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Modifiable risk factors and inflammation-related proteins in polymyalgia rheumatica: genome-wide meta-analysis and
Sizheng Steven Zhao1, Sarah L Mackie2,3, Susanna C Larsson4,5
1Centre for Musculoskeletal Research, Division of Musculoskeletal and Dermatological Science, School of Biological Sciences, Faculty of Biological Medicine and Health, The University of Manchester, Manchester Academic Health Science Centre, Manchester, UK.
Objective:
PMR is an age-related inflammatory disease of unknown cause. We aimed to identify potentially modifiable risk factors and therapeutic targets for preventing or treating PMR.
Methods:
We meta-analysed genetic association data from 8156 cases of PMR (defined using diagnostic codes and self-report) and 416 495 controls of European ancestry from the UK Biobank and FinnGen. We then performed Mendelian randomization analyses to estimate the association between eight modifiable risk factors (using data from up to 1.2 million individuals) and 65 inflammation-related circulating proteins (up to 55 792 individuals), using the inverse variance weighted and pleiotropy robust methods.
Results:
We identified three novel genome-wide significant loci in the IL1R1, NEK6 and CCDC88B genes and confirmation of previously described associations with HLA-DRB1 and ANKRD55. Genetically predicted smoking intensity (OR 1.32; 95%CI 1.08-1.60; P = 0.006) and visceral adiposity (OR 1.22; 95%CI 1.10-1.37; P = 3.10 × 10-4) were associated with PMR susceptibility. Multiple circulating proteins related to IL-1 family signalling were associated with PMR. IL-1 receptor-like 2, also known as IL-36 receptor (OR 1.25; P = 1.89 × 10-32), serum amyloid A2 (OR 1.06, 9.91 × 10-10) and CXCL6 (OR 1.09, P = 4.85 × 10-7) retained significance after correction for multiple testing.
Conclusion:
Reducing smoking and visceral adiposity at a population level might reduce incidence of PMR. We identified proteins that may play causal roles in PMR, potentially suggesting new therapeutic opportunities. Further research is needed before these findings are applied to clinical practice.
Insights
Reducing smoking and visceral adiposity may lower the risk of polymyalgia rheumatica (PMR). This study identified key proteins involved in IL-1 signaling, offering potential new therapeutic targets for PMR prevention and treatment.
Area of Science:
- Genetics
- Immunology
- Epidemiology
Background:
- Polymyalgia rheumatica (PMR) is an age-related inflammatory condition with an unknown etiology.
- Identifying modifiable risk factors and therapeutic targets is crucial for PMR management.
Purpose of the Study:
- To identify potentially modifiable risk factors for PMR.
- To discover novel therapeutic targets for PMR prevention and treatment.
Main Methods:
- Meta-analysis of genetic association data from UK Biobank and FinnGen (8156 PMR cases, 416,495 controls).
- Mendelian randomization analyses to assess associations between risk factors, circulating proteins, and PMR.
- Utilized inverse variance weighted and pleiotropy robust methods.
Main Results:
- Identified novel significant genetic loci in IL1R1, NEK6, and CCDC88B.
- Genetically predicted smoking intensity and visceral adiposity were associated with increased PMR susceptibility.
- Multiple inflammation-related proteins, particularly those in IL-1 family signaling (e.g., IL-36 receptor, SAA2, CXCL6), showed significant associations with PMR.
Conclusions:
- Population-level reduction in smoking and visceral adiposity may decrease PMR incidence.
- Identified specific proteins potentially playing causal roles in PMR pathogenesis.
- Findings suggest potential new therapeutic avenues for PMR, warranting further clinical research.
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