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Updated: Jul 9, 2026

Two Techniques to Create Hypoparathyroid Mice: Parathyroidectomy Using GFP Glands and Diphtheria-Toxin-Mediated Parathyroid Ablation
Published on: March 14, 2017
Abnormal position of a GNAS methylation regulatory element causes autosomal dominant pseudohypoparathyroidism type 1B
Andreea Apetrei1,2, Nicolas Richard1,2, Yorihiro Iwasaki3,4
1University of Caen Normandy, BIOTARGEN UR7450, Normandy University, F-14000 CAEN, FRANCE.
Abstract:
The parental imprinted GNAS complex locus encodes the α-subunit of the stimulatory G protein. Pseudohypoparathyroidism type Ib (PHP1B) is characterized by renal resistance to parathormone and is caused by epigenetic anomalies, ie, at least the loss of methylation (LOM) at the A/B differentially methylated region (DMR). LOM or gain of methylation (GOM) may also affect other DMRs and different transcripts expressions within the locus (NESP, exon H, AS1, XLαs, A/B). Most PHP1B are sporadic and result from abnormal methylation of all DMRs in the regulatory region of GNAS. Autosomal dominant PHP1B (AD-PHP1B) is usually caused by a recurrent STX16 gene microdeletion in the maternal allele which leads to isolated LOM at the A/B DMR. In this study, we investigated an AD-PHP1B family without STX16 deletion using whole genome sequencing (WGS). The two affected siblings presented a LOM at the A/B DMR and the half telomeric portion of the XLαs DMR and their healthy mother presented a partial GOM at the AS1 DMR and the half centromeric portion of the XLαs DMR. The WGS analysis revealed a 140-kb paracentric inversion with breakpoints located in the NPEPL1 gene and XLαs DMR. We identified the first inversion involving the regulatory region of GNAS locus leading to a maternally inherited AD-PHP1B. This observation provides additional insight into the methylation regulatory elements in the GNAS locus on both alleles, especially on NESP and exon H transcription-mediated methylation. This study will help design subsequent strategies for further studies.
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