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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Dissection of the NKG2C NK cell response against Puumala Orthohantavirus
Hannes Vietzen1, Svenja Hartenberger1, Stephan W Aberle1
1Center for Virology, Medical University of Vienna, Vienna, Austria.
Background:
Infections with the Puumala orthohantavirus (PUUV) in humans may cause hemorrhagic fever with renal syndrome (HFRS), known as nephropathia epidemica (NE), which is associated with acute renal failure in severe cases. In response to PUUV-infections, a subset of potent antiviral NKG2C+ NK cells expand, whose role in virus defence and pathogenesis of NE is unclear. NKG2C+ NK cell proliferation is mediated by binding of NKG2C/CD94 to HLA-E on infected cells. The proliferation and activation of NKG2C+ NK cells via the NKG2C/HLA-E axis is affected by different NKG2C (NKG2Cwt/del) and HLA-E (HLA-E*0101/0103) alleles, which naturally occur in the human host. Homozygous (NKG2Cdel/del) and heterozygous (NKG2Cwt/del) deletions of the NKG2C receptor results in an impaired NKG2C/CD94 mediated proliferation and activation of NKG2C+ cells. We therefore analyzed the PUUV-mediated NKG2C+ NK cell responses and the impact of different NKG2C and HLA-E alleles in NE patients.
Methodology/Principal Findings:
NKG2C+ NK cell expansion and effector functions in PUUV-infected cells were investigated using flow cytometry and it was shown that PUUV-infected endothelial cells led to a NKG2C/CD94 mediated NKG2C+ NK cell activation and expansion, dependent on the HLA-G-mediated upregulation of HLA-E. Furthermore, the NKG2Cdel and HLA-E*0101/0103 alleles were determined in 130 NE patients and 130 matched controls, and it was shown that in NE patients the NKG2Cwt/del allele was significantly overrepresented, compared to the NKG2Cwt/wt variant (p = 0.01). In addition, in vitro analysis revealed that NKG2Cwt/del NK cells exhibited on overall a lower proliferation (p = 0.002) and lower IFNγ expression (p = 0.004) than NKG2Cwt/wt NK cells.
Conclusions/Significance:
Our results corroborate the substantial impact of the NKG2C/HLA-E axis on PUUV-specific NK cell responses. A weak NKG2C+ NK cell response, as reflected by NKG2Cwt/del variant, may be associated with a higher risk for a severe hantavirus infections.
Insights
Genetic variations in NKG2C receptors influence the immune response to Puumala orthohantavirus (PUUV) infections, impacting nephropathia epidemica (NE) severity. Individuals with the NKG2Cwt/del variant show reduced NK cell activity, potentially increasing NE risk.
Area of Science:
- Immunology
- Virology
- Genetics
Background:
- Puumala orthohantavirus (PUUV) causes nephropathia epidemica (NE), a severe hemorrhagic fever with renal syndrome.
- NKG2C+ NK cells play a role in antiviral defense, but their function in NE pathogenesis is unclear.
- The NKG2C/CD94-HLA-E axis regulates NKG2C+ NK cell responses, influenced by host genetic variations.
Purpose of the Study:
- To investigate PUUV-mediated NKG2C+ NK cell responses.
- To analyze the impact of NKG2C and HLA-E alleles on NE patients.
- To understand the role of genetic variations in NE pathogenesis.
Main Methods:
- Flow cytometry was used to assess NKG2C+ NK cell expansion and effector functions in PUUV-infected cells.
- HLA-G-mediated upregulation of HLA-E was investigated.
- NKG2C and HLA-E alleles were genotyped in NE patients and controls.
Main Results:
- PUUV-infected endothelial cells induced NKG2C/CD94-mediated NKG2C+ NK cell activation and expansion.
- The NKG2Cwt/del allele was significantly overrepresented in NE patients compared to controls (p=0.01).
- NKG2Cwt/del NK cells exhibited lower proliferation and IFNγ expression in vitro.
Conclusions:
- The NKG2C/HLA-E axis significantly impacts PUUV-specific NK cell responses.
- A weakened NKG2C+ NK cell response, associated with the NKG2Cwt/del variant, may increase the risk of severe hantavirus infections.
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