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Generation of Escape Variants of Neutralizing Influenza Virus Monoclonal Antibodies
Published on: August 29, 2017
Human-rat chimeric anti-occludin monoclonal antibodies inhibit hepatitis C virus infection
Yoshimi Shimizu1, Kohei Yoneda2, Yoshitaka Shirasago3
1Department of Biochemistry and Cell Biology, National Institute of Infectious Diseases, Tokyo, 162-8640, Japan; Department of Pharmaceutical Sciences, Teikyo Heisei University, Tokyo, 164-8530, Japan.
Abstract:
Occludin (OCLN), an integral tetra-spanning plasma membrane protein, is a host entry factor essential for hepatitis C virus (HCV) infection, making it a promising host-targeting molecule for HCV therapeutic intervention. We previously generated rat anti-OCLN monoclonal antibodies (mAbs) that strongly prevented HCV infection in vitro and in vivo. In the present study, we attempted to improve the druggability of the extracellular loop domain-recognizing anti-OCLN mAbs, namely clones 1-3 and 37-5, using genetic engineering. To avoid adverse reactions induced by antibody-dependent cellular cytotoxicity and enhance the antibody stability, we developed human-rat chimeric immunoglobulin G4 S228P mutant (IgG4m) forms of clones 1-3 and 37-5 (named Xi 1-3 and Xi 37-5, respectively) by grafting the variable regions of the light and heavy chains of each rat anti-OCLN mAb into those of human IgG4m. The constructed Xi 1-3 and Xi 37-5 chimeras demonstrated levels of affinity and specificity similar to each parental rat anti-OCLN mAb, and the Fcγ receptor Ⅲa was not activated by the antigen-bound chimeric mAbs, as expected. Both chimeric mAbs inhibited in vitro infection with various HCV genotypes. These results indicate that the IgG4m forms of human-rat chimeric anti-OCLN mAbs may be potential candidate molecules of host-targeting antivirals with pan-genotypic anti-HCV activity.
Insights
Researchers engineered human-rat chimeric antibodies targeting occludin (OCLN), a key factor in Hepatitis C Virus (HCV) entry. These improved antibodies show potential as pan-genotypic antivirals against HCV infection.
Area of Science:
- Immunology
- Virology
- Biotechnology
Background:
- Occludin (OCLN) is a critical host entry factor for Hepatitis C Virus (HCV).
- Previous work generated rat monoclonal antibodies (mAbs) effective against HCV infection.
- Improving the therapeutic potential of anti-OCLN antibodies is a key goal.
Purpose of the Study:
- To enhance the druggability of rat anti-OCLN mAbs (clones 1-3 and 37-5).
- To develop human-rat chimeric IgG4 S228P mutant (IgG4m) forms of these antibodies.
- To assess the efficacy and safety profile of the engineered antibodies.
Main Methods:
- Genetic engineering to create human-rat chimeric mAbs (Xi 1-3 and Xi 37-5).
- Grafting variable regions of rat anti-OCLN mAbs onto human IgG4m framework.
- Assessing antibody affinity, specificity, Fcγ receptor Ⅲa activation, and in vitro HCV inhibition.
Main Results:
- Engineered chimeric mAbs (Xi 1-3 and Xi 37-5) retained high affinity and specificity.
- Fcγ receptor Ⅲa activation was not observed, reducing potential adverse effects.
- Both chimeric mAbs demonstrated potent inhibition of various HCV genotypes in vitro.
Conclusions:
- Human-rat chimeric anti-OCLN IgG4m antibodies (Xi 1-3 and Xi 37-5) are promising candidates.
- These engineered antibodies offer potential as host-targeting antivirals.
- The developed antibodies exhibit pan-genotypic anti-HCV activity.
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