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Published on: January 9, 2019
Engineering, Structure and Immunogenicity of the Human Metapneumovirus F Protein in the Postfusion Conformation
Vicente Más1, Laura Rodriguez1, Eduardo Olmedillas1
1Unidad de Biología Viral, Centro Nacional de Microbiología and CIBER de Enfermedades Respiratorias, Instituto de Salud Carlos III, Majadahonda, Madrid, Spain.
Abstract:
Human metapneumovirus (hMPV) is a paramyxovirus that is a common cause of bronchiolitis and pneumonia in children less than five years of age. The hMPV fusion (F) glycoprotein is the primary target of neutralizing antibodies and is thus a critical vaccine antigen. To facilitate structure-based vaccine design, we stabilized the ectodomain of the hMPV F protein in the postfusion conformation and determined its structure to a resolution of 3.3 Å by X-ray crystallography. The structure resembles an elongated cone and is very similar to the postfusion F protein from the related human respiratory syncytial virus (hRSV). In contrast, significant differences were apparent with the postfusion F proteins from other paramyxoviruses, such as human parainfluenza type 3 (hPIV3) and Newcastle disease virus (NDV). The high similarity of hMPV and hRSV postfusion F in two antigenic sites targeted by neutralizing antibodies prompted us to test for antibody cross-reactivity. The widely used monoclonal antibody 101F, which binds to antigenic site IV of hRSV F, was found to cross-react with hMPV postfusion F and neutralize both hRSV and hMPV. Despite the cross-reactivity of 101F and the reported cross-reactivity of two other antibodies, 54G10 and MPE8, we found no detectable cross-reactivity in the polyclonal antibody responses raised in mice against the postfusion forms of either hMPV or hRSV F. The postfusion-stabilized hMPV F protein did, however, elicit high titers of hMPV-neutralizing activity, suggesting that it could serve as an effective subunit vaccine. Structural insights from these studies should be useful for designing novel immunogens able to induce wider cross-reactive antibody responses.
Insights
Researchers determined the structure of the human metapneumovirus (hMPV) fusion (F) protein. This structure is similar to hRSV F and can help develop vaccines targeting both viruses.
Area of Science:
- Virology
- Structural Biology
- Immunology
Background:
- Human metapneumovirus (hMPV) causes severe respiratory illness in young children.
- The hMPV fusion (F) glycoprotein is a key target for neutralizing antibodies and vaccine development.
- Understanding the F protein's structure is crucial for designing effective vaccines.
Purpose of the Study:
- To determine the structure of the hMPV F protein in its postfusion conformation.
- To investigate antibody cross-reactivity between hMPV and related viruses, particularly hRSV.
- To evaluate the potential of the postfusion hMPV F protein as a subunit vaccine candidate.
Main Methods:
- Stabilization of the hMPV F protein ectodomain in the postfusion conformation.
- X-ray crystallography to determine the protein's 3D structure at 3.3 Å resolution.
- Testing of monoclonal and polyclonal antibodies for cross-reactivity and neutralization activity.
Main Results:
- The determined structure of the hMPV F protein resembles an elongated cone, similar to hRSV F.
- Monoclonal antibody 101F showed cross-reactivity, neutralizing both hMPV and hRSV.
- Polyclonal antibody responses did not show detectable cross-reactivity between hMPV and hRSV F proteins.
- The postfusion hMPV F protein successfully induced high titers of hMPV-neutralizing antibodies.
Conclusions:
- The structural similarity between hMPV and hRSV F proteins offers opportunities for developing cross-protective vaccines.
- The postfusion hMPV F protein is a promising candidate for a subunit vaccine.
- Further research into novel immunogens can elicit broader cross-reactive antibody responses.
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