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Altered glycosylation of IgG4 promotes lectin complement pathway activation in anti-PLA2R1–associated membranous nephropathy

Authors :
Gérard Lambeau
Rudolf P. Wüthrich
Hong Ma
Andreas D. Kistler
Noortje de Haan
Harald Seeger
Manfred Wuhrer
Johan M. Lorenzen
Urs Wegmann
Péter Gál
David J. Salant
Gábor Pál
Christelle Zaghrini
Malte Kölling
Simone Brandt
George Haddad
Laurence H. Beck
Bence Kiss
Institute of Physiology, University of Zurich, Zurich, Switzerland
Department of Medicine, Boston University School of Medicine, Boston, Massachusetts, USA
Center for Proteomics and Metabolomics, Leiden University Medical Center, Netherlands
Institut de pharmacologie moléculaire et cellulaire (IPMC)
Centre National de la Recherche Scientifique (CNRS)-Université Nice Sophia Antipolis (... - 2019) (UNS)
COMUE Université Côte d'Azur (2015-2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015-2019) (COMUE UCA)-Université Côte d'Azur (UCA)
Institute of Pathology, University Hospital of Zurich, Switzerland
Department of Biochemistry, Eötvös Loránd University, Budapest, Hungary
Institute of Enzymology, Research Centre for Natural Sciences, Budapest, Hungary
University of Zurich
Kistler, Andreas D
Source :
J Clin Invest, Journal of Clinical Investigation, 131(5). AMER SOC CLINICAL INVESTIGATION INC, Journal of Clinical Investigation, Journal of Clinical Investigation, American Society for Clinical Investigation, 2021, 131 (5), ⟨10.1172/JCI140453⟩
Publication Year :
2021
Publisher :
American Society for Clinical Investigation, 2021.

Abstract

Primary membranous nephropathy (pMN) is a leading cause of nephrotic syndrome in adults. In most cases, this autoimmune kidney disease is associated with autoantibodies against the M-type phospholipase A2 receptor (PLA2R1) expressed on kidney podocytes, but the mechanisms leading to glomerular damage remain elusive. Here, we developed a cell culture model using human podocytes and found that anti-PLA2R1-positive pMN patient sera or isolated IgG4, but not IgG4-depleted sera, induced proteolysis of the 2 essential podocyte proteins synaptopodin and NEPH1 in the presence of complement, resulting in perturbations of the podocyte cytoskeleton. Specific blockade of the lectin pathway prevented degradation of synaptopodin and NEPH1. Anti-PLA2R1 IgG4 directly bound mannose-binding lectin in a glycosylation-dependent manner. In a cohort of pMN patients, we identified increased levels of galactose-deficient IgG4, which correlated with anti-PLA2R1 titers and podocyte damage induced by patient sera. Assembly of the terminal C5b-9 complement complex and activation of the complement receptors C3aR1 or C5aR1 were required to induce proteolysis of synaptopodin and NEPH1 by 2 distinct proteolytic pathways mediated by cysteine and aspartic proteinases, respectively. Together, these results demonstrated a mechanism by which aberrantly glycosylated IgG4 activated the lectin pathway and induced podocyte injury in primary membranous nephropathy.

Details

ISSN :
15588238 and 00219738
Volume :
131
Database :
OpenAIRE
Journal :
Journal of Clinical Investigation
Accession number :
edsair.doi.dedup.....000a779bfd9413f61ffb9f474cfc14a8
Full Text :
https://doi.org/10.1172/jci140453