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Peptide Scanning-assisted Identification of a Monoclonal Antibody-recognized Linear B-cell Epitope
Published on: March 24, 2017
Structural characterization of human neutralizing antibodies against JC and BK polyomaviruses
Christina Harprecht1, Luisa J Ströh1, Bethany A O'Hara2
1Interfaculty Institute of Biochemistry, University of Tübingen, 72076 Tübingen, Germany.
Abstract:
The human JC polyomavirus (JCPyV) causes the fatal demyelinating disease progressive multifocal leukoencephalopathy (PML) in immunocompromised individuals. JCPyV frequently undergoes mutations in PML patients, and these variants are thought to establish "antibody recognition holes" that enable the virus to circumvent the antibody response of infected individuals. Many of these PML-associated mutations cluster in the glycan receptor-binding site of the virus. Using X-ray crystallography, we investigated the binding modes of JCPyV VP1-specific human monoclonal antibodies (mAbs) that were isolated from healthy donors and individuals who recovered from PML, and that can recognize a panel of PML-associated JCPyV variants. Our structural analyses show that three out of four of these mAbs bind epitopes that overlap with the glycan-receptor binding site at the surface of the virus particle. The observed interactions explain how PML-associated mutations strategically interfere with antibody recognition, resulting in immune evasion. In contrast, mAb 29B1 engages a region of the capsid that is distant from the glycan site and does not feature mutations associated with PML. The binding site is conserved in the closely related BK polyomavirus (BKPyV), and we show that mAb 29B1 binds both viruses with high affinity and blocks infection. Our findings form an excellent platform for the development of therapeutic Ab approaches and potential vaccination strategies that could protect at-risk patients from infections with both JCPyV and BKPyV. Moreover, small molecules that target the mAb 29B1 binding site could be potentially effective against both viruses.
Insights
JC polyomavirus (JCPyV) mutations help it evade antibodies, causing progressive multifocal leukoencephalopathy (PML). We found how antibodies bind JCPyV, revealing strategies for new therapies against JCPyV and BK polyomavirus (BKPyV).
Area of Science:
- Virology
- Structural Biology
- Immunology
Background:
- JC polyomavirus (JCPyV) causes progressive multifocal leukoencephalopathy (PML) in immunocompromised individuals.
- JCPyV mutations, particularly in the glycan receptor-binding site, facilitate immune evasion by creating "antibody recognition holes".
Purpose of the Study:
- To investigate the binding modes of human monoclonal antibodies (mAbs) against JCPyV VP1.
- To understand how PML-associated mutations affect antibody recognition and viral immune evasion.
- To explore potential therapeutic strategies targeting conserved viral epitopes.
Main Methods:
- X-ray crystallography was used to determine the structures of JCPyV VP1-specific mAbs bound to the virus.
- Structural analyses focused on antibody-epitope interactions, especially concerning the glycan receptor-binding site.
- Binding affinity and infection blocking assays were performed for cross-reactive antibodies.
Main Results:
- Three of four studied mAbs bind epitopes overlapping the glycan receptor-binding site, explaining immune evasion by PML-associated mutations.
- One mAb (29B1) binds a conserved region distant from the glycan site, cross-reacting with BK polyomavirus (BKPyV).
- mAb 29B1 binds both JCPyV and BKPyV with high affinity and blocks infection.
Conclusions:
- Structural insights elucidate JCPyV immune evasion mechanisms driven by mutations in the glycan-binding site.
- mAb 29B1 offers a potential therapeutic target effective against both JCPyV and BKPyV.
- Findings support the development of antibody-based therapies and vaccines for JCPyV and BKPyV infections.
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