4.8 Article

Crystal Structure of a Soluble Cleaved HIV-1 Envelope Trimer

Journal

SCIENCE
Volume 342, Issue 6165, Pages 1477-1483

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1245625

Keywords

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Funding

  1. NIH [P01 AI82362, R01 AI084817, R37 AI36082, R01 AI33292]
  2. International AIDS Vaccine Initiative Neutralizing Antibody Consortium and Center
  3. CHAVI-ID [UM1 AI100663]
  4. Netherlands Organization for Scientific Research
  5. European Research Council
  6. Canadian Institutes of Health Research fellowship
  7. Ragon Institute
  8. U.S. NIH National Institute of General Medical Sciences (NIGMS) Biomedical Technology Research Center program [GM103310]
  9. NIH NIGMS via a Protein Structure Initiative [U54 GM094586]
  10. U.S. Department of Energy (DOE), Basic Energy Sciences, Office of Science [DE-AC02-06CH11357]
  11. National Cancer Institute (NCI) [Y1-CO-1020]
  12. NIGMS [Y1-GM-1104]
  13. DOE Office of Biological and Environmental Research
  14. NIH's National Center for Research Resources, Biomedical Technology Program [P41RR001209]
  15. NIGMS
  16. Natural Sciences and Engineering Research Council of Canada
  17. National Research Council Canada
  18. Canadian Institutes of Health Research
  19. Province of Saskatchewan
  20. Western Economic Diversification Canada
  21. University of Saskatchewan

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HIV-1 entry into CD4(+) target cells is mediated by cleaved envelope glycoprotein (Env) trimers that have been challenging to characterize structurally. Here, we describe the crystal structure at 4.7 angstroms of a soluble, cleaved Env trimer that is stabilized and antigenically near-native (termed the BG505 SOSIP. 664 gp140 trimer) in complex with a potent broadly neutralizing antibody, PGT122. The structure shows a prefusion state of gp41, the interaction between the component gp120 and gp41 subunits, and how a close association between the gp120 V1/V2/V3 loops stabilizes the trimer apex around the threefold axis. The complete epitope of PGT122 on the trimer involves gp120 V1, V3, and several surrounding glycans. This trimer structure advances our understanding of how Env functions and is presented to the immune system, and provides a blueprint for structure-based vaccine design.

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