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The extracellular calcium-sensing receptor: its role in health and disease
E M Brown1, M Pollak, S C Hebert
1Department of Medicine, Brigham and Women's Hospital, Boston, Massachusetts 02115, USA. embrown@bics.bwh.harvard.edu
Abstract:
The recent cloning of an extracellular calcium (Ca2+o)-sensing receptor (CaR) from parathyroid, kidney and other cell types has clarified the mechanisms through which Ca2+o exerts its direct actions on various cells and tissues. In the parathyroid, the CaR mediates the inhibitory effects of Ca2+o on parathyroid hormone (PTH) secretion and likely on expression of the PTH gene and parathyroid cellular proliferation. In the kidney, the receptor mediates direct inhibition of the reabsorption of divalent cations in the cortical thick ascending limb, and it likely underlies the inhibitory actions of hypercalcemia on the urinary-concentrating mechanism in the medullary thick ascending limb and inner medullary collecting duct. The identification of inherited diseases of Ca2+o-sensing that arise from mutations in the CaR gene has proven, by genetic means, the central role of the CaR in mineral ion homeostasis and the importance of the receptor in regulating the parathyroid and kidney. An allosteric CaR agonist ("calcimimetic") is currently being tested for the treatment of primary hyperparathyroidism, and CaR-based therapeutics will likely be applicable to other disorders in which CaRs are under- or overactive. Thus the discovery of the CaR and its associated diseases has documented that Ca2+o plays an essential role as an extracellular first messenger, in addition to serving its better recognized role as an intracellular second messenger.
Insights
The extracellular calcium-sensing receptor (CaR) regulates parathyroid hormone secretion and kidney function. Its discovery and associated genetic diseases highlight calcium
Area of Science:
- Endocrinology
- Nephrology
- Molecular Biology
Background:
- Extracellular calcium (Ca2+o) directly influences various cells and tissues.
- The calcium-sensing receptor (CaR) mediates these Ca2+o actions.
- CaR is found in parathyroid, kidney, and other cell types.
Purpose of the Study:
- To clarify the mechanisms of Ca2+o actions mediated by CaR.
- To understand CaR's role in parathyroid hormone regulation and kidney function.
- To explore the implications of CaR mutations and potential therapeutics.
Main Methods:
- Cloning of the CaR from parathyroid and kidney cells.
- Analysis of CaR's role in parathyroid hormone secretion and gene expression.
- Investigation of CaR's function in renal divalent cation reabsorption and urinary concentration.
Main Results:
- CaR inhibits parathyroid hormone secretion and parathyroid cell proliferation.
- CaR inhibits divalent cation reabsorption in the kidney's cortical thick ascending limb.
- CaR mediates hypercalcemia's inhibitory effects on urinary concentration.
Conclusions:
- CaR is central to mineral ion homeostasis, regulating parathyroid and kidney functions.
- Mutations in the CaR gene cause inherited disorders of Ca2+o-sensing.
- CaR acts as a crucial extracellular first messenger, with therapeutic potential for CaR-related disorders.
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