Literature DB >> 23791648

Novel ALPL genetic alteration associated with an odontohypophosphatasia phenotype.

Luciane Martins1, Thaisângela L Rodrigues, Mariana Martins Ribeiro, Miki Taketomi Saito, Ana Paula Oliveira Giorgetti, Márcio Z Casati, Enilson A Sallum, Brian L Foster, Martha J Somerman, Francisco H Nociti.   

Abstract

Hypophosphatasia (HPP) is an inherited disorder of mineral metabolism caused by mutations in ALPL, encoding tissue non-specific alkaline phosphatase (TNAP). Here, we report the molecular findings from monozygotic twins, clinically diagnosed with tooth-specific odontohypophosphatasia (odonto-HPP). Sequencing of ALPL identified two genetic alterations in the probands, including a heterozygous missense mutation c.454C>T, leading to change of arginine 152 to cysteine (p.R152C), and a novel heterozygous gene deletion c.1318_1320delAAC, leading to the loss of an asparagine residue at codon 440 (p.N440del). Clinical identification of low serum TNAP activity, dental abnormalities, and pedigree data strongly suggests a genotype-phenotype correlation between p.N440del and odonto-HPP in this family. Computational analysis of the p.N440del protein structure revealed an alteration in the tertiary structure affecting the collagen-binding site (loop 422-452), which could potentially impair the mineralization process. Nevertheless, the probands (compound heterozygous: p.[N440del];[R152C]) feature early-onset and severe odonto-HPP phenotype, whereas the father (p.[N440del];[=]) has only moderate symptoms, suggesting p.R152C may contribute or predispose to a more severe dental phenotype in combination with the deletion. These results assist in defining the genotype-phenotype associations for odonto-HPP, and further identify the collagen-binding site as a region of potential structural importance for TNAP function in the biomineralization.
Copyright © 2013 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  ALPL; Collagen-binding site; Compound heterozygous mutations; Hypophosphatasia; Odontohypophosphatasia; Tissue non-specific alkaline phosphatase

Mesh:

Substances:

Year:  2013        PMID: 23791648      PMCID: PMC3872001          DOI: 10.1016/j.bone.2013.06.010

Source DB:  PubMed          Journal:  Bone        ISSN: 1873-2763            Impact factor:   4.398


  42 in total

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Authors:  Thaisângela L Rodrigues; Brian L Foster; Karina G Silverio; Luciane Martins; Marcio Z Casati; Enilson A Sallum; Martha J Somerman; Francisco H Nociti
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Authors:  Brian L Foster; Kanako J Nagatomo; Francisco H Nociti; Hanson Fong; Daisy Dunn; Anne B Tran; Wei Wang; Sonoko Narisawa; Jose Luis Millán; Martha J Somerman
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