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Two Techniques to Create Hypoparathyroid Mice: Parathyroidectomy Using GFP Glands and Diphtheria-Toxin-Mediated Parathyroid Ablation
Published on: March 14, 2017
Mutational analysis of the extracellular Ca(2+)-sensing receptor gene in human parathyroid tumors
Y Hosokawa1, M R Pollak, E M Brown
1Endocrine Oncology Laboratory, Massachusetts General Hospital, Boston 02114, USA.
Abstract:
Despite recent progress, such as the identification of PRAD1/cyclin D1 as a parathyroid oncogene, it is likely that many genes involved in the molecular pathogenesis of parathyroid tumors remain unknown. Individuals heterozygous for inherited mutations in the extracellular Ca(2+)-sensing receptor gene that reduce its biological activity exhibit a disorder termed familial hypocalciuric hypercalcemia or familial benign hypercalcemia, which is characterized by reduced responsiveness of parathyroid and kidney to calcium and by PTH-dependent hypercalcemia. Those who are homozygous for such mutations present with neonatal severe hyperparathyroidism and have marked parathyroid hypercellularity. Thus, the Ca(2+)-sensing receptor gene is a candidate parathyroid tumor suppressor gene, with inactivating mutations plausibly explaining set-point abnormalities in the regulation of both parathyroid cellular proliferation and PTH secretion by extracellular Ca2+ similar to those seen in hyperparathyroidism. Using a ribonuclease A protection assay that has detected multiple mutations in the Ca(2+)-sensing receptor gene in familial hypocalciuric hypercalcemia and covers more than 90% of its coding region, we sought somatic mutations in this gene in a total of 44 human parathyroid tumors (23 adenomas, 4 carcinomas, 5 primary hyperplasias, and 12 secondary hyperplasias). No such mutations were detected in these 44 tumors. Thus, our studies suggest that somatic mutation of the Ca(2+)-sensing receptor gene does not commonly contribute to the pathogenesis of sporadic parathyroid tumors. As such, PTH set-point dysfunction in parathyroid tumors may well be secondary to other clonal proliferative defects and/or mutations in other components of the extracellular Ca(2+)-sensing pathway.
Insights
Somatic mutations in the calcium-sensing receptor gene are not common in sporadic parathyroid tumors. This suggests other genetic factors likely drive parathyroid tumor development and PTH regulation dysfunction.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Parathyroid tumors involve complex molecular pathogenesis, with PRAD1/cyclin D1 identified as a parathyroid oncogene.
- Mutations in the calcium-sensing receptor (CaSR) gene cause familial hypocalciuric hypercalcemia and neonatal severe hyperparathyroidism, implicating CaSR in calcium homeostasis and parathyroid function.
Purpose of the Study:
- To investigate the role of somatic mutations in the CaSR gene in the development of sporadic human parathyroid tumors.
- To determine if CaSR gene mutations contribute to the abnormal parathyroid hormone (PTH) secretion and cellular proliferation observed in parathyroid tumors.
Main Methods:
- Utilized a ribonuclease A protection assay covering over 90% of the CaSR coding region.
- Analyzed DNA from 44 human parathyroid tumors, including adenomas, carcinomas, and hyperplasias, for the presence of somatic mutations.
Main Results:
- No somatic mutations in the CaSR gene were detected in any of the 44 analyzed parathyroid tumors.
- This finding indicates that CaSR gene mutations are not a frequent cause of sporadic parathyroid tumor formation.
Conclusions:
- Somatic mutations in the CaSR gene do not commonly contribute to the pathogenesis of sporadic parathyroid tumors.
- Dysfunction in PTH set-point regulation in parathyroid tumors may stem from other genetic defects or mutations within the extracellular calcium-sensing pathway.

