Selective endocytosis controls slit diaphragm maintenance and dynamics in Drosophila nephrocytes

Author:

Lang Konrad1,Milosavljevic Julian1,Heinkele Helena1,Chen Mengmeng1,Gerstner Lea1,Spitz Dominik1,Kayser Severine1,Helmstädter Martin1,Walz Gerd12,Köttgen Michael12ORCID,Spracklen Andrew3ORCID,Poulton John4,Hermle Tobias1ORCID

Affiliation:

1. Renal Division, Department of Medicine, Faculty of Medicine and Medical Center - University of Freiburg

2. CIBSS – Centre for Integrative Biological Signalling Studies

3. Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill

4. Department of Medicine, Division of Nephrology and Hypertension, University of North Carolina at Chapel Hill

Abstract

The kidneys generate about 180 l of primary urine per day by filtration of plasma. An essential part of the filtration barrier is the slit diaphragm, a multiprotein complex containing nephrin as major component. Filter dysfunction typically manifests with proteinuria and mutations in endocytosis regulating genes were discovered as causes of proteinuria. However, it is unclear how endocytosis regulates the slit diaphragm and how the filtration barrier is maintained without either protein leakage or filter clogging. Here, we study nephrin dynamics in podocyte-like nephrocytes of Drosophila and show that selective endocytosis either by dynamin- or flotillin-mediated pathways regulates a stable yet highly dynamic architecture. Short-term manipulation of endocytic functions indicates that dynamin-mediated endocytosis of ectopic nephrin restricts slit diaphragm formation spatially while flotillin-mediated turnover of nephrin within the slit diaphragm is needed to maintain filter permeability by shedding of molecules bound to nephrin in endosomes. Since slit diaphragms cannot be studied in vitro and are poorly accessible in mouse models, this is the first analysis of their dynamics within the slit diaphragm multiprotein complex. Identification of the mechanisms of slit diaphragm maintenance will help to develop novel therapies for proteinuric renal diseases that are frequently limited to symptomatic treatment.

Funder

Deutsche Forschungsgemeinschaft

Germany’s Excellence Strategy

University of Freiburg

China Scholarship Council

Deutsche Gesellschaft für Innere Medizin

UNC Kidney Center endowment funds.

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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