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Published on: March 29, 2018
Abnormal Enamel Mineralization and Hypercalcemia due to GNA11 Variants
N Obtel1,2, A Le Cabec3, A-L Lakhel1,2
1Université Paris Cité, INSERM U1333 Santé Orale, et Plateforme Imagerie du Vivant (PIV), FHU-DDS-net, Dental School, Montrouge, France.
Abstract:
Abnormal enamel mineralization has been reported in genetic conditions associated with hypocalcemia but never with hypercalcemia. In the present study, we report 10 patients from 2 unrelated families in whom hypomineralized enamel co-segregated with hypercalcemia due to a complete deletion or frameshifting premature truncation (p.(Ser18Argfs*2)) of the guanine nucleotide-binding protein (G-protein) subunit α11 (GNA11) gene. Both GNA11 variants were heterozygous and predicted to cause a loss of function of Gα11. Multiproxy imaging analyses of naturally exfoliated primary teeth and clinically extracted permanent teeth from 2 affected patients revealed abnormal enamel mineralization, with constitutive patches of hypomineralization following no set pattern. In parallel, the study of wild-type mouse tooth germs using combined molecular and protein analyses showed Gna11 and Gα11 protein expression in ameloblasts at the secretion and maturation stages, as well as in odontoblasts, suggesting a role for Gα11 in tooth formation. Furthermore, the analysis of a mouse model of Familial Hypocalciuric Hypercalcemia 2 (FHH2) revealed delayed onset of enamel mineralization in the continuously growing incisors and hypomineralized enamel in both incisor and molars of heterozygous (Gna11Tm1b+/-) mice, with defects that are very similar to those affecting human FHH2 teeth. In conclusion, our study reveals that abnormal enamel mineralization may occur in association with hypercalcemia due to loss-of-function GNA11 mutations, opening a new field of investigation and highlighting the need to include a dentist in the multidisciplinary team in charge of patients with monogenic calcium disorders.
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