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Updated: Oct 23, 2025

A Comparative Approach to Characterize the Landscape of Host-Pathogen Protein-Protein Interactions
Published on: July 18, 2013
A proteome-wide genetic investigation identifies several SARS-CoV-2-exploited host targets of clinical relevance
Mohd Anisul1,2, Jarrod Shilts1, Jeremy Schwartzentruber1,2
1Wellcome Sanger Institute, Wellcome Genome Campus, Cambridge, United Kingdom.
Background:
The virus SARS-CoV-2 can exploit biological vulnerabilities (e.g. host proteins) in susceptible hosts that predispose to the development of severe COVID-19.
Methods:
To identify host proteins that may contribute to the risk of severe COVID-19, we undertook proteome-wide genetic colocalisation tests, and polygenic (pan) and cis-Mendelian randomisation analyses leveraging publicly available protein and COVID-19 datasets.
Results:
Our analytic approach identified several known targets (e.g. ABO, OAS1), but also nominated new proteins such as soluble Fas (colocalisation probability >0.9, p=1 × 10-4), implicating Fas-mediated apoptosis as a potential target for COVID-19 risk. The polygenic (pan) and cis-Mendelian randomisation analyses showed consistent associations of genetically predicted ABO protein with several COVID-19 phenotypes. The ABO signal is highly pleiotropic, and a look-up of proteins associated with the ABO signal revealed that the strongest association was with soluble CD209. We demonstrated experimentally that CD209 directly interacts with the spike protein of SARS-CoV-2, suggesting a mechanism that could explain the ABO association with COVID-19.
Conclusions:
Our work provides a prioritised list of host targets potentially exploited by SARS-CoV-2 and is a precursor for further research on CD209 and FAS as therapeutically tractable targets for COVID-19.
Funding:
MAK, JSc, JH, AB, DO, MC, EMM, MG, ID were funded by Open Targets. J.Z. and T.R.G were funded by the UK Medical Research Council Integrative Epidemiology Unit (MC_UU_00011/4). JSh and GJW were funded by the Wellcome Trust Grant 206194. This research was funded in part by the Wellcome Trust [Grant 206194]. For the purpose of open access, the author has applied a CC BY public copyright licence to any Author Accepted Manuscript version arising from this submission.
Insights
This study identifies host proteins, including soluble Fas and CD209, that SARS-CoV-2 exploits to cause severe COVID-19. These findings highlight potential therapeutic targets for COVID-19 risk reduction.
Area of Science:
- Genetics
- Immunology
- Virology
Background:
- SARS-CoV-2 exploits host proteins, leading to severe COVID-19 in susceptible individuals.
- Understanding these host-viral interactions is crucial for identifying risk factors and therapeutic targets.
Purpose of the Study:
- To identify host proteins contributing to severe COVID-19 risk.
- To investigate potential therapeutic targets for mitigating COVID-19 severity.
Main Methods:
- Proteome-wide genetic colocalisation and Mendelian randomisation analyses were performed.
- Publicly available protein and COVID-19 datasets were leveraged.
- Experimental validation of protein interactions was conducted.
Main Results:
- Known targets (e.g., ABO, OAS1) and novel proteins like soluble Fas were identified, implicating Fas-mediated apoptosis.
- Genetic analysis revealed consistent associations between ABO protein and COVID-19 phenotypes.
- CD209 was found to interact directly with the SARS-CoV-2 spike protein, explaining the ABO association.
Conclusions:
- A prioritized list of host targets exploited by SARS-CoV-2 was generated.
- Soluble CD209 and Fas are nominated as potential therapeutic targets for COVID-19.
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