Literature DB >> 24305999

ITGB6 loss-of-function mutations cause autosomal recessive amelogenesis imperfecta.

Shih-Kai Wang1, Murim Choi, Amelia S Richardson, Bryan M Reid, Brent P Lin, Susan J Wang, Jung-Wook Kim, James P Simmer, Jan C-C Hu.   

Abstract

Integrins are cell-surface adhesion receptors that bind to extracellular matrices (ECM) and mediate cell-ECM interactions. Some integrins are known to play critical roles in dental enamel formation. We recruited two Hispanic families with generalized hypoplastic amelogenesis imperfecta (AI). Analysis of whole-exome sequences identified three integrin beta 6 (ITGB6) mutations responsible for their enamel malformations. The female proband of Family 1 was a compound heterozygote with an ITGB6 transition mutation in Exon 4 (g.4545G > A c.427G > A p.Ala143Thr) and an ITGB6 transversion mutation in Exon 6 (g.27415T > A c.825T > A p.His275Gln). The male proband of Family 2 was homozygous for an ITGB6 transition mutation in Exon 11 (g.73664C > T c.1846C > T p.Arg616*) and hemizygous for a transition mutation in Exon 6 of Nance-Horan Syndrome (NHS Xp22.13; g.355444T > C c.1697T > C p.Met566Thr). These are the first disease-causing ITGB6 mutations to be reported. Immunohistochemistry of mouse mandibular incisors localized ITGB6 to the distal membrane of differentiating ameloblasts and pre-ameloblasts, and then ITGB6 appeared to be internalized by secretory stage ameloblasts. ITGB6 expression was strongest in the maturation stage and its localization was associated with ameloblast modulation. Our findings demonstrate that early and late amelogenesis depend upon cell-matrix interactions. Our approach (from knockout mouse phenotype to human disease) demonstrates the power of mouse reverse genetics in mutational analysis of human genetic disorders and attests to the need for a careful dental phenotyping in large-scale knockout mouse projects.

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Year:  2013        PMID: 24305999      PMCID: PMC3959820          DOI: 10.1093/hmg/ddt611

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  40 in total

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  26 in total

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2.  Alteration of conserved alternative splicing in AMELX causes enamel defects.

Authors:  E S Cho; K-J Kim; K-E Lee; E-J Lee; C Y Yun; M-J Lee; T J Shin; H-K Hyun; Y-J Kim; S-H Lee; H-S Jung; Z H Lee; J-W Kim
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5.  Hypomaturation amelogenesis imperfecta caused by a novel SLC24A4 mutation.

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6.  Hypoplastic AI with Highly Variable Expressivity Caused by ENAM Mutations.

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Review 7.  Osteogenesis imperfecta and therapeutics.

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Journal:  J Dent Res       Date:  2014-03-12       Impact factor: 6.116

9.  Recessive Mutations in ACP4 Cause Amelogenesis Imperfecta.

Authors:  Y J Kim; Y Lee; Y Kasimoglu; F Seymen; J P Simmer; J C-C Hu; E-S Cho; J-W Kim
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10.  Critical roles for WDR72 in calcium transport and matrix protein removal during enamel maturation.

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