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Estimation of Nephron Number in Whole Kidney using the Acid Maceration Method
Published on: May 22, 2019
Clinical spectrum, prognosis and estimated prevalence of DNAJB11-kidney disease
Vinh T Huynh1, Marie-Pierre Audrézet2, John A Sayer3
1Department of Nephrology, Hemodialysis and Renal Transplantation, University Hospital, Brest, France; Univ Brest, F-29200 Brest, France; National Institute for Research in Health Science (INSERM) UMR 1078, "Genetics, Genomics and Biotechnologies," Brest, France.
Insights
Mutations in the DNAJB11 gene are linked to atypical forms of polycystic kidney disease, affecting protein folding and cellular transport. Early diagnosis is crucial for patient management and genetic counseling.
Area of Science:
- Genetics
- Nephrology
- Molecular Biology
Background:
- DNAJB11 mutations were recently identified in atypical autosomal dominant polycystic kidney disease.
- DNAJB11 encodes a cofactor for the endoplasmic reticulum chaperone BiP, essential for protein folding and trafficking.
Purpose of the Study:
- To characterize the phenotype associated with DNAJB11 loss-of-function variants.
- To determine the prevalence and clinical spectrum of DNAJB11-associated kidney disease.
Main Methods:
- International collaborative study involving genetic analysis (NGS, WES, WGS) of new pedigrees.
- Analysis of Genomics England 100,000 Genomes Project data.
- Prevalence estimation using the GnomAD database.
Main Results:
- Thirteen distinct loss-of-function DNAJB11 variants identified in 20 new pedigrees (54 individuals).
- Total of 77 patients (27 pedigrees) reported, with 32 reaching end-stage kidney disease (median age 75).
- Vascular phenotypes (aneurysms, aortic dilatation) observed in four pedigrees; DNAJB11 variants found in diverse kidney/urinary tract disorders.
Conclusions:
- DNAJB11 variants cause a spectrum of kidney diseases, often atypical cystic or interstitial presentations.
- Precise diagnosis is vital for patient management, genetic counseling, and donor selection.
- Genetic prevalence of DNAJB11 variants is approximately 0.85 per 10,000 individuals.
Abstract:
Monoallelic mutations of DNAJB11 were recently described in seven pedigrees with atypical clinical presentations of autosomal dominant polycystic kidney disease. DNAJB11 encodes one of the main cofactors of the endoplasmic reticulum chaperon BiP, a heat-shock protein required for efficient protein folding and trafficking. Here we conducted an international collaborative study to better characterize the DNAJB11-associated phenotype. Thirteen different loss-of-function variants were identified in 20 new pedigrees (54 affected individuals) by targeted next-generation sequencing, whole-exome sequencing or whole-genome sequencing. Amongst the 77 patients (27 pedigrees) now in total reported, 32 reached end stage kidney disease (range, 55-89 years, median age 75); without a significant difference between males and females. While a majority of patients presented with non-enlarged polycystic kidneys, renal cysts were inconsistently identified in patients under age 45. Vascular phenotypes, including intracranial aneurysms, dilatation of the thoracic aorta and dissection of a carotid artery were present in four pedigrees. We accessed Genomics England 100,000 genomes project data, and identified pathogenic variants of DNAJB11 in nine of 3934 probands with various kidney and urinary tract disorders. The clinical diagnosis was cystic kidney disease for eight probands and nephrocalcinosis for one proband. No additional pathogenic variants likely explaining the kidney disease were identified. Using the publicly available GnomAD database, DNAJB11 genetic prevalence was calculated at 0.85/10.000 individuals. Thus, establishing a precise diagnosis in atypical cystic or interstitial kidney disease is crucial, with important implications in terms of follow-up, genetic counseling, prognostic evaluation, therapeutic management, and for selection of living kidney donors.
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