Mutations of the UMOD gene are responsible for medullary cystic kidney disease 2 and familial juvenile hyperuricaemic nephropathy
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Open Access
- 1 December 2002
- journal article
- research article
- Published by BMJ in Journal of Medical Genetics
- Vol. 39 (12), 882-892
- https://doi.org/10.1136/jmg.39.12.882
Abstract
Introduction: Medullary cystic kidney disease 2 (MCKD2) and familial juvenile hyperuricaemic nephropathy (FJHN) are both autosomal dominant renal diseases characterised by juvenile onset of hyperuricaemia, gout, and progressive renal failure. Clinical features of both conditions vary in presence and severity. Often definitive diagnosis is possible only after significant pathology has occurred. Genetic linkage studies have localised genes for both conditions to overlapping regions of chromosome 16p11-p13. These clinical and genetic findings suggest that these conditions may be allelic. Aim: To identify the gene and associated mutation(s) responsible for FJHN and MCKD2. Methods: Two large, multigenerational families segregating FJHN were studied by genetic linkage and haplotype analyses to sublocalise the chromosome 16p FJHN gene locus. To permit refinement of the candidate interval and localisation of candidate genes, an integrated physical and genetic map of the candidate region was developed. DNA sequencing of candidate genes was performed to detect mutations in subjects affected with FJHN (three unrelated families) and MCKD2 (one family). Results: We identified four novel uromodulin (UMOD) gene mutations that segregate with the disease phenotype in three families with FJHN and in one family with MCKD2. Conclusion: These data provide the first direct evidence that MCKD2 and FJHN arise from mutation of the UMOD gene and are allelic disorders. UMOD is a GPI anchored glycoprotein and the most abundant protein in normal urine. We postulate that mutation of UMOD disrupts the tertiary structure of UMOD and is responsible for the clinical changes of interstitial renal disease, polyuria, and hyperuricaemia found in MCKD2 and FJHN.Keywords
This publication has 43 references indexed in Scilit:
- Mutations of FBN1 and genotype-phenotype correlations in Marfan syndrome and related fibrillinopathiesHuman Mutation, 2002
- Germline mutation profile ofMEN1in multiple endocrine neoplasia type 1: search for correlation between phenotype and the functional domains of the MEN1 proteinHuman Mutation, 2002
- The ZP domain is a conserved module for polymerization of extracellular proteinsNature Cell Biology, 2002
- Vitamin A excreted in the urine of canines is associated with a Tamm-Horsfall like proteinVeterinary Research, 2002
- Effects of Tamm-Horsfall Protein and Albumin on Calcium Oxalate Crystallization and Importance of Sialic AcidsMolecular Urology, 2001
- Localization of a single binding site for immunoglobulin light chains on human Tamm-Horsfall glycoprotein.Journal of Clinical Investigation, 1997
- Abnormal serum uric acid levels in childrenThe Journal of Pediatrics, 1996
- Tamm Horsfall glycoprotein interferes with bacterial adherence to human kidney cellsEuropean Journal of Clinical Investigation, 1988
- Identification of Human Uromodulin as the Tamm-Horsfall Urinary GlycoproteinScience, 1987
- Prediction of Creatinine Clearance from Serum CreatinineNephron, 1976