Identification of DSPP novel variants and phenotype analysis in dentinogenesis dysplasia Shields type II patients

Clin Oral Investig. 2023 Jul;27(7):3885-3894. doi: 10.1007/s00784-023-05009-y. Epub 2023 Apr 5.

Abstract

Objectives: To investigate the genetic causes and teeth characteristics of dentin dysplasia Shields type II(DD-II) in three Chinese families.

Materials and methods: Data from three Chinese families affected with DD-II were collected. Whole-exome sequencing (WES) and whole-genome sequencing (WGS) were conducted to screen for variations, and Sanger sequencing was used to verify mutation sites. The physical and chemical characteristics of the affected teeth including tooth structure, hardness, mineral content, and ultrastructure were investigated.

Results: A novel frameshift deletion mutation c.1871_1874del(p.Ser624fs) in DSPP was found in families A and B, while no pathogenic mutation was found in family C. The affected teeth's pulp cavities were obliterated, and the root canals were smaller than normal teeth and irregularly distributed comprising a network. The patients' teeth also had reduced dentin hardness and highly irregular dentinal tubules. The Mg content of the teeth was significantly lower than that of the controls, but the Na content was obviously higher than that of the controls.

Conclusions: A novel frameshift deletion mutation, c.1871_1874del (p.Ser624fs), in the DPP region of the DSPP gene causes DD-II. The DD-II teeth demonstrated compromised mechanical properties and changed ultrastructure, suggesting an impaired function of DPP. Our findings expand the mutational spectrum of the DSPP gene and strengthen the understanding of clinical phenotypes related to the frameshift deletion in the DPP region of the DSPP gene.

Clinical relevance: A DSPP mutation can alter the characteristics of the affected teeth, including tooth structure, hardness, mineral content, and ultrastructure.

Keywords: Dentin dysplasia-II; Dentin phosphoprotein (DPP); Dentin sialophosphoprotein (DSPP); Hereditary dentin defects.

MeSH terms

  • Dentin / pathology
  • Dentinogenesis
  • Dentinogenesis Imperfecta* / genetics
  • Extracellular Matrix Proteins / genetics
  • Humans
  • Mutation
  • Phenotype
  • Tooth*

Substances

  • Extracellular Matrix Proteins
  • dentin sialophosphoprotein