Altered Enamelin Phosphorylation Site Causes Amelogenesis Imperfecta

Defects in the enamelin gene (ENAM) cause amelogenesis imperfecta (AI). Our objective was to identify the genetic etiology of enamel hypoplasia in a Caucasian proband. Our hypothesis was that ENAM was defective. The proband and his father have an AG insertion (g.13185_13186insAG; p.422FsX448) in ENA...

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Veröffentlicht in:Journal of dental research 2010-07, Vol.89 (7), p.695-699
Hauptverfasser: Chan, H.-C., Mai, L., Oikonomopoulou, A., Chan, H.L., Richardson, A.S., Wang, S.-K., Simmer, J.P., Hu, J.C.-C.
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Sprache:eng
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Zusammenfassung:Defects in the enamelin gene (ENAM) cause amelogenesis imperfecta (AI). Our objective was to identify the genetic etiology of enamel hypoplasia in a Caucasian proband. Our hypothesis was that ENAM was defective. The proband and his father have an AG insertion (g.13185_13186insAG; p.422FsX448) in ENAM previously identified in AI kindreds from Slovenia and Turkey. The proband, his brother, and his mother have a novel missense mutation (g.12573C>T) that substitutes leucine for a phosphorylated serine (p.S216L) in the 32-kDa enamelin cleavage product. In this family, a defect in one ENAM allele caused minor pitting or localized enamel hypoplasia, whereas defects in both alleles caused severe enamel malformations, with little or no mineral covering dentin. Ser216 is one of two serines on the 32-kDa enamelin that is phosphorylated by Golgi casein kinase and is thought to mediate calcium binding. We propose that phosphorylation of enamelin is critical for its function.
ISSN:0022-0345
1544-0591
1544-0591
DOI:10.1177/0022034510365662