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Early Dental Epithelial Transcription Factors Distinguish Ameloblastoma from Keratocystic Odontogenic Tumor




TekijätK. Heikinheimo, K.J. Kurppa, A. Laiho, S. Peltonen, A. Berdal, A. Bouattour, B. Ruhin, J. Catón, I. Thesleff, I. Leivo, P.R. Morgan

Julkaisuvuosi2015

JournalJournal of Dental Research

Vuosikerta94

Numero1

Aloitussivu101

Lopetussivu111

Sivujen määrä11

ISSN0022-0345

DOIhttps://doi.org/10.1177/0022034514556815

Verkko-osoitehttp://jdr.sagepub.com/content/94/1/101.short?cited-by=yes⋚id=spjdr;94/1/101


Tiivistelmä

The aim of the study was to characterize the molecular relationship between ameloblastoma and keratocystic odontogenic tumor (KCOT) by means of a genome-wide expression analysis. Total RNA from 27 fresh tumor samples of 15 solid/ multicystic intraosseous ameloblastomas and 12 sporadic KCOTs was hybridized on Affymetrix whole genome arrays. Hierarchical clustering separated ameloblastomas and KCOTs into 2 distinct groups. The gene set enrichment analysis based on 303 dental genes showed a similar separation of ameloblastomas and KCOTs. Early dental epithelial markers PITX2, MSX2, DLX2, RUNX1, and ISL1 were differentially overexpressed in ameloblastoma, indicating its dental identity.

Also, PTHLH, a hormone involved in tooth eruption and invasive growth, was one of the most differentially upregulated genes in ameloblastoma. The most differentially overexpressed genes in KCOT were squamous epithelial differentiation markers SPRR1A, KRTDAP, and KRT4, as well as DSG1, a component of desmosomal cell-cell junctions. Additonally, the

epithelial stem cell marker SOX2 was significantly upregulated in KCOT when compared with ameloblastoma. Taken together, the gene expression profile of ameloblastoma reflects differentiation from dental lamina toward the cap/bell stage of tooth development, as indicated by dental epithelium-specific transcription factors. In contrast, gene expression of

KCOT indicates differentiation toward keratinocytes.




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