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Published on: November 8, 2015
Tacrolimus Prevents TWEAK-Induced PLA2R Expression in Cultured Human Podocytes
Leticia Cuarental1,2, Lara Valiño-Rivas1,2, Luis Mendonça3
1IIS-Fundacion Jimenez Diaz, Universidad Autonoma de Madrid, Fundacion Renal Iñigo Alvarez de Toledo-IRSIN, 28040 Madrid, Spain.
Abstract:
Primary membranous nephropathy is usually caused by antibodies against the podocyte antigen membrane M-type phospholipase A2 receptor (PLA2R). The treatment of membranous nephropathy is not fully satisfactory. The calcineurin inhibitor tacrolimus is used to treat membranous nephropathy, but recurrence upon drug withdrawal is common. TNF superfamily members are key mediators of kidney injury. We have now identified key TNF receptor superfamily members in podocytes and explored the regulation of PLA2R expression and the impact of tacrolimus. Data mining of single cell transcriptomics and glomerular transcriptomics data identified TNFRSF12a/Fn14 as the highest expressed TNF receptor superfamily gene in human membranous nephropathy, and this was confirmed by immunohistochemistry that also identified NFκB activation in membranous nephropathy podocytes. Additionally, glomerular transcriptomics identified PLA2R1 expression as being increased in membranous nephropathy in the parenteral administration of the Fn14 ligand TWEAK increased podocyte PLA2R expression in mice. Furthermore, in cultured human podocytes, TWEAK increased the expression of PLA2R as well as the expression of other genes recently identified by GWAS as linked to membranous nephropathy: NFKB1 and IRF4. Interestingly, IRF4 encodes the FK506-binding protein 52 (FKBP52), a protein associated with tacrolimus. Tacrolimus prevented the increased expression of PLA2R, NFKB1 and IRF4 induced by TWEAK in cultured podocytes. In conclusion, TWEAK upregulates the expression of PLA2R and of other genes linked to membranous nephropathy in podocytes, and this is prevented by tacrolimus. An impact of tacrolimus on the expression of PLA2R and other genes in podocytes may underlie its efficacy in treating the disease as well as the frequent recurrence of nephrotic syndrome upon tacrolimus withdrawal.
Insights
Primary membranous nephropathy involves antibodies against PLA2R. Tumor Necrosis Factor (TNF) superfamily member TWEAK upregulates PLA2R expression, a process inhibited by tacrolimus, potentially explaining treatment efficacy and recurrence in this kidney disease.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Primary membranous nephropathy (MN) is an autoimmune kidney disease often targeting the podocyte M-type phospholipase A2 receptor (PLA2R).
- Current treatments for MN are suboptimal, with frequent relapses after calcineurin inhibitor withdrawal.
- Tumor Necrosis Factor (TNF) superfamily members are implicated in kidney injury.
Purpose of the Study:
- To identify key TNF receptor superfamily members in podocytes in MN.
- To investigate the regulation of PLA2R expression by TNF superfamily members.
- To explore the impact of tacrolimus on these pathways.
Main Methods:
- Bioinformatic analysis of single-cell and glomerular transcriptomics data from MN patients.
- Immunohistochemistry to confirm gene expression and NFκB activation in kidney biopsies.
- In vitro studies using cultured human podocytes treated with TWEAK and tacrolimus.
Main Results:
- TNFRSF12a/Fn14 was identified as the most highly expressed TNF receptor superfamily gene in human MN podocytes.
- TWEAK administration increased PLA2R expression in mouse kidneys and cultured human podocytes.
- Tacrolimus inhibited TWEAK-induced upregulation of PLA2R, NFKB1, and IRF4 in podocytes.
Conclusions:
- TWEAK signaling in podocytes upregulates PLA2R and other MN-associated genes (NFKB1, IRF4).
- Tacrolimus interferes with TWEAK-induced gene expression in podocytes.
- These molecular interactions may explain tacrolimus's therapeutic effect and the common recurrence of nephrotic syndrome upon its withdrawal.

