Antibody-dependent infection of human macrophages by severe acute respiratory syndrome coronavirus
Антителозависимое инфицирование макрофагов человека коронавирусом тяжелого острого респираторного синдрома
2014-05-06
SCID: 54.1/77t823d5
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FcγRII signalingSARS-CoVSpike-pseudotyped lentiviral particlesantibody-dependent enhancementhuman macrophages
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Abstract (AI)
BACKGROUND: Public health risks associated to infection by human coronaviruses remain considerable and vaccination is a key option for preventing the resurgence of severe acute respiratory syndrome coronavirus (SARS-CoV). We have previously reported that antibodies elicited by a SARS-CoV vaccine candidate based on recombinant, full-length SARS-CoV Spike-protein trimers, trigger infection of immune cell lines. These observations prompted us to investigate the molecular mechanisms and responses to antibody-mediated infection in human macrophages. METHODS: We have used primary human immune cells to evaluate their susceptibility to infection by SARS-CoV in the presence of anti-Spike antibodies. Fluorescence microscopy and real-time quantitative reverse transcriptase polymerase chain reaction (RT-PCR) were utilized to assess occurrence and consequences of infection. To gain insight into the underlying molecular mechanism, we performed mutational analysis with a series of truncated and chimeric constructs of fragment crystallizable γ receptors (FcγR), which bind antibody-coated pathogens. RESULTS: We show here that anti-Spike immune serum increased infection of human monocyte-derived macrophages by replication-competent SARS-CoV as well as Spike-pseudotyped lentiviral particles (SARS-CoVpp). Macrophages infected with SARS-CoV, however, did not support productive replication of the virus. Purified anti-viral IgGs, but not other soluble factor(s) from heat-inactivated mouse immune serum, were sufficient to enhance infection. Antibody-mediated infection was dependent on signaling-competent members of the human FcγRII family, which were shown to confer susceptibility to otherwise naïve ST486 cells, as binding of immune complexes to cell surface FcγRII was necessary but not sufficient to trigger antibody-dependent enhancement (ADE) of infection. Furthermore, only FcγRII with intact cytoplasmic signaling domains were competent to sustain ADE of SARS-CoVpp infection, thus providing additional information on the role of downstream signaling by FcγRII. CONCLUSIONS: These results demonstrate that human macrophages can be infected by SARS-CoV as a result of IgG-mediated ADE and indicate that this infection route requires signaling pathways activated downstream of binding to FcγRII receptors.
Key Findings
1
Anti-Spike immune serum enhanced infection of primary human monocyte-derived macrophages by replication-competent SARS-CoV and Spike-pseudotyped lentiviral particles.
2
Antibody-dependent enhancement required signaling-competent human FcγRII receptors; receptor binding alone was insufficient to trigger enhancement.
3
FcγRII cytoplasmic signaling domains were necessary for antibody-enhanced infection of otherwise resistant ST486 cells by SARS-CoV pseudoparticles.
4
Purified antiviral IgG antibodies, rather than other soluble factors in heat-inactivated immune serum, were sufficient to enhance macrophage infection.
5
SARS-CoV-infected macrophages did not support productive viral replication, indicating infection without completion of a productive replication cycle.
Research Object
human monocyte-derived macrophages infected with SARS-CoV or Spike-pseudotyped lentiviral particles in the presence of anti-Spike antibodies
Research Subject
FcγRII-dependent antibody-mediated enhancement of infection and its requirement for intact cytoplasmic signaling domains, without productive viral replication
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2014-05-06
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