CACNA1S mutation‐associated dental anomalies: A calcium channelopathy

Author:

Kantaputra P.12ORCID,Butali A.34ORCID,Eliason S.5,Chalkley C.5,Nakornchai S.6,Bongkochwilawan C.12,Kawasaki K.7,Kumchiang A.8,Ngamphiw C.9,Tongsima S.9,Ketudat Cairns J. R.1011,Olsen B.12ORCID,Intachai W.12,Ohazama A.7ORCID,Tucker A. S.13,Amendt B. A.35

Affiliation:

1. Center of Excellence in Medical Genetics Research Faculty of Dentistry, Chiang Mai University Chiang Mai Thailand

2. Division of Pediatric Dentistry, Department of Orthodontics and Pediatric Dentistry, Faculty of Dentistry Chiang Mai University Chiang Mai Thailand

3. Iowa Institute of Oral Health Research University of Iowa Iowa City Iowa USA

4. Department of Oral Pathology, Radiology and Medicine, College of Dentistry University of Iowa Iowa City Iowa USA

5. Department of Anatomy and Cell Biology, Craniofacial Anomalies Research Center University of Iowa Iowa City Iowa USA

6. Department of Pediatric Dentistry, Faculty of Dentistry Mahidol University Bangkok Thailand

7. Division of Oral Anatomy, Department of Oral Biological Science Niigata University Graduate School of Medical and Dental Sciences Niigata Japan

8. Na‐Chauk Hospital Na‐Chauk Maha Sarakham Thailand

9. National Biobank of Thailand National Science and Technology Development Agency (NSTDA), Thailand Science Park Khlong Luang Pathum Thani Thailand

10. Center for Biomolecular Structure, Function and Application, School of Chemistry, Institute of Science Suranaree University of Technology Nakhon Ratchasima Thailand

11. Laboratory of Biochemistry Chulabhorn Research Institute Bangkok Thailand

12. Department of Developmental Biology Harvard School of Dental Medicine Boston Massachusetts USA

13. Centre for Craniofacial and Regenerative Biology King's College London London UK

Abstract

AbstractObjectivesTo identify the molecular etiology of distinct dental anomalies found in eight Thai patients and explore the mutational effects on cellular functions.Materials and MethodsClinical and radiographic examinations were performed for eight patients. Whole exome sequencing, mutant protein modelling, qPCR, western blot analysis, scratch assays, immunofluorescence, confocal analysis, in situ hybridization, and scanning electron micrography of teeth were done.ResultsAll patients had molars with multiple supernumerary cusps, single‐cusped premolars, and a reduction in root number. Mutation analysis highlighted a heterozygous c.865A>G; p.Ile289Val mutation in CACNA1S in the patients. CACNA1S is a component of the slowly inactivating L‐type voltage‐dependent calcium channel. Mutant protein modeling suggested that the mutation might allow leakage of Ca2+ or other cations, or a tightening, to restrict calcium flow. Immunohistochemistry analysis showed expression of Cacna1s in the developing murine tooth epithelium during stages of crown and root morphogenesis. In cell culture, the mutation resulted in abnormal cell migration of transfected CHO cells compared to wildtype CACNA1S, with changes to the cytoskeleton and markers of focal adhesion.ConclusionsThe malformations observed in our patients suggest a role for calcium signaling in organization of both cusps and roots, affecting cell dynamics within the dental epithelium.

Funder

Health Systems Research Institute

Publisher

Wiley

Subject

General Dentistry,Otorhinolaryngology

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