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Analyses of Proteinuria, Renal Infiltration of Leukocytes, and Renal Deposition of Proteins in Lupus-prone MRL/lpr Mice
Published on: June 8, 2022
Identification of potential therapeutic targets for complement-associated glomerular diseases using Mendelian
Zhongkuo Zhao1, Fangye Zheng2, Xutao Yang2
1Department of General Surgery, The Fourth Affiliated Hospital of School of Medicine and International School of Medicine, International Institutes of Medicine, Zhejiang University, Yiwu, China.
Insights
This study found that elevated complement factor H-related protein 1 (CFHR1) causally increases IgA nephropathy (IgAN) risk, while complement factor D (CFD) is linked to diabetic nephropathy (DN) risk. Targeting CFHR1 and CFD may offer new therapeutic avenues for these kidney diseases.
Area of Science:
- Immunology
- Nephrology
- Genetics
Background:
- The complement system is integral to innate immunity and implicated in glomerular diseases.
- Uncontrolled complement activation contributes to IgA nephropathy (IgAN), membranous nephropathy (MN), and diabetic nephropathy (DN).
Purpose of the Study:
- To investigate the causal role of complement components in IgAN, MN, and DN using Mendelian randomization.
- To identify potential therapeutic targets within complement pathways for these kidney diseases.
Main Methods:
- Mendelian randomization analysis utilizing protein Quantitative Trait Loci data.
- Gene expression analysis, protein-protein interaction networks, and enrichment analysis were performed.
- Investigated causal associations between complement proteins and IgAN, MN, and DN.
Main Results:
- Genetically elevated complement factor H-related protein 1 (CFHR1) showed a causal link to increased IgAN risk (OR 1.239).
- CFHR1 expression was found in renal T cells and plasma cells, with its network enriched in immune pathways.
- Genetically elevated complement factor D (CFD) was causally associated with increased DN risk (OR 1.264).
- CFD expression was observed in renal macrophages, and its network involved inflammatory processes.
- No significant causal associations were found for complement proteins with MN after FDR correction.
Conclusions:
- Elevated CFHR1 is causally associated with IgA nephropathy risk.
- Elevated CFD is causally associated with diabetic nephropathy risk.
- Targeting complement regulators CFHR1 and CFD presents potential therapeutic strategies for IgAN and DN.
Abstract:
The complement system is a crucial part of the innate immune response, involved in various glomerular diseases through its activation in different pathways. Uncontrolled complement activation plays a key role in common glomerular diseases such as IgA nephropathy (IgAN), membranous nephropathy (MN), and diabetic nephropathy (DN). Understanding the specific role of complement activation in these conditions is critical for the development of targeted therapies. This study employed Mendelian randomization to examine the causal role of complement components IgAN, MN, and DN. By utilizing protein Quantitative Trait Loci data, gene expression analysis, protein-protein interaction networks, and enrichment analysis, we sought to investigate the involvement of complement pathways and identify potential therapeutic targets. Genetically elevated plasma complement factor H-related protein 1 (CFHR1) levels demonstrated a significant causal association with increased IgAN risk (inverse variance weighting odds ratio 1.239, 95% confidence interval 1.084-1.417; false discovery rate [FDR]-adjusted P = .002). CFHR1 was expressed in renal T cells and plasma cells, and its protein-protein interaction network enriched immune/inflammatory pathways. No complement proteins showed significant causal associations with MN after FDR correction. Genetically elevated plasma complement factor D (CFD), levels were causally associated with increased DN risk (inverse variance weighting odds ratio 1.264, 95% confidence interval 1.090-1.465; FDR-adjusted P = .002). CFD was expressed in renal macrophages, and its network enriched inflammatory processes. Targeting complement regulators like CFHR1 and CFD may provide new therapeutic opportunities for IgAN and DN.
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