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Published on: June 2, 2022
Familial Hypocalciuric Hypercalcemia Type 1 and Autosomal-Dominant Hypocalcemia Type 1: Prevalence in a Large
Ridge Dershem1, Caroline M Gorvin2, Raghu P R Metpally1
1Molecular and Functional Genomics, Weis Center for Research, Geisinger, Danville, PA 17822, USA.
Insights
Familial hypocalciuric hypercalcemia (FHH1) and autosomal-dominant hypocalcemia (ADH1) are caused by calcium-sensing receptor (CASR) gene mutations. This study found FHH1 affects 74.1 per 100,000 and ADH1 affects 3.9 per 100,000, revealing their prevalence and associated disease risks.
Area of Science:
- Genetics
- Endocrinology
- Population Health
Background:
- The calcium-sensing receptor (CaSR) is crucial for regulating serum calcium levels.
- Mutations in the CASR gene lead to familial hypocalciuric hypercalcemia type 1 (FHH1) or autosomal-dominant hypocalcemia type 1 (ADH1).
- The population prevalence of FHH1 and ADH1 remains largely unknown.
Purpose of the Study:
- To determine the population prevalence of FHH1 and ADH1.
- To identify rare CASR variants associated with these conditions.
- To explore potential associations between CASR variants and other diseases.
Main Methods:
- Whole-exome sequencing of 51,289 individuals from the DiscovEHR cohort.
- Bioinformatics analysis for variant pathogenicity, serum calcium levels, and inheritance patterns.
- Functional studies to assess the impact of identified CASR variants on receptor function.
- Sequence Kernel Association Test (SKAT) for rare variant-disease associations.
Main Results:
- Identified 38 unrelated individuals with predicted heterozygous loss-of-function CASR variants, diagnosing 38 cases of FHH1 (prevalence 74.1/100,000).
- Identified two unrelated individuals with missense CASR variants, diagnosing two cases of ADH1 (prevalence 3.9/100,000).
- Functional studies confirmed impaired or enhanced CaSR function for hypercalcemia- or hypocalcemia-associated variants, respectively.
- SKAT revealed associations between rare CASR variants and cardiovascular, neurological, and other diseases.
Conclusions:
- FHH1 is a common cause of hypercalcemia, comparable in prevalence to primary hyperparathyroidism.
- FHH1 is associated with altered risks for various diseases.
- ADH1 is a significant cause of non-surgical hypoparathyroidism.
Abstract:
The calcium-sensing receptor (CaSR) regulates serum calcium concentrations. CASR loss- or gain-of-function mutations cause familial hypocalciuric hypercalcemia type 1 (FHH1) or autosomal-dominant hypocalcemia type 1 (ADH1), respectively, but the population prevalence of FHH1 or ADH1 is unknown. Rare CASR variants were identified in whole-exome sequences from 51,289 de-identified individuals in the DiscovEHR cohort derived from a single US healthcare system. We integrated bioinformatics pathogenicity triage, mean serum Ca concentrations, and mode of inheritance to identify potential FHH1 or ADH1 variants, and we used a Sequence Kernel Association Test (SKAT) to identify rare variant-associated diseases. We identified predicted heterozygous loss-of-function CASR variants (6 different nonsense/frameshift variants and 12 different missense variants) in 38 unrelated individuals, 21 of whom were hypercalcemic. Missense CASR variants were identified in two unrelated hypocalcemic individuals. Functional studies showed that all hypercalcemia-associated missense variants impaired heterologous expression, plasma membrane targeting, and/or signaling, whereas hypocalcemia-associated missense variants increased expression, plasma membrane targeting, and/or signaling. Thus, 38 individuals with a genetic diagnosis of FHH1 and two individuals with a genetic diagnosis of ADH1 were identified in the 51,289 cohort, giving a prevalence in this population of 74.1 per 100,000 for FHH1 and 3.9 per 100,000 for ADH1. SKAT combining all nonsense, frameshift, and missense loss-of-function variants revealed associations with cardiovascular, neurological, and other diseases. In conclusion, FHH1 is a common cause of hypercalcemia, with prevalence similar to that of primary hyperparathyroidism, and is associated with altered disease risks, whereas ADH1 is a major cause of non-surgical hypoparathyroidism.
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