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.

Journal of Virology
|July 12, 2019
PubMed

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.

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