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Filamin A is reduced and contributes to the CASR sensitivity in human parathyroid tumors
Alessandra Mingione1, Chiara Verdelli2, Stefano Ferrero3
1Department of Health SciencesUniversity of Milan, Milan, Italy.
Abstract:
Parathyroid tumors display reduced sensitivity to extracellular calcium ([Ca2+]o). [Ca2+]o activates calcium-sensing receptor (CASR), which interacts with the scaffold protein filamin A (FLNA). The study aimed to investigate: (1) the FLNA expression in human parathyroid tumors, (2) its effects on the CASR mRNA and protein expression, and (3) on ERK signaling activation, (4) the effect of the carboxy-terminal CASR variants and (5) of the treatment with the CASR agonist R568 on FLNA-mediated ERK phosphorylation in HEK293 cells. Full-length FLNA immunostaining was variably reduced in parathyroid tumors. Immunofluorescence showed that FLNA localized in membrane and cytoplasm and co-localized with CASR in parathyroid adenomas (PAds)-derived cells. Cleaved C-terminus FLNA fragment could also be detected in PAds nuclear protein fractions. In HEK293 cells transfected with 990R-CASR or 990G-CASR variants, silencing of endogenous FLNA reduced CASR mRNA levels and total and membrane-associated CASR proteins. In agreement, FLNA mRNA levels positively correlated with CASR expression in a series of 74 PAds; however, any significant correlation with primary hyperparathyroidism severity could be detected and FLNA transcript levels did not differ between PAds harboring 990R or 990G CASR variants. R568 treatment was efficient in restoring 990R-CASR and 990G-CASR sensitivity to [Ca2+]o in the absence of FLNA. In conclusion, FLNA is downregulated in parathyroid tumors and parallels the CASR expression levels. Loss of FLNA reduces CASR mRNA and protein expression levels and the CASR-induced ERK phosphorylation. FLNA is involved in receptor expression, membrane localization and ERK signaling activation of both 990R and 990G CASR variants.
Insights
Filamin A (FLNA) is reduced in parathyroid tumors, impacting calcium-sensing receptor (CASR) expression and ERK signaling. Restoring CASR sensitivity is possible even without FLNA.
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Signaling
Background:
- Parathyroid tumors show decreased sensitivity to extracellular calcium ([Ca2+]o).
- Calcium-sensing receptor (CASR) is activated by [Ca2+]o and interacts with filamin A (FLNA).
Purpose of the Study:
- Investigate FLNA expression in parathyroid tumors.
- Determine FLNA's effect on CASR expression and ERK signaling.
- Analyze CASR variants and R568 treatment effects on FLNA-mediated signaling.
Main Methods:
- Immunohistochemistry and immunofluorescence for FLNA and CASR in parathyroid tumors and HEK293 cells.
- Gene silencing of FLNA in HEK293 cells expressing CASR variants.
- Correlation analysis of FLNA and CASR mRNA levels in parathyroid adenomas.
- Treatment with CASR agonist R568.
Main Results:
- FLNA expression is reduced in parathyroid tumors and co-localizes with CASR.
- FLNA silencing decreases CASR mRNA and protein levels and impairs ERK phosphorylation.
- FLNA levels correlate with CASR expression but not disease severity.
- R568 restores [Ca2+]o sensitivity to CASR variants independent of FLNA.
Conclusions:
- FLNA downregulation in parathyroid tumors correlates with reduced CASR expression and impaired ERK signaling.
- FLNA plays a crucial role in CASR expression, localization, and signaling.
- FLNA is implicated in the pathogenesis of parathyroid tumors and CASR dysfunction.
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