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Published on: July 8, 2020
Dual Role of Factor H-Related Protein 1 in IgA Nephropathy Kidney Injury
Yuqi Kang1,2, Xianzhi Li1,2, Xiaohan Yuan1,2
1Renal Division, Department of Medicine, Peking University First Hospital; Peking University Institute of Nephrology; Key Laboratory of Renal Disease (Peking University), National Health Commission; Key Laboratory of Chronic Kidney Disease Prevention and Treatment, Ministry of Education, Beijing, China.
Introduction:
IgA nephropathy (IgAN) is characterized by glomerular IgA deposition, inducing complement activation and inflammation. Previous investigations have highlighted the association of factor H (FH)-related protein 1 (FHR-1) with IgAN. Given the dual functionality of FHR-1, encompassing its "canonical function" in complement activation and "noncanonical function" in triggering inflammation, this study investigated the role of FHR-1 in IgAN-associated kidney injury.
Methods:
In vitro experiments used IgA1-containing immune complexes (cIgA1-IC) to stimulate human mesangial cells, mimicking IgA deposition in IgAN, to explore FHR-1's interaction with impaired mesangial cells, its modulation of complement activation, and its proinflammatory impact when cocultured with monocytes. In vivo, a genetically engineered mouse model with the endogenous liver expression of human FH and FHR-5 received multiple low-dose intraperitoneal injections of Lactobacillus casei cell wall extract (LCWE)-CFA to induce IgA deposition. The nephrotoxic effects of FHR-1 and the therapeutic potential of partial FHR-1 short consensus repeat 1-2 (FHR-1SCR1-2) were assessed in this model.
Results:
Following pathogenic cIgA1-IC treatment, FHR-1 demonstrated increased binding affinity to mesangial cells. Besides, FHR-1 augmented C3c deposition on mesangial cells. Upon bound to mesangial cells, FHR-1 stimulated cocultured monocytes to secrete higher levels of inflammatory cytokines, interleukin (IL)-1β and IL-18, mediated by complement activation-induced C3a-C3aR and C5a-C5aR pathway activation, and complement-independent interaction with EMR2 on monocytes. In the murine model, intraperitoneally injected FHR-1 heightened glomerular C3 deposition, F4/80+ macrophage, and Ly6G+ neutrophils infiltration, whereas coinjection with FHR-1SCR1-2 mitigated these effects.
Conclusion:
FHR-1 exacerbates kidney injury in IgAN by accelerating complement activation and inflammation. FHR-1SCR1-2 effectively attenuated FHR-1-induced inflammation, demonstrating promising therapeutic potential for IgAN.
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