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A Genetic Risk Score Distinguishes Different Types of Autoantibody-Mediated Membranous Nephropathy
Sanjana Gupta1, Mallory Lorraine Downie1, Chris Cheshire1
1UCL Department of Renal Medicine, University College London, London, UK.
Introduction:
Membranous nephropathy (MN) is the leading cause of nephrotic syndrome in adults and is characterized by detectable autoantibodies against glomerular antigens, most commonly phospholipase A2 receptor 1 (PLA2R1) and thrombospondin type-1 domain containing 7A (THSD7A). In Europeans, genetic variation in at least five loci, PLA2R1, HLA-DRB1, HLA-DQA1, IRF4, and NFKB1, affects the risk of disease. Here, we investigated the genetic risk differences between different autoantibody states.
Methods:
1,409 MN individuals were genotyped genome-wide with a dense SNV array. The genetic risk score (GRS) was calculated utilizing the previously identified European MN loci, and results were compared with 4,929 healthy controls and 422 individuals with steroid-sensitive nephrotic syndrome.
Results:
GRS was calculated in the 759 MN individuals in whom antibody status was known. The GRS for MN was elevated in the anti-PLA2R1 antibody-positive (N = 372) compared with both the unaffected control (N = 4,929) and anti-THSD7A-positive (N = 31) groups (p < 0.0001 for both comparisons), suggesting that this GRS reflects anti-PLA2R1 MN. Among PLA2R1-positive patients, GRS was inversely correlated with age of disease onset (p = 0.009). Further, the GRS in the dual antibody-negative group (N = 355) was intermediate between controls and the PLA2R1-positive group (p < 0.0001).
Conclusion:
We demonstrate that the genetic risk factors for PLA2R1- and THSD7A-antibody-associated MN are different. A higher GRS is associated with younger age of onset of disease. Further, a proportion of antibody-negative MN cases have an elevated GRS similar to PLA2R1-positive disease. This suggests that in some individuals with negative serology the disease is driven by autoimmunity against PLA2R1.
Insights
Genetic risk factors for membranous nephropathy (MN) differ between autoantibody types. Higher genetic risk scores are linked to earlier disease onset, and some antibody-negative cases may have PLA2R1-driven autoimmunity.
Area of Science:
- Nephrology
- Immunology
- Genetics
Background:
- Membranous nephropathy (MN) is a leading cause of nephrotic syndrome in adults.
- MN is characterized by autoantibodies against glomerular antigens, primarily phospholipase A2 receptor 1 (PLA2R1) and thrombospondin type-1 domain containing 7A (THSD7A).
- Genetic variations in loci including PLA2R1, HLA-DRB1, HLA-DQA1, IRF4, and NFKB1 influence MN risk in Europeans.
Purpose of the Study:
- To investigate genetic risk differences in membranous nephropathy (MN) based on autoantibody status.
- To determine if genetic risk scores (GRS) differentiate between PLA2R1-positive, THSD7A-positive, and antibody-negative MN.
Main Methods:
- Genome-wide genotyping of 1,409 MN individuals using a dense SNV array.
- Calculation of a genetic risk score (GRS) based on established European MN loci.
- Comparison of GRS in MN patients with known antibody status against healthy controls and individuals with steroid-sensitive nephrotic syndrome.
Main Results:
- The GRS was significantly elevated in anti-PLA2R1 antibody-positive MN patients compared to controls and anti-THSD7A-positive patients.
- A higher GRS was inversely correlated with younger age of disease onset in PLA2R1-positive MN.
- Individuals with antibody-negative MN exhibited an intermediate GRS, suggesting potential underlying PLA2R1 autoimmunity in some cases.
Conclusions:
- Genetic risk factors for PLA2R1- and THSD7A-associated MN are distinct.
- Elevated GRS in a subset of antibody-negative MN cases indicates possible PLA2R1 autoimmunity.
- Genetic risk profiling may aid in understanding MN pathogenesis and patient stratification.
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