AMELX Mutations and Genotype–Phenotype Correlation in X-Linked Amelogenesis Imperfecta

Author:

Wang Shih-Kai12ORCID,Zhang Hong3ORCID,Lin Hua-Chieh1,Wang Yin-Lin12ORCID,Lin Shu-Chun12,Seymen Figen4,Koruyucu Mine5ORCID,Simmer James P.3,Hu Jan C.-C.3ORCID

Affiliation:

1. Department of Dentistry, National Taiwan University School of Dentistry, No. 1, Changde St., Taipei City 100229, Taiwan

2. Department of Pediatric Dentistry, National Taiwan University Children’s Hospital, No. 8, Zhongshan S. Rd., Taipei City 100226, Taiwan

3. Department of Biologic and Materials Sciences, University of Michigan School of Dentistry, 1011 North University, Ann Arbor, MI 48109, USA

4. Department of Pediatric Dentistry, Faculty of Dentistry, Altinbas University, Istanbul 34147, Turkey

5. Department of Pedodontics, Faculty of Dentistry, Istanbul University, Istanbul 34116, Turkey

Abstract

AMELX mutations cause X-linked amelogenesis imperfecta (AI), known as AI types IE, IIB, and IIC in Witkop’s classification, characterized by hypoplastic (reduced thickness) and/or hypomaturation (reduced hardness) enamel defects. In this study, we conducted whole exome analyses to unravel the disease-causing mutations for six AI families. Splicing assays, immunoblotting, and quantitative RT-PCR were conducted to investigate the molecular and cellular effects of the mutations. Four AMELX pathogenic variants (NM_182680.1:c.2T>C; c.29T>C; c.77del; c.145-1G>A) and a whole gene deletion (NG_012494.2:g.307534_403773del) were identified. The affected individuals exhibited enamel malformations, ranging from thin, poorly mineralized enamel with a “snow-capped” appearance to severe hypoplastic defects with minimal enamel. The c.145-1G>A mutation caused a -1 frameshift (NP_001133.1:p.Val35Cysfs*5). Overexpression of c.2T>C and c.29T>C AMELX demonstrated that mutant amelogenin proteins failed to be secreted, causing elevated endoplasmic reticulum stress and potential cell apoptosis. This study reveals a genotype–phenotype relationship for AMELX-associated AI: While amorphic mutations, including large deletions and 5′ truncations, of AMELX cause hypoplastic-hypomaturation enamel with snow-capped teeth (AI types IIB and IIC) due to a complete loss of gene function, neomorphic variants, including signal peptide defects and 3′ truncations, lead to severe hypoplastic/aplastic enamel (AI type IE) probably caused by “toxic” cellular effects of the mutant proteins.

Funder

National Institutes of Health

Ministry of Science and Technology in Taiwan

National Taiwan University Hospital

Publisher

MDPI AG

Reference57 articles.

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