Related Experiment Video
Updated: Jan 22, 2026

Measuring Influenza Neutralizing Antibody Responses to AH3N2 Viruses in Human Sera by Microneutralization Assays Using MDCK-SIAT1 Cells
Published on: November 22, 2017
A Potent Neutralizing Site III-Specific Human Antibody Neutralizes Human Metapneumovirus In Vivo
Yael Bar-Peled1, Darren Diaz1,2, Alma Pena-Briseno1
1Center for Vaccines and Immunology, College of Veterinary Medicine, University of Georgia, Athens, Georgia, USA.
Abstract:
Human metapneumovirus (hMPV) is a leading cause of viral lower respiratory tract infection in children. The sole target of neutralizing antibodies targeting hMPV is the fusion (F) protein, a class I viral fusion protein mediating virus-cell membrane fusion. There have been several monoclonal antibodies (mAbs) isolated that neutralize hMPV; however, determining the antigenic sites on the hMPV F protein mediating such neutralizing antibody generation would assist efforts for effective vaccine design. In this report, the isolation and characterization of four new human mAbs, termed MPV196, MPV201, MPV314, and MPV364, are described. Among the four mAbs, MPV364 was found to be the most potent neutralizing mAb in vitro Binding studies with monomeric and trimeric hMPV F revealed that MPV364 had the weakest binding affinity for monomeric hMPV F compared to the other three mAbs, yet binding experiments with trimeric hMPV F showed limited differences in binding affinity, suggesting that MPV364 targets an antigenic site incorporating two protomers. Epitope binning studies showed that MPV364 targets antigenic site III on the hMPV F protein and competes for binding with previously discovered mAbs MPE8 and 25P13, both of which cross-react with the respiratory syncytial virus (RSV) F protein. However, MPV364 does not cross-react with the RSV F protein, and the competition profile suggests that it binds to the hMPV F protein in a binding pose slightly shifted from mAbs MPE8 and 25P13. MPV364 was further assessed in vivo and was shown to substantially reduce viral replication in the lungs of BALB/c mice. Overall, these data reveal a new binding region near antigenic site III of the hMPV F protein that elicits potent neutralizing hMPV F-specific mAbs and provide a new panel of neutralizing mAbs that are candidates for therapeutic development.IMPORTANCE Recent progress in understanding the human immune response to respiratory syncytial virus has paved the way for new vaccine antigens and therapeutics to prevent and treat disease. Progress toward understanding the immune response to human metapneumovirus (hMPV) has lagged behind, although hMPV is a leading cause of lower respiratory tract infection in children. In this report, we advanced the field by isolating a panel of human mAbs to the hMPV F protein. One potent neutralizing mAb, MPV364, targets antigenic site III on the hMPV F protein and incorporates two protomers into its epitope yet is unique from previously discovered site III mAbs, as it does not cross-react with the RSV F protein. We further examined MPV364 in vivo and found that it limits viral replication in BALB/c mice. Altogether, these data provide new mAb candidates for therapeutic development and provide insights into hMPV vaccine development.
Insights
Researchers identified new human monoclonal antibodies (mAbs) targeting the human metapneumovirus (hMPV) fusion (F) protein. One potent mAb, MPV364, neutralizes hMPV by targeting a unique site on the F protein and reduces viral replication in mice.
Area of Science:
- Virology
- Immunology
- Vaccine Development
Background:
- Human metapneumovirus (hMPV) causes significant lower respiratory tract infections in children.
- The hMPV fusion (F) protein is the primary target for neutralizing antibodies.
- Understanding antigenic sites on the hMPV F protein is crucial for effective vaccine design.
Purpose of the Study:
- To isolate and characterize novel human monoclonal antibodies (mAbs) against the hMPV F protein.
- To identify the specific antigenic sites targeted by these mAbs.
- To evaluate the therapeutic potential of these mAbs.
Main Methods:
- Isolation and characterization of four new human mAbs (MPV196, MPV201, MPV314, MPV364).
- In vitro neutralization assays and binding affinity studies (monomeric and trimeric F protein).
- Epitope binning studies and in vivo assessment in BALB/c mice.
Main Results:
- MPV364 demonstrated potent in vitro neutralization of hMPV.
- MPV364 targets a unique antigenic site (near site III) on the trimeric hMPV F protein, involving two protomers.
- MPV364 significantly reduced hMPV replication in the lungs of mice.
- MPV364 does not cross-react with the respiratory syncytial virus (RSV) F protein.
Conclusions:
- A novel binding region near antigenic site III on the hMPV F protein elicits potent neutralizing mAbs.
- MPV364 represents a promising candidate for therapeutic development against hMPV infections.
- These findings offer insights for hMPV vaccine development and therapeutic strategies.
Related Concept Videos
Acids, Bases and Neutralization Reactions
Acids, Bases and Neutralization Reactions
Bending of Curved Members - Neutral Surface
Consider the curved member described in the previous lesson. According to Hooke's law, which relates stress to strain within the...
Unsymmetric Bending - Angle of Neutral Axis
When a bending moment is applied at an angle θ concerning the vertical axis of a symmetrical member, it can be resolved into components along the member's principal...
Biodiversity and Human Values
Antibody Structure
Antibodies, also known as immunoglobulins (Ig), are essential players of the adaptive immune system. These antigen-binding proteins are produced by B cells and make up 20 percent of the total blood plasma by weight. In mammals, antibodies fall into five different classes, which each elicits a different biological response upon antigen binding.
The Y-Shaped Structure of Antibodies Consists of Four Polypeptide Chains
Antibodies consist of four polypeptide chains: two identical heavy...

