International audienceBackground: Ameloblastin (AMBN) is a phosphorylated, proline/glutamine-rich protein secreted during enamel formation. Previous studies have revealed that this enamel matrix protein was present early in vertebrate evolution and certainly plays important roles during enamel formation although its precise functions remain unclear. We performed evolutionary analyses of AMBN in order to (i) identify residues and motifs important for the protein function, (ii) predict mutations responsible for genetic diseases, and (iii) understand its molecular evolution in mammals. Results: In silico searches retrieved 56 complete sequences in public databases that were aligned and analyzed computationally. We showed that AMBN is globally ...
International audienceBackground : In a recent study, we have demonstrated that amelotin (AMTN) gene...
The gene for odontogenic ameloblast-associated (ODAM) is a member of the secretory calcium-binding p...
International audienceBackground: The molecular bases explaining the diversity of dental tissue mine...
International audienceBackground: Ameloblastin (AMBN) is a phosphorylated, proline/glutamine-rich pr...
Evolutionary analysis of selective constraints identifies ameloblastin (AMBN) as a potential candida...
International audienceMolecular evolutionary analysis is an efficient method to predict and/or valid...
Amelotin (AMTN) is an ameloblast-secreted protein that belongs to the secretory calcium-binding phos...
International audienceBackground: Amelotin (AMTN) is an ameloblast-secreted protein that belongs to ...
Dental enamel formation is dependent upon the secretion of three enamel proteins: amelogenin, enamel...
Ameloblastin (AMBN) is one of the enamel sheath proteins which presumably has a role in determining ...
International audienceBackground: The gene for odontogenic ameloblast-associated (ODAM) is a member ...
SummaryAmeloblasts secrete enamel matrix proteins, including amelogenin, ameloblastin, enamelin, ame...
Non-collagenous matrix proteins secreted by the ameloblasts (amelogenin) and odontoblasts (osteocalc...
International audienceAmelogenesis imperfecta (AI) designates a group of genetic diseases characteri...
Strepsirrhines are members of a primate suborder that has a distinctive set of features associated w...
International audienceBackground : In a recent study, we have demonstrated that amelotin (AMTN) gene...
The gene for odontogenic ameloblast-associated (ODAM) is a member of the secretory calcium-binding p...
International audienceBackground: The molecular bases explaining the diversity of dental tissue mine...
International audienceBackground: Ameloblastin (AMBN) is a phosphorylated, proline/glutamine-rich pr...
Evolutionary analysis of selective constraints identifies ameloblastin (AMBN) as a potential candida...
International audienceMolecular evolutionary analysis is an efficient method to predict and/or valid...
Amelotin (AMTN) is an ameloblast-secreted protein that belongs to the secretory calcium-binding phos...
International audienceBackground: Amelotin (AMTN) is an ameloblast-secreted protein that belongs to ...
Dental enamel formation is dependent upon the secretion of three enamel proteins: amelogenin, enamel...
Ameloblastin (AMBN) is one of the enamel sheath proteins which presumably has a role in determining ...
International audienceBackground: The gene for odontogenic ameloblast-associated (ODAM) is a member ...
SummaryAmeloblasts secrete enamel matrix proteins, including amelogenin, ameloblastin, enamelin, ame...
Non-collagenous matrix proteins secreted by the ameloblasts (amelogenin) and odontoblasts (osteocalc...
International audienceAmelogenesis imperfecta (AI) designates a group of genetic diseases characteri...
Strepsirrhines are members of a primate suborder that has a distinctive set of features associated w...
International audienceBackground : In a recent study, we have demonstrated that amelotin (AMTN) gene...
The gene for odontogenic ameloblast-associated (ODAM) is a member of the secretory calcium-binding p...
International audienceBackground: The molecular bases explaining the diversity of dental tissue mine...