequencing were used to identify pathogenic gene variants in three Chinese families with amelogenesis imperfecta. Bioinformatics analysis, in vitro histological examinations and experiments were conducted to study the functional impact of gene variants, and the histological features of enamel, keratinised oral mucosa and dental follicle.

Results: The authors identified two nonsense variants c. 406C > T (p.Arg136*) and c.826C > T (p.Arg176*) in a compound heterozygous state in family 1, two novel frameshift variants c.936dupC (p.Val313Argfs*67) and c.1483dupC (p.Leu495Profs*44) in a compound heterozygous state in family 2, and a novel homozygous frameshift variant c.530_531insGGTC (p.Ser178Valfs*21) in family 3. The enamel structure was abnormal, and psammomatoid calcifications were identified in both the gingival mucosa and dental follicle. The bioinformatics and subcellular localisation analyses indicated these variants to be pathogenic. The secondary and tertiary structure analysis speculated that these five variants would cause structural damage to FAM20A protein.

Conclusion: The present results broaden the variant spectrum and clinical and histological findings of diseases associated with FAM20A, and provide useful information for future genetic counselling and functional investigation.

Keywords: FAM20A; amelogenesis imperfecta; frameshift variants; mutations; nonsense variants.

MeSH terms

  • Amelogenesis Imperfecta* / genetics
  • Calcification, Physiologic
  • Computational Biology
  • Dental Enamel
  • Dental Enamel Proteins* / genetics
  • East Asian People
  • Humans

Substances

  • Dental Enamel Proteins
  • FAM20A protein, human