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Evaluating the effects of cardiometabolic exposures on circulating proteins which may contribute to severe SARS-CoV-2
Tom G Richardson1, Si Fang1, Ruth E Mitchell1
1Medical Research Council Integrative Epidemiology Unit (MRC IEU), Population Health Sciences, Bristol Medical School, University of Bristol, Oakfield House, Oakfield Grove, Bristol BS8 2BN, United Kingdom.
Background:
Developing insight into the pathogenesis of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is of critical importance to overcome the global pandemic caused by coronavirus disease 2019 (covid-19). In this study, we have applied Mendelian randomization (MR) to systematically evaluate the effect of 10 cardiometabolic risk factors and genetic liability to lifetime smoking on 97 circulating host proteins postulated to either interact or contribute to the maladaptive host response of SARS-CoV-2.
Methods:
We applied the inverse variance weighted (IVW) approach and several robust MR methods in a two-sample setting to systemically estimate the genetically predicted effect of each risk factor in turn on levels of each circulating protein. Multivariable MR was conducted to simultaneously evaluate the effects of multiple risk factors on the same protein. We also applied MR using cis-regulatory variants at the genomic location responsible for encoding these proteins to estimate whether their circulating levels may influence severe SARS-CoV-2.
Findings:
In total, we identified evidence supporting 105 effects between risk factors and circulating proteins which were robust to multiple testing corrections and sensitivity analyzes. For example, body mass index provided evidence of an effect on 23 circulating proteins with a variety of functions, such as inflammatory markers c-reactive protein (IVW Beta=0.34 per standard deviation change, 95% CI=0.26 to 0.41, P = 2.19 × 10-16) and interleukin-1 receptor antagonist (IVW Beta=0.23, 95% CI=0.17 to 0.30, P = 9.04 × 10-12). Further analyzes using multivariable MR provided evidence that the effect of BMI on lowering immunoglobulin G, an antibody class involved in protection from infection, is substantially mediated by raised triglycerides levels (IVW Beta=-0.18, 95% CI=-0.25 to -0.12, P = 2.32 × 10-08, proportion mediated=44.1%). The strongest evidence that any of the circulating proteins highlighted by our initial analysis influence severe SARS-CoV-2 was identified for soluble glycoprotein 130 (odds ratio=1.81, 95% CI=1.25 to 2.62, P = 0.002), a signal transductor for interleukin-6 type cytokines which are involved in inflammatory response. However, based on current case samples for severe SARS-CoV-2 we were unable to replicate findings in independent samples.
Interpretation:
Our findings highlight several key proteins which are influenced by established exposures for disease. Future research to determine whether these circulating proteins mediate environmental effects onto risk of SARS-CoV-2 infection or covid-19 progression are warranted to help elucidate therapeutic strategies for severe covid-19 disease.
Funding:
The Medical Research Council, the Wellcome Trust, the British Heart Foundation and UK Research and Innovation.
Insights
This study used Mendelian randomization to link 10 cardiometabolic risk factors and smoking to 97 host proteins, revealing 105 significant associations. Body mass index affected 23 proteins, including inflammatory markers, offering insights into severe COVID-19 pathogenesis.
Area of Science:
- Genetics
- Immunology
- Epidemiology
Background:
- Understanding severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) pathogenesis is crucial for combating the COVID-19 pandemic.
- This study investigates the influence of cardiometabolic risk factors and smoking on host proteins involved in SARS-CoV-2 response.
Purpose of the Study:
- To systematically evaluate the effect of 10 cardiometabolic risk factors and genetic liability to lifetime smoking on 97 circulating host proteins.
- To identify host proteins that may interact with or contribute to the maladaptive host response to SARS-CoV-2.
Main Methods:
- Applied inverse variance weighted (IVW) and robust Mendelian randomization (MR) methods in a two-sample setting.
- Utilized multivariable MR to assess simultaneous effects of multiple risk factors on proteins.
- Employed MR with cis-regulatory variants to examine if protein levels influence severe SARS-CoV-2.
Main Results:
- Identified 105 robust effects between risk factors and circulating proteins.
- Body mass index (BMI) showed effects on 23 proteins, including inflammatory markers like C-reactive protein and interleukin-1 receptor antagonist.
- Found that BMI's effect on lowering immunoglobulin G is partly mediated by elevated triglycerides.
- Soluble glycoprotein 130, a signal transducer for interleukin-6, showed the strongest association with severe SARS-CoV-2, though replication was not achieved.
Conclusions:
- Highlighted key proteins influenced by established disease risk factors.
- Warranted further research into whether these proteins mediate environmental effects on SARS-CoV-2 infection or COVID-19 progression.
- Emphasized the potential for elucidating therapeutic strategies for severe COVID-19.
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