Uncovering the features of Measles-targeting human antibodies elicited by the MMR vaccine
Acciani, M. D.; Zyla, D. S.; Niemeyer, G.; Harkins, S. S.; Parekh, D.; Pawlack, E.; Lacarbonara, D.; Niewiesk, S.; POROTTO, M.; Hastie, K.; Saphire, E. O.
Show abstract
Measles virus (MeV), a highly transmissible paramyxovirus, causes disease that can lead to severe complications and death, particularly in babies and young children. Deployment of the durable, highly effective, live-attenuated measles vaccine has saved an estimated 94 million lives in the past 50 years,1 yet the immunological explanation for this vaccines unique success and its landscape of antibody recognition remains unclear. Here we report the first panel of human monoclonal antibodies (mAbs) specific for the MeV hemagglutinin (H) and fusion (F) surface proteins, derived from the memory B cells of an MMR vaccinee. From over 100 cloned human mAbs, we mapped four major epitope clusters on H and another five major clusters on F, and structurally characterized 17 representative mAbs including one or more examples of each of the nine epitope clusters on the two surface antigens. We find that antibodies against both H and F can lead to potent virus neutralization and reduction of viral loads in vivo, including one mAb against F that reduces viral loads to below the limit of detection for all animals. High-resolution cryo-EM reveals contact sites of the most protective antibodies against both surface antigens. Discovery, characterization, and in vitro and in vivo success of these fully human mAbs now provide new avenues for prophylactic or therapeutic intervention against this re-emerging virus. HighlightsO_LIA large panel of Measles-specific monoclonal antibodies was isolated from a human MMR vaccinee, years after vaccination. C_LIO_LIStructural and biochemical mapping paints a landscape of antibody recognition with nine major competition groups, including four major sites on Hemagglutinin (H) and five on the fusion protein (F). C_LIO_LIAntibodies against both H and F confer in vitro neutralization and in vivo protection, including, in one case, undetectable viral load after antibody treatment. C_LIO_LIThe most protective H-specific mAbs, 4D08 and 1C08, target the receptor-binding site and the F-proximal outside of the H dimer, and likely function by interfering with receptor binding and H-F interactions, respectively. C_LIO_LIThe most protective F-specific mAbs, 3A12 and 4F09, target the sides and apex of the prefusion F trimer, and likely function by locking F into its pre-fusion state C_LI
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Broadly neutralizing SARS-CoV-2 antibodies through epitope-based selection from convalescent patients 97%
- Structural basis of broad protection against influenza virus by a human antibody targeting the neuraminidase active site via a recurring motif in CDR H3 97%
- Structural Convergence and Water-Mediated Substrate Mimicry Enable Broad Neuraminidase Inhibition by Human Antibodies 97%
Similar papers in this journal
- A SARS-CoV-2 neutralizing antibody protects from lung pathology in a COVID-19 hamster model 96%
- Analysis of the Diverse Antigenic Landscape of the Malaria Invasion Protein RH5 Identifies a Potent Vaccine-Induced Human Public Antibody Clonotype 96%
- Molecular basis for shifted receptor recognition by an encephalitic arbovirus 96%
Similar papers in this journal
- Crimean-Congo Hemorrhagic Fever Survivors Elicit Protective Non-Neutralizing Antibodies that Target 11 Overlapping Regions on Viral Glycoprotein GP38 98%
- Affinity Maturation and Light-Chain-Mediated Paratope Diversification Anticipate Viral Evolution 97%
- Transient glycan-shield reduction induces CD4-binding site broadly neutralizing antibodies in SHIV-infected macaques 97%
Similar papers in this journal
- Deep mutational scanning reveals functional constraints and antigenic variability of Lassa virus glycoprotein complex 97%
- Broadly neutralizing anti-S2 antibodies protect against all three human betacoronaviruses that cause severe disease 96%
- Self-reactive B cells traverse a perfect storm of somatic mutagenesis to cause a virus-induced autoimmune disease 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.