Literature DB >> 28164240

A Drosophila model system to assess the function of human monogenic podocyte mutations that cause nephrotic syndrome.

Yulong Fu1, Jun-Yi Zhu1, Adam Richman1, Zhanzheng Zhao2, Fujian Zhang3, Patricio E Ray4,5, Zhe Han1,5.   

Abstract

Many genetic mutations have been identified as monogenic causes of nephrotic syndrome (NS), but important knowledge gaps exist in the roles of these genes in kidney cell biology and renal diseases. More animal models are needed to assess the functions of these genes in vivo, and to determine how they cause NS in a timely manner. Drosophila nephrocytes and human podocytes share striking similarities, but to what degree these known NS genes play conserved roles in nephrocytes remains unknown. Here we systematically studied 40 genes associated with NS, including 7 that have not previously been analysed for renal function in an animal model. We found that 85% of these genes are required for nephrocyte functions, suggesting that a majority of human genes known to be associated with NS play conserved roles in renal function from flies to humans. To investigate functional conservation in more detail, we focused on Cindr, the fly homolog of the human NS gene CD2AP. Silencing Cindr in nephrocytes led to dramatic nephrocyte functional impairment and shortened life span, as well as collapse of nephrocyte lacunar channels and effacement of nephrocyte slit diaphragms. These phenotypes could be rescued by expression of a wild-type human CD2AP gene, but not a mutant allele derived from a patient with CD2AP-associated NS. We conclude that the Drosophila nephrocyte can be used to elucidate clinically relevant molecular mechanisms underlying the pathogenesis of most monogenic forms of NS, and to efficiently generate personalized in vivo models of genetic renal diseases bearing patient-specific mutations.
© The Author 2017. Published by Oxford University Press. All rights reserved. For Permissions, please email: journals.permissions@oup.com.

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Year:  2017        PMID: 28164240      PMCID: PMC6074792          DOI: 10.1093/hmg/ddw428

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  63 in total

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2.  Homophila: human disease gene cognates in Drosophila.

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Journal:  Nucleic Acids Res       Date:  2002-01-01       Impact factor: 16.971

3.  NPHS2, encoding the glomerular protein podocin, is mutated in autosomal recessive steroid-resistant nephrotic syndrome.

Authors:  N Boute; O Gribouval; S Roselli; F Benessy; H Lee; A Fuchshuber; K Dahan; M C Gubler; P Niaudet; C Antignac
Journal:  Nat Genet       Date:  2000-04       Impact factor: 38.330

4.  Podocin, a raft-associated component of the glomerular slit diaphragm, interacts with CD2AP and nephrin.

Authors:  K Schwarz; M Simons; J Reiser; M A Saleem; C Faul; W Kriz; A S Shaw; L B Holzman; P Mundel
Journal:  J Clin Invest       Date:  2001-12       Impact factor: 14.808

5.  Leigh syndrome with nephropathy and CoQ10 deficiency due to decaprenyl diphosphate synthase subunit 2 (PDSS2) mutations.

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6.  Exome sequencing reveals cubilin mutation as a single-gene cause of proteinuria.

Authors:  Bugsu Ovunc; Edgar A Otto; Virginia Vega-Warner; Pawaree Saisawat; Shazia Ashraf; Gokul Ramaswami; Hanan M Fathy; Dominik Schoeb; Gil Chernin; Robert H Lyons; Engin Yilmaz; Friedhelm Hildebrandt
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7.  ARHGDIA mutations cause nephrotic syndrome via defective RHO GTPase signaling.

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8.  Novel compound heterozygous mutations in AMN cause Imerslund-Gräsbeck syndrome in two half-sisters: a case report.

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9.  Targeted gene expression as a means of altering cell fates and generating dominant phenotypes.

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Journal:  Development       Date:  1993-06       Impact factor: 6.868

10.  The insect nephrocyte is a podocyte-like cell with a filtration slit diaphragm.

Authors:  Helen Weavers; Silvia Prieto-Sánchez; Ferdinand Grawe; Amparo Garcia-López; Ruben Artero; Michaela Wilsch-Bräuninger; Mar Ruiz-Gómez; Helen Skaer; Barry Denholm
Journal:  Nature       Date:  2008-10-29       Impact factor: 49.962

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2.  Disease Modeling To Understand the Pathomechanisms of Human Genetic Kidney Disorders.

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Journal:  Clin J Am Soc Nephrol       Date:  2020-03-05       Impact factor: 8.237

Review 3.  Drosophila melanogaster: a simple genetic model of kidney structure, function and disease.

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4.  Proteome Analysis of Isolated Podocytes Reveals Stress Responses in Glomerular Sclerosis.

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Journal:  J Am Soc Nephrol       Date:  2020-02-11       Impact factor: 10.121

5.  Slit diaphragm maintenance requires dynamic clathrin-mediated endocytosis facilitated by AP-2, Lap, Aux and Hsc70-4 in nephrocytes.

Authors:  Luyao Wang; Pei Wen; Joyce van de Leemput; Zhanzheng Zhao; Zhe Han
Journal:  Cell Biosci       Date:  2021-05-11       Impact factor: 7.133

6.  The Basolateral Polarity Module Promotes Slit Diaphragm Formation in Drosophila Nephrocytes, a Model of Vertebrate Podocytes.

Authors:  Michael Mysh; John S Poulton
Journal:  J Am Soc Nephrol       Date:  2021-04-01       Impact factor: 14.978

7.  4-Hydroxy-2-nonenal Alkylated and Peroxynitrite Nitrated Proteins Localize to the Fused Mitochondria in Malpighian Epithelial Cells of Type IV Collagen Drosophila Mutants.

Authors:  András A Kiss; Nikoletta Popovics; Zsolt Boldogkői; Katalin Csiszár; Mátyás Mink
Journal:  Biomed Res Int       Date:  2018-01-30       Impact factor: 3.411

Review 8.  Experimental Models to Study Podocyte Biology: Stock-Taking the Toolbox of Glomerular Research.

Authors:  Henning Hagmann; Paul T Brinkkoetter
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9.  Forward genetic screen in human podocytes identifies diphthamide biosynthesis genes as regulators of adhesion.

Authors:  Davide P Cinà; Troy Ketela; Kevin R Brown; Megha Chandrashekhar; Patricia Mero; Chengjin Li; Tuncer Onay; Yulong Fu; Zhe Han; Moin Saleem; Jason Moffat; Susan E Quaggin
Journal:  Am J Physiol Renal Physiol       Date:  2019-09-30

Review 10.  Using the Drosophila Nephrocyte to Model Podocyte Function and Disease.

Authors:  Martin Helmstädter; Tobias B Huber; Tobias Hermle
Journal:  Front Pediatr       Date:  2017-12-07       Impact factor: 3.418

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