z-logo
open-access-imgOpen Access
Moderate Nucleoporin 133 deficiency leads to glomerular damage in zebrafish
Author(s) -
Chiara Cosentino,
Alessandro Berto,
Stéphane Pelletier,
Michelle Hari,
Johannes Loffing,
Stephan C. F. Neuhauss,
Valérie Doye
Publication year - 2019
Publication title -
scientific reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.24
H-Index - 213
ISSN - 2045-2322
DOI - 10.1038/s41598-019-41202-4
Subject(s) - zebrafish , nucleoporin , gene knockdown , nuclear pore , biology , phenotype , morpholino , downregulation and upregulation , microbiology and biotechnology , nuclear transport , nephrotic syndrome , gene , genetics , cell nucleus , endocrinology , nucleus
Although structural nuclear pore proteins (nucleoporins) are seemingly required in every cell type to assemble a functional nuclear transport machinery, mutations or deregulation of a subset of them have been associated with specific human hereditary diseases. In particular, previous genetic studies of patients with nephrotic syndrome identified mutations in Nup107 that impaired the expression or the localization of its direct partner at nuclear pores, Nup133. In the present study, we characterized the zebrafish nup133 orthologous gene and its expression pattern during larval development. Using a morpholino-mediated gene knockdown, we show that partial depletion of Nup133 in zebrafish larvae leads to the formation of kidney cysts, a phenotype that can be rescued by co-injection of wild type mRNA. Analysis of different markers for tubular and glomerular development shows that the overall kidney development is not affected by nup133 knockdown. Likewise, no gross defect in nuclear pore complex assembly was observed in these nup133 morphants. On the other hand, nup133 downregulation results in proteinuria and moderate foot process effacement, mimicking some of the abnormalities typically featured by patients with nephrotic syndrome. These data indicate that nup133 is a new gene required for proper glomerular structure and function in zebrafish.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here