Genetics and Epigenetics of Parathyroid Carcinoma

Генетика и эпигенетика карциномы околощитовидных желез
Francesca Marini, Francesca Giusti, Gaia Palmini, Giuliano Perigli, Roberto Santoro, Maria Luisa Brandi
2022-02-24

CDC73 inactivationPI3K/AKT/mTOR signalingPRUNE2 mutationsgene promoter methylationparathyroid carcinoma
Parathyroid carcinoma (PC) is an extremely rare malignancy, accounting less than 1% of all parathyroid neoplasms, and an uncommon cause of primary hyperparathyroidism (PHPT), characterized by an excessive secretion of parathyroid hormone (PTH) and severe hypercalcemia. As opposed to parathyroid hyperplasia and adenomas, PC is associated with a poor prognosis, due to a commonly unmanageable hypercalcemia, which accounts for death in the majority of cases, and an overall survival rate of 78-85% and 49-70% at 5 and 10 years after diagnosis, respectively. No definitively effective therapies for PC are currently available. The mainly employed treatment for PC is the surgical removal of tumoral gland(s). Post-surgical persistent or recurrent disease manifest in about 50% of patients. The comprehension of genetic and epigenetic bases and molecular pathways that characterize parathyroid carcinogenesis is important to distinguish malignant PCs from benign adenomas, and to identify specific targets for novel therapies. Germline heterozygote inactivating mutations of the CDC73 tumor suppressor gene, with somatic loss of heterozygosity at 1q31.2 locus, account for about 50-75% of familial cases; over 75% of sporadic PCs harbor biallelic somatic inactivation/loss of CDC73 . Recurrent mutations of the PRUNE2 gene, a recurrent mutation in the ADCK1 gene, genetic amplification of the CCND1 gene, alterations of the PI3K/AKT/mTOR signaling pathway, and modifications of microRNA expression profile and gene promoter methylation pattern have all been detected in PC. Here, we review the current knowledge on gene mutations and epigenetic changes that have been associated with the development of PC, in both familial and sporadic forms of this malignancy.
1
Additional molecular alterations include recurrent PRUNE2 and ADCK1 mutations, CCND1 amplification, PI3K/AKT/mTOR pathway abnormalities, altered microRNA profiles, and modified promoter methylation.
2
Characterizing genetic and epigenetic changes may improve discrimination between malignant parathyroid carcinoma and benign adenomas and identify targets for new therapies.
3
Germline heterozygous CDC73 inactivation with somatic loss of heterozygosity explains about 50–75% of familial cases, while over 75% of sporadic tumors show biallelic somatic CDC73 inactivation or loss.
4
Parathyroid carcinoma accounts for less than 1% of parathyroid neoplasms and causes severe PTH-driven hypercalcemia with poor long-term survival.
5
Surgical tumor removal is the main treatment, but persistent or recurrent disease occurs in approximately 50% of patients and no definitively effective therapies exist.

Familial and sporadic parathyroid carcinoma (PC)

Genetic mutations and epigenetic alterations, including changes in CDC73, PRUNE2, ADCK1, CCND1, PI3K/AKT/mTOR signaling, microRNA expression, and gene-promoter methylation, underlying parathyroid carcinogenesis

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2022-02-24
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Francesca Marini
Francesca Giusti
Gaia Palmini
Giuliano Perigli
Roberto Santoro
Maria Luisa Brandi
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