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Characterization of a new CDC73 missense mutation that impairs Parafibromin expression and nucleolar localization
Giulia Masi1, Maurizio Iacobone2, Alessandro Sinigaglia3
1Department of Molecular Medicine, University of Padova, Padova, Italy.
Abstract:
Mutations of the Cell Division Cycle 73 (CDC73) tumor suppressor gene (previously known as HRPT2), encoding for parafibromin, are associated with the Hyperparathyroidism-Jaw Tumor (HPT-JT) syndrome, an autosomal dominant disease whose clinical manifestations are mainly parathyroid tumors and, less frequently, ossifying fibromas of the jaws, uterine and renal tumors. Most mutations of CDC73 are nonsense or frameshift, while missense mutations are rare and generally affect the N-terminal domain of parafibromin, a region that is still poorly characterized. The aim of this study was to characterize a novel somatic CDC73 missense mutation (Ile60Asn) identified in the mandibular tumor of a HPT-JT patient carrying a germline CDC73 inactivating mutation. Immunostaining of the tumor showed reduced nuclear parafibromin immunoreactivity. Western blotting and confocal microscopy of transfected cells demonstrated that the Ile60Asn mutant parafibromin was less expressed than the wild-type protein and exhibited impaired nucleolar localization. Treatment of transfected cells with translation and proteasome inhibitors demonstrated a decreased stability of the Ile60An mutant, partially due to an increase in proteasomal degradation. Overexpression of the Ile60Asn mutant led to increased cell proliferation and to accumulation in the G2/M phase of cell cycle. Moreover, mutant parafibromin lost the ability to down-regulate c-myc expression. In conclusion, our study shows that a missense mutation in the N-terminus of parafibromin, identified in an ossifying fibroma from a HPT-JT patient, stimulated cell proliferation and impaired parafibromin expression and nucleolar localization, suggesting a relevant role of the N-terminal domain for parafibromin function.
Insights
A novel mutation in the CDC73 gene (Cell Division Cycle 73) impairs parafibromin function, leading to increased cell proliferation and cell cycle accumulation in Hyperparathyroidism-Jaw Tumor (HPT-JT) syndrome ossifying fibromas.
Area of Science:
- Genetics
- Molecular Biology
- Oncology
Background:
- Mutations in the CDC73 tumor suppressor gene cause Hyperparathyroidism-Jaw Tumor (HPT-JT) syndrome.
- Most CDC73 mutations are nonsense or frameshift; missense mutations are rare and poorly understood, particularly in the N-terminal domain.
Observation:
- A novel somatic CDC73 missense mutation (Ile60Asn) was identified in a HPT-JT patient's mandibular ossifying fibroma.
- The Ile60Asn mutation reduced nuclear parafibromin immunoreactivity in tumor cells.
- Mutant parafibromin showed decreased expression, impaired nucleolar localization, and reduced stability due to increased proteasomal degradation.
Findings:
- The Ile60Asn mutant parafibromin promoted increased cell proliferation and G2/M cell cycle arrest.
- Mutant parafibromin lost its ability to down-regulate c-myc expression.
- The N-terminal domain of parafibromin is crucial for its function.
Implications:
- This study highlights the functional significance of the parafibromin N-terminus in HPT-JT syndrome pathogenesis.
- Understanding these missense mutations provides insights into tumor development and potential therapeutic targets.