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A Founder Mutation in
- Source :
- J Am Soc Nephrol, Issler, N, Afonso, S, Weissman, I, Jordan, K, Cebrian-Serrano, A, Meindl, K, Dahlke, E, Tziridis, K, Yan, G, Robles-López, J M, Tabernero, L, Patel, V, Kesselheim, A, Klootwijk, E D, Stanescu, H C, Dumitriu, S, Iancu, D, Tekman, M, Mozere, M, Jaureguiberry, G, Outtandy, P, Russell, C, Forst, A-L, Sterner, C, Heinl, E-S, Othmen, H, Tegtmeier, I, Reichold, M, Schiessl, I M, Limm, K, Oefner, P, Witzgall, R, Fu, L, Theilig, F, Schilling, A, Shuster Biton, E, Kalfon, L, Fedida, A, Arnon-Sheleg, E, Ben Izhak, O, Magen, D, Anikster, Y, Schulze, H, Ziegler, C, Lowe, M, Davies, B, Böckenhauer, D, Kleta, R, Falik Zaccai, T C & Warth, R 2022, ' A Founder Mutation in EHD1 Presents with Tubular Proteinuria and Deafness ', Journal of the American Society of Nephrology : JASN, vol. 33, no. 4, pp. 732-745 . https://doi.org/10.1681/ASN.2021101312
- Publication Year :
- 2021
-
Abstract
- BACKGROUND: The endocytic reabsorption of proteins in the proximal tubule requires a complex machinery and defects can lead to tubular proteinuria. The precise mechanisms of endocytosis and processing of receptors and cargo are incompletely understood. EHD1 belongs to a family of proteins presumably involved in the scission of intracellular vesicles and in ciliogenesis. However, the relevance of EHD1 in human tissues, in particular in the kidney, was unknown.METHODS: Genetic techniques were used in patients with tubular proteinuria and deafness to identify the disease-causing gene. Diagnostic and functional studies were performed in patients and disease models to investigate the pathophysiology.RESULTS: We identified six individuals (5-33 years) with proteinuria and a high-frequency hearing deficit associated with the homozygous missense variant c.1192C>T (p.R398W) in EHD1. Proteinuria (0.7-2.1 g/d) consisted predominantly of low molecular weight proteins, reflecting impaired renal proximal tubular endocytosis of filtered proteins. Ehd1 knockout and Ehd1R398W/R398W knockin mice also showed a high-frequency hearing deficit and impaired receptor-mediated endocytosis in proximal tubules, and a zebrafish model showed impaired ability to reabsorb low molecular weight dextran. Interestingly, ciliogenesis appeared unaffected in patients and mouse models. In silico structural analysis predicted a destabilizing effect of the R398W variant and possible inference with nucleotide binding leading to impaired EHD1 oligomerization and membrane remodeling ability.CONCLUSIONS: A homozygous missense variant of EHD1 causes a previously unrecognized autosomal recessive disorder characterized by sensorineural deafness and tubular proteinuria. Recessive EHD1 variants should be considered in individuals with hearing impairment, especially if tubular proteinuria is noted.
- Subjects :
- Adult
Adolescent
Vesicular Transport Proteins
Deafness
Vesicular Transport Proteins/genetics
Kidney Tubules, Proximal
Mice
Young Adult
Zebrafish/metabolism
Up Front Matters
570 Biowissenschaften, Biologie
Animals
Humans
Child
Zebrafish
Kidney Tubules, Proximal/metabolism
urogenital system
Proteinuria/metabolism
General Medicine
Low Density Lipoprotein Receptor-Related Protein-2/genetics
Endocytosis
epithelial transport physiology, infertility, megalin, Eps15 homology domain, proximal tubule, genetic renal disease, mutation
Deafness/genetics
Low Density Lipoprotein Receptor-Related Protein-2
Proteinuria
Basic Research
Nephrology
Child, Preschool
Mutation
ddc:570
Subjects
Details
- ISSN :
- 15333450
- Volume :
- 33
- Issue :
- 4
- Database :
- OpenAIRE
- Journal :
- Journal of the American Society of Nephrology : JASN
- Accession number :
- edsair.doi.dedup.....c8d86b9e766f0d768e9b5bfddd01c006
- Full Text :
- https://doi.org/10.1681/ASN.2021101312