Glomerular Endothelial Cell-Derived miR-200c Impairs Glomerular Homeostasis by Targeting Podocyte VEGF-A

Author:

Ursu Raluca,Sopel Nina,Ohs AlexandraORCID,Tati Ramesh,Buvall Lisa,Nyström Jenny,Schiffer Mario,Müller-Deile JaninaORCID

Abstract

Deciphering the pathophysiological mechanisms of primary podocytopathies that can lead to end-stage renal disease and increased mortality is an unmet need. Studying how microRNAs (miRs) interfere with various signaling pathways enables identification of pathomechanisms, novel biomarkers and potential therapeutic options. We investigated the expression of miR-200c in urine from patients with different renal diseases as a potential candidate involved in podocytopathies. The role of miR-200c for the glomerulus and its potential targets were studied in cultured human podocytes, human glomerular endothelial cells and in the zebrafish model. miR-200c was upregulated in urine from patients with minimal change disease, membranous glomerulonephritis and focal segmental glomerulosclerosis and also in transforming growth factor beta (TGF-β) stressed glomerular endothelial cells, but not in podocytes. In zebrafish, miR-200c overexpression caused proteinuria, edema, podocyte foot process effacement and glomerular endotheliosis. Although zinc finger E-Box binding homeobox 1/2 (ZEB1/2), important in epithelial to mesenchymal transition (EMT), are prominent targets of miR-200c, their downregulation did not explain our zebrafish phenotype. We detected decreased vegfaa/bb in zebrafish overexpressing miR-200c and could further prove that miR-200c decreased VEGF-A expression and secretion in cultured human podocytes. We hypothesize that miR-200c is released from glomerular endothelial cells during cell stress and acts in a paracrine, autocrine, as well as context-dependent manner in the glomerulus. MiR-200c can cause glomerular damage most likely due to the reduction of podocyte VEGF-A. In contrast, miR-200c might also influence ZEB expression and therefore EMT, which might be important in other conditions. Therefore, we propose that miR-200c-mediated effects in the glomerulus are context-sensitive.

Funder

Deutsche Forschungsgemeinschaft

Else Kröner-Fresenius-Stiftung

Jochen-Kalden-Förderprogramm of IZKF Erlangen

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference41 articles.

1. Differentiating Primary, Genetic, and Secondary FSGS in Adults: A Clinicopathologic Approach;Sethi;J. Am. Soc. Nephrol.,2018

2. Floege, J., Johnson, R.J., Feehally, J., Salant, D.J., and Cattran, D.C. (2015). Comprehensive Clinical Nephrology, Elsevier Inc.. [5th ed.].

3. Minimal-change-Glomerulonephritis und fokal-segmentale Glomerulosklerose;Schenk;Internist,2019

4. Update on Lupus Nephritis: Core Curriculum 2020;Parikh;Am. J. Kidney Dis.,2020

5. IgA Nephropathy: Core Curriculum 2021;Pattrapornpisut;Am. J. Kidney Dis.,2021

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