4.5 Article

Glycan Cluster Shielding and Antibody Epitopes on Lassa Virus Envelop Protein

期刊

JOURNAL OF PHYSICAL CHEMISTRY B
卷 125, 期 8, 页码 2089-2097

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AMER CHEMICAL SOC
DOI: 10.1021/acs.jpcb.0c11516

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资金

  1. MEXT/JSPS KAKENHI Grant [19K12229]
  2. Grants-in-Aid for Scientific Research [19K12229] Funding Source: KAKEN

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The study shows that the glycosylation of viral proteins affects the antibody response, but its complexity and flexibility pose challenges to research. Molecular dynamics simulations demonstrate that glycosylation does not fully shield the surface of the complex and only has a slight impact on protein dynamics. The results emphasize the rich structural environment of glycans, providing a molecular basis for the development of vaccines and neutralizing antibodies.
An understanding of how an antiviral monoclonal antibody recognizes its target is vital for the development of neutralizing antibodies and vaccines. The extensive glycosylation of viral proteins almost certainly affects the antibody response, but the investigation of such effects is hampered by the huge range of structures and interactions of surface glycans through their inherent complexity and flexibility. Here, we built an atomistic model of a fully glycosylated envelope protein complex of the Lassa virus and performed molecular dynamics simulations to characterize the impact of surface glycans on the antibody response. The simulations attested to the variety of conformations and interactions of surface glycans. The results show that glycosylation nonuniformly shields the surface of the complex and only marginally affects protein dynamics. The glycans gather in distinct clusters through interaction with protein residues, and only a few regions are left accessible by an antibody. We successfully recovered known protein epitopes by integrating the simulation results with existing sequence- and structure-based epitope prediction methods. The results emphasize the rich structural environment of glycans and demonstrate that shielding is not merely envelopment by a uniform blanket of sugars. This work provides a molecular basis for integrating otherwise elusive structural properties of glycans into vaccine and neutralizing antibody developments.

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