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Updated: Feb 7, 2026

Micro-dissection of Enamel Organ from Mandibular Incisor of Rats Exposed to Environmental Toxicants
Published on: March 29, 2018
Ameloblastin Amphipathic Helix Motif mediates Ameloblast Polarization and Prismatic Enamel Formation via a RhoA
Janet Moradian-Oldak1, Gayathri Visakan1, Rucha Arun Bapat1
1Center for Craniofacial Molecular Biology, Herman Ostrow School of Dentistry of USC, University of Southern California, Los Angeles, CA, USA.
Abstract:
Ameloblastin (Ambn) is a tooth-specific multifunctional protein crucial for enamel biomineralization and its prismatic structure. To examine the function of the evolutionarily conserved cell-binding Ambn amphipathic helix (AH) motif, we deleted the hydrophobic residues within Ambn AH motif in genetically engineered mice. Enamel in the homozygous (Ambn ΔL76-P86) mutants had normal thickness but was hypo-mineralized and lacked prismatic structure. Micro-CT analysis using conventional neural network revealed loss in mineral density and a delay in the initiation of secretory stage of amelogenesis. Ameloblasts in the mutants were stunted and exhibited loss of cell polarity, as demonstrated by the mis-localization of Pard3, Claudin-1 and GM130 immunosignals. In the Ambn ΔL76-P86 mutants, a loss of Ambn-ameloblast distal membrane interaction was observed, with nuclear localization of β-catenin and p-Smad2/3, and a decrease in RhoA immunolabeling intensity. Our study demonstrates a novel signaling role of Ambn AH motif in mediating cell polarization and forming enamel prismatic structure.
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