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Analysis of Simian Immunodeficiency Virus-specific CD8+ T-cells in Rhesus Macaques by Peptide-MHC-I Tetramer Staining
Published on: December 23, 2016
Macaque antibodies targeting Marburg virus glycoprotein induced by multivalent immunization
Benjamin M Janus1,2, Ruixue Wang2, Thomas E Cleveland2,3
1Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, Maryland, USA.
Abstract:
Marburg virus infection in humans is associated with case fatality rates that can reach up to 90%, but to date, there are no approved vaccines or monoclonal antibody (mAb) countermeasures. Here, we immunized Rhesus macaques with multivalent combinations of filovirus glycoprotein (GP) antigens belonging to Marburg, Sudan, and Ebola viruses to generate monospecific and cross-reactive antibody responses against them. From the animal that developed the highest titers of Marburg virus GP-specific neutralizing antibodies, we sorted single memory B cells using a heterologous Ravn virus GP probe and cloned and characterized a panel of 34 mAbs belonging to 28 unique lineages. Antibody specificities were assessed by overlapping pepscan and binding competition analyses, revealing that roughly a third of the lineages mapped to the conserved receptor binding region, including potent neutralizing lineages that were confirmed by negative stain electron microscopy to target this region. Additional lineages targeted a protective region on GP2, while others were found to possess cross-filovirus reactivity. Our study advances the understanding of orthomarburgvirus glycoprotein antigenicity and furthers efforts to develop candidate antibody countermeasures against these lethal viruses.
Importance:
Marburg viruses were the first filoviruses characterized to emerge in humans in 1967 and cause severe hemorrhagic fever with average case fatality rates of ~50%. Although mAb countermeasures have been approved for clinical use against the related Ebola viruses, there are currently no approved countermeasures against Marburg viruses. We successfully isolated a panel of orthomarburgvirus GP-specific mAbs from a macaque immunized with a multivalent combination of filovirus antigens. Our analyses revealed that roughly half of the antibodies in the panel mapped to regions on the glycoprotein shown to protect from infection, including the host cell receptor binding domain and a protective region on the membrane-anchoring subunit. Other antibodies in the panel exhibited broad filovirus GP recognition. Our study describes the discovery of a diverse panel of cross-reactive macaque antibodies targeting orthomarburgvirus and other filovirus GPs and provides candidate immunotherapeutics for further study and development.
Insights
Researchers developed new monoclonal antibodies (mAbs) against Marburg virus, a deadly pathogen with no current treatments. These antibodies target critical regions of the virus, offering potential new countermeasures for Marburg virus disease.
Area of Science:
- Virology and Immunology
- Infectious Diseases
- Vaccinology
Background:
- Marburg virus causes severe hemorrhagic fever with high fatality rates (up to 90%).
- No approved vaccines or monoclonal antibody (mAb) countermeasures currently exist for Marburg virus infection.
- Existing mAb countermeasures are approved for related Ebola viruses, highlighting the need for Marburg-specific treatments.
Purpose of the Study:
- To generate and characterize a panel of monoclonal antibodies (mAbs) targeting Marburg virus glycoprotein (GP).
- To identify neutralizing and cross-reactive antibodies against Marburg virus and other filoviruses.
- To advance the development of potential antibody-based countermeasures against lethal filoviruses.
Main Methods:
- Rhesus macaques were immunized with multivalent filovirus glycoprotein antigens (Marburg, Sudan, Ebola).
- Single memory B cells were sorted and cloned to generate 34 mAbs from a high-titer animal.
- Antibody specificity was assessed using overlapping pepscan, binding competition, and negative stain electron microscopy.
Main Results:
- A diverse panel of 34 mAbs targeting orthomarburgvirus GP was successfully isolated.
- Approximately one-third of the mAbs mapped to the conserved receptor binding region, including potent neutralizers.
- Other mAbs targeted a protective region on GP2 or exhibited broad cross-reactivity against multiple filoviruses.
Conclusions:
- The study advances understanding of orthomarburgvirus glycoprotein antigenicity.
- A diverse panel of cross-reactive macaque antibodies targeting filovirus GPs was discovered.
- These antibodies represent promising candidates for further development as immunotherapeutics against Marburg virus.

