SARS-CoV-2 host-shutoff impacts innate NK cell functions, but antibody-dependent NK activity is strongly activated through non-spike antibodies

Author:

Fielding Ceri Alan1ORCID,Sabberwal Pragati1,Williamson James C2,Greenwood Edward JD2ORCID,Crozier Thomas WM2,Zelek Wioleta1,Seow Jeffrey3,Graham Carl3,Huettner Isabella3,Edgeworth Jonathan D34,Price David A1ORCID,Morgan Paul B1,Ladell Kristin1,Eberl Matthias1ORCID,Humphreys Ian R1,Merrick Blair34,Doores Katie3,Wilson Sam J5ORCID,Lehner Paul J2ORCID,Wang Eddie CY1ORCID,Stanton Richard J1ORCID

Affiliation:

1. Division of Infection and Immunity, School of Medicine, Cardiff University

2. Cambridge Institute for Therapeutic Immunology & Infectious Disease, Jeffrey Cheah Biomedical Centre, Cambridge Biomedical Campus, University of Cambridge

3. Department of Infectious Diseases, School of Immunology & Microbial Sciences, King's College London

4. Department of Infectious Diseases, Guy’s and St Thomas’ NHS Foundation Trust

5. MRC - University of Glasgow Centre for Virus Research

Abstract

The outcome of infection is dependent on the ability of viruses to manipulate the infected cell to evade immunity, and the ability of the immune response to overcome this evasion. Understanding this process is key to understanding pathogenesis, genetic risk factors, and both natural and vaccine-induced immunity. SARS-CoV-2 antagonises the innate interferon response, but whether it manipulates innate cellular immunity is unclear. An unbiased proteomic analysis determined how cell surface protein expression is altered on SARS-CoV-2-infected lung epithelial cells, showing downregulation of activating NK ligands B7-H6, MICA, ULBP2, and Nectin1, with minimal effects on MHC-I. This occurred at the level of protein synthesis, could be mediated by Nsp1 and Nsp14, and correlated with a reduction in NK cell activation. This identifies a novel mechanism by which SARS-CoV-2 host-shutoff antagonises innate immunity. Later in the disease process, strong antibody-dependent NK cell activation (ADNKA) developed. These responses were sustained for at least 6 months in most patients, and led to high levels of pro-inflammatory cytokine production. Depletion of spike-specific antibodies confirmed their dominant role in neutralisation, but these antibodies played only a minor role in ADNKA compared to antibodies to other proteins, including ORF3a, Membrane, and Nucleocapsid. In contrast, ADNKA induced following vaccination was focussed solely on spike, was weaker than ADNKA following natural infection, and was not boosted by the second dose. These insights have important implications for understanding disease progression, vaccine efficacy, and vaccine design.

Funder

National Institute for Health Research

Medical Research Council

Wellcome Trust

Ser Cymru

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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