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Targeting host-derived glycans on enveloped viruses for antibody-based vaccine design

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CURRENT OPINION IN VIROLOGY
卷 11, 期 -, 页码 63-69

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ELSEVIER SCI LTD
DOI: 10.1016/j.coviro.2015.02.002

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资金

  1. MRC Career Development Fellowship [MR/K024426/1]
  2. Center for HIV/AIDS Vaccine Immunology and Immunogen Discovery Grant [UM1AI100663]
  3. International AIDS Vaccine Initiative through the Neutralizing Antibody Consortium
  4. International AIDS Vaccine Initiative through Bill and Melinda Gates Center for Vaccine Discovery
  5. Medical Research Council [MR/K024426/1] Funding Source: researchfish
  6. MRC [MR/K024426/1] Funding Source: UKRI

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The surface of enveloped viruses can be extensively glycosylated. Unlike the glycans coating pathogens such as bacteria and fungi, glycans on viruses are added and processed by the host-cell during biosynthesis. Glycoproteins are typically subjected to a-mannosidase processing and Golgi-mediated glycosyltransferase extension to form complex-type glycans. In envelope viruses, exceptions to this default pathway are common and lead to the presence of oligomannose-type glycan structures on the virion surface. In one extreme example, HIV-1 utilises a high density of glycans to limit host antibody recognition of protein. However, the high density limits glycan processing and the resulting oligomannose structures can be recognised by broadly neutralising antibodies isolated from HIV-1 infected patients. Here we discuss how divergence from host-cell glycosylation can be targeted for vaccine design.

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