Isolation and characterization of dental epithelial cells derived from amelogenesis imperfecta rat

Adiningrat, A. and Tanimura, A. and Miyoshi, K. and Hagita, H. and Yanuaryska, R.D. and Arinawati, D.Y. and Horiguchi, T. and Noma, T. (2016) Isolation and characterization of dental epithelial cells derived from amelogenesis imperfecta rat. Oral Diseases, 22 (2). 132 - 139. ISSN 1354523X

[thumbnail of odi.12396.pdf] Text
odi.12396.pdf - Published Version
Restricted to Registered users only

Download (579kB) | Request a copy

Abstract

Objective: Disruption of the third zinc finger domain of specificity protein 6 (SP6) presents an enamel-specific defect in a rat model of amelogenesis imperfecta (AMI rats). To understand the molecular basis of amelogenesis imperfecta caused by the Sp6 mutation, we established and characterized AMI-derived rat dental epithelial (ARE) cells. Materials and Methods: ARE cell clones were isolated from the mandibular incisors of AMI rats, and amelogenesis-related gene expression was analyzed by reverse transcription polymerase chain reaction (RT-PCR). Localization of wild-type SP6 (SP6WT) and mutant-type SP6 (SP6AMI) was analyzed by immunocytochemistry. SP6 transcriptional activity was monitored by rho-associated protein kinase 1 (Rock1) promoter activity with its specific binding to the promoter region in dental (G5 and ARE) and non-dental (COS-7) epithelial cells. Results: Isolated ARE cells were varied in morphology and gene expression. Both SP6WT and SP6AMI were mainly detected in nuclei. The promoter analysis revealed that SP6WT and SP6AMI enhanced Rock1 promoter activity in G5 cells but that enhancement by SP6AMI was weaker, whereas no enhancement was observed in the ARE and COS-7 cells, even though SP6WT and SP6AMI bound to the promoter in all instances. Conclusion: ARE cell clones can provide a useful in vitro model to study the mechanism of SP6-mediated amelogenesis imperfecta.

Item Type: Article
Additional Information: Cited by: 1; All Open Access; Bronze Open Access
Uncontrolled Keywords: Amelogenesis Imperfecta; Animals; Cells, Cultured; Epithelial Cells; Gene Expression; Incisor; Kruppel-Like Transcription Factors; Promoter Regions, Genetic; Rats; rho-Associated Kinases; ameloblastin; amelogenin; amelotin; bone morphogenetic protein 2; carbonate dehydratase III; follistatin; mucolipin 3; odd skipped related 2 protein; pericentriolar material 1 protein; protein; protein kinase; rho associated protein kinase 1; unclassified drug; zinc finger domain of specificity protein 6; zinc finger protein; kruppel like factor; Rho kinase; ROCK1 protein, rat; Sp6 protein, rat; amelogenesis imperfecta; AMI derived rat dental epithelial cell; animal cell; animal cell culture; animal experiment; animal model; Article; cell characterization; cell cloning; cell isolation; cell nucleus; cell structure; cellular distribution; chromatin immunoprecipitation; controlled study; COS 7 cell line; gene expression; gene location; immunocytochemistry; in vitro study; incisor; male; mouth epithelium cell; nonhuman; priority journal; procedures concerning cells; promoter region; protein expression; protein localization; rat; reverse transcription polymerase chain reaction; transcription initiation; Western blotting; amelogenesis imperfecta; animal; cell culture; epithelium cell; genetics; metabolism; pathology
Subjects: R Medicine > RK Dentistry
Divisions: Faculty of Dentistry > Dental Study Program Academic Phase
Depositing User: Desy Natalia Anggorowati Anggorowati
Date Deposited: 30 Jun 2026 07:12
Last Modified: 30 Jun 2026 07:12
URI: https://ir.lib.ugm.ac.id/id/eprint/27811

Actions (login required)

View Item
View Item