4.8 Article

Rapid and Focused Maturation of a VRC01-Class HIV Broadly Neutralizing Antibody Lineage Involves Both Binding and Accommodation of the N276-Glycan

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IMMUNITY
卷 51, 期 1, 页码 141-+

出版社

CELL PRESS
DOI: 10.1016/j.immuni.2019.06.004

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资金

  1. Bill & Melinda Gates Foundation
  2. Ministry of Foreign Affairs of Denmark
  3. Irish Aid
  4. Ministry of Finance of Japan
  5. World Bank
  6. Ministry of Foreign Affairs of the Netherlands
  7. Norwegian Agency for Development Cooperation (NORAD)
  8. United Kingdom Department for International Development (DFID)
  9. United States Agency for International Development (USAID)
  10. USAID
  11. National Institute of Health (NIH) Center for HIV/AIDS Vaccine Immunology and Immunogen Discovery Grant [UM1AI100663]
  12. International AIDS Vaccine Initiative Neutralizing Antibody Consortium through the Collaboration for AIDS Vaccine Discovery grants [OPP1084519, OPP1115782]
  13. National Institute of Allergy and Infectious Diseases (NIAID) [R00AI120851, UM1AI068618]
  14. South African Research Chairs Initiative of the Department of Science and Technology
  15. National Research Foundation of South Africa [98341]

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The VH1-2 restricted VRC01-class of antibodies targeting the HIV envelope CD4 binding site are a major focus of HIV vaccine strategies. However, a detailed analysis of VRC01-class antibody development has been limited by the rare nature of these responses during natural infection and the lack of longitudinal sampling of such responses. To inform vaccine strategies, we mapped the development of a VRC01-class antibody lineage (PCIN63) in the subtype C infected IAVI Protocol C neutralizer PC063. PCIN63 monoclonal antibodies had the hallmark VRC01-class features and demonstrated neutralization breadth similar to the prototype VRC01 antibody, but were 2- to 3-fold less mutated. Maturation occurred rapidly within similar to 24 months of emergence of the lineage and somatic hypermutations accumulated at key contact residues. This longitudinal study of broadly neutralizing VRC01-class antibody lineage reveals early binding to the N276-glycan during affinity maturation, which may have implications for vaccine design.

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