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Peptide Scanning-assisted Identification of a Monoclonal Antibody-recognized Linear B-cell Epitope
Published on: March 24, 2017
Synthetic antibodies and peptides recognizing progressive multifocal leukoencephalopathy-specific point mutations in
Gang Chen1, Leonid Gorelik, Kenneth J Simon
1a Banting and Best Department of Medical Research; Terrence Donnelly Centre for Cellular and Biomolecular Research; University of Toronto ; Toronto , Ontario , Canada.
Abstract:
Polyomavirus JC (JCV) is the causative agent of progressive multifocal leukoencephalopathy (PML), a rare and frequently fatal brain disease that afflicts a small fraction of the immune-compromised population, including those affected by AIDS and transplantation recipients on immunosuppressive drug therapy. Currently there is no specific therapy for PML. The major capsid viral protein 1 (VP1) involved in binding to sialic acid cell receptors is believed to be a key player in pathogenesis. PML-specific mutations in JCV VP1 sequences present at the binding pocket of sialic acid cell receptors, such as L55F and S269F, abolish sialic acid recognition and might favor PML onset. Early diagnosis of these PML-specific mutations may help identify patients at high risk of PML, thus reducing the risks associated with immunosuppressive therapy. As a first step in the development of such early diagnostic tools, we report identification and characterization of affinity reagents that specifically recognize PML-specific mutations in VP1 variants using phage display technology. We first identified 2 peptides targeting wild type VP1 with moderate specificity. Fine-tuning via selection of biased libraries designed based on 2 parental peptides yielded peptides with different, yet still moderate, bindinspecificities. In contrast, we had great success in identifying synthetic antibodies that recognize one of the PML-specific mutations (L55F) with high specificity from the phage-displayed libraries. These peptides and synthetic antibodies represent potential candidates for developing tailored immune-based assays for PML risk stratification in addition to complementing affinity reagents currently available for the study of PML and JCV.
Insights
Researchers developed new diagnostic tools to detect specific mutations in the JC virus (JCV) that cause progressive multifocal leukoencephalopathy (PML). These reagents can identify patients at high risk for PML, aiding in early diagnosis and management.
Area of Science:
- Neurovirology
- Molecular Biology
- Immunology
Background:
- Progressive multifocal leukoencephalopathy (PML) is a fatal brain disease caused by the JC virus (JCV) in immunocompromised individuals.
- No specific therapy currently exists for PML.
- Mutations in the JCV major capsid viral protein 1 (VP1), particularly L55F and S269F, are associated with PML onset by altering sialic acid receptor binding.
Purpose of the Study:
- To develop early diagnostic tools for identifying PML-specific mutations in JCV VP1.
- To create affinity reagents capable of specifically recognizing PML-associated VP1 variants.
Main Methods:
- Phage display technology was employed to identify and characterize affinity reagents.
- Peptide libraries were screened against wild-type and mutated JCV VP1.
- Biased libraries were used for fine-tuning peptide binders, and synthetic antibodies were generated.
Main Results:
- Initial screening identified peptides with moderate specificity for wild-type VP1.
- Fine-tuning of peptide libraries yielded binders with varied, but still moderate, specificities.
- Highly specific synthetic antibodies recognizing the PML-specific L55F mutation were successfully identified.
Conclusions:
- Developed synthetic antibodies offer high specificity for a key PML-associated JCV mutation (L55F).
- These reagents show potential for developing immune-based assays for PML risk stratification.
- The findings complement existing tools for studying PML and JCV pathogenesis.
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