4.7 Article

Glomerular Endothelial Cell-Derived microRNA-192 Regulates Nephronectin Expression in Idiopathic Membranous Glomerulonephritis

期刊

JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY
卷 32, 期 11, 页码 2777-2794

出版社

AMER SOC NEPHROLOGY
DOI: 10.1681/ASN.2020121699

关键词

glomerular disease; membranous nephropathy; glomerular filtration barrier; podocyte; glomerular basement membrane; microRNAs; glomerular endothelial cells; nephronectin

资金

  1. Deutsche Forschungsgemeinschaft [MU 3797/1-1, SCHI 587/11-1]
  2. Jochen-Kalden-Forderprogramm of IZKF
  3. Friedrich Alexander University of Erlangen
  4. Else Kroner-Fresenius-Stiftung
  5. Eva Luise und Horst Kohler Stiftung [2019_KollegSE.04]
  6. Research Center On Rare Kidney Diseases (RECORD), University Hospital Erlangen

向作者/读者索取更多资源

This study demonstrates that miR-192-5p and miR-378a-3p are upregulated in the glomeruli of iMGN patients, while NPNT is reduced. Using zebrafish and mouse models, it was shown that overexpression of miR-192-5p and knockdown of npnt induced edema, proteinuria, and podocyte damage. GEC downregulates podocyte NPNT via exosomes containing miR-192-5p.
Background Autoantibodies binding to podocyte antigens cause idiopathic membranous glomerulonephritis (iMGN). However, it remains elusive how autoantibodies reach the subepithelial space because the glomerular filtration barrier (GFB) is size selective and almost impermeable for antibodies. Methods Kidney biopsies from patients with iMGN, cell culture, zebrafish, and mouse models were used to investigate the role of nephronectin (NPNT) regulating microRNAs (miRs) for the GFB. Results Glomerular endothelial cell (GEC)-derived miR-192-5p and podocyte-derived miR-378a-3p are upregulated in urine and glomeruli of patients with iMGN, whereas glomerular NPNT is reduced. Overexpression of miR-192-5p and morpholino-mediated npnt knockdown induced edema, proteinuria, and podocyte effacement similar to podocyte-derived miR-378a-3p in zebrafish. Structural changes of the glomerular basement membrane (GBM) with increased lucidity, splitting, and lamellation, especially of the lamina rara interna, similar to ultrastructural findings seen in advanced stages of iMGN, were found. IgG-size nanoparticles accumulated in lucidity areas of the lamina rara interna and lamina densa of the GBM in npnt-knockdown zebrafish models. Loss of slit diaphragm proteins and severe structural impairment of the GBM were further confirmed in podocyte-specific Npnt knockout mice. GECs downregulate podocyte NPNT by transfer of miR-192-5p?containing exosomes in a paracrine manner. Conclusions Podocyte NPNT is important for proper glomerular filter function and GBM structure and is regulated by GEC-derived miR-192-5p and podocyte-derived miR-378a-3p. We hypothesize that loss of NPNT in the GBM is an important part of the initial pathophysiology of iMGN and enables autoantigenicity of podocyte antigens and subepithelial immune complex deposition in iMGN.

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