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SLC34A3 Intronic Deletion in an Iranian Kindred with Hereditary Hypophosphatemic Rickets with Hypercalciuria
Shirin Hasani-Ranjbar1,2, Hanieh-Sadat Ejtahed1, Mahsa M. Amoli3
1Obesity and Eating Habits Research Center, Endocrinology and Metabolism Clinical Sciences Institute, Tehran University of Medical Sciences, Tehran, Iran
Insights
Hereditary hypophosphatemic rickets with hypercalciuria (HHRH) is caused by SLC34A3 mutations. Genetic screening helps identify HHRH, which presents with kidney stones and bone deformities, especially in adults.
Area of Science:
- Genetics
- Endocrinology
- Nephrology
Background:
- Hereditary hypophosphatemic rickets with hypercalciuria (HHRH) is a rare genetic disorder.
- Mutations in the SLC34A3 gene are a known cause of HHRH.
Purpose of the Study:
- To detail the clinical, biochemical, and genetic characteristics of an Iranian family with HHRH.
- To investigate the phenotypic variability associated with SLC34A3 mutations.
Main Methods:
- Genetic analysis of 12 family members and 10 healthy controls.
- Clinical examination and biochemical profiling of affected individuals.
Main Results:
- Identified homozygous and heterozygous SLC34A3 variants in family members.
- Patients exhibited increased risk of kidney stones, bone deformities, and short stature.
- Heterozygous patients presented milder symptoms, primarily recurrent renal stones and hypercalciuria, with low serum sodium and elevated alkaline phosphatase.
Conclusions:
- Genetic screening for SLC34A3 mutations is valuable for diagnosing adult-onset HHRH phenotypes.
- Consider HHRH in cases of unexplained osteoporosis, bone deformities, and recurrent renal stones.
- Interpret results cautiously in patients with vitamin D deficiency.
Objective:
To describe clinical findings, biochemical profile and genetic analysis in an Iranian kindred with hereditary hypophosphatemic rickets with hypercalciuria (HHRH).
Methods:
Clinical examination and biochemical profile results and gene analysis of 12 members of a family of a patient previously diagnosed with HHRH due to SLC34A3 mutation. Ten healthy controls were also evaluated.
Results:
Of the twelve family members three were homozygote and seven heterozygote for the same SLC34A3 variant found in the proband while two others were unaffected. All patients had significantly increased risk of kidney stone formation, bone deformities and short stature compared with unrelated healthy controls. The heterozygous patients displayed milder clinical symptoms compared with homozygous patients. In particular they had mild or no hypophosphatemia and they did not develop skeletal deformities. Recurrent renal stones and hypercalciuria were the main presentations of the heterozygous patients which may be confused with familial hypercalciuria. In addition, biochemical analysis showed significantly low serum sodium and elevated alkaline phosphatase levels in these patients.
Conclusion:
Genetic counseling and screening for SLC34A3 mutations can be helpful in adult onset phenotype with unexplained osteoporosis, bone deformities and especial recurrent renal stones. In subjects with vitamin D deficiency the results should be interpreted cautiously.
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