Structure and immune recognition of trimeric pre-fusion HIV-1 Env

被引:0
作者
Marie Pancera
Tongqing Zhou
Aliaksandr Druz
Ivelin S. Georgiev
Cinque Soto
Jason Gorman
Jinghe Huang
Priyamvada Acharya
Gwo-Yu Chuang
Gilad Ofek
Guillaume B. E. Stewart-Jones
Jonathan Stuckey
Robert T. Bailer
M. Gordon Joyce
Mark K. Louder
Nancy Tumba
Yongping Yang
Baoshan Zhang
Myron S. Cohen
Barton F. Haynes
John R. Mascola
Lynn Morris
James B. Munro
Scott C. Blanchard
Walther Mothes
Mark Connors
Peter D. Kwong
机构
[1] Vaccine Research Center,Departments of Medicine
[2] National Institute of Allergy and Infectious Diseases,Departments of Medicine
[3] National Institutes of Health,Department of Microbial Pathogenesis
[4] HIV-Specific Immunity Section,Department of Physiology and Biophysics
[5] Laboratory of Immunoregulation,undefined
[6] National Institute of Allergy and Infectious Diseases,undefined
[7] National Institutes of Health,undefined
[8] Center for HIV and STIs,undefined
[9] National Institute for Communicable Diseases of the National Health Laboratory Service (NHLS),undefined
[10] Sandringham,undefined
[11] Johannesburg 2131,undefined
[12] South Africa,undefined
[13] Epidemiology,undefined
[14] Microbiology and Immunology,undefined
[15] University of North Carolina at Chapel Hill,undefined
[16] Duke University Human Vaccine Institute,undefined
[17] Surgery,undefined
[18] Pediatrics and Immunology,undefined
[19] Duke University School of Medicine,undefined
[20] and the Center for HIV/AIDS Vaccine Immunology-Immunogen Discovery at Duke University,undefined
[21] University of the Witwatersrand,undefined
[22] Braamfontein,undefined
[23] Johannesburg 2000,undefined
[24] South Africa,undefined
[25] Centre for the AIDS Programme of Research in South Africa (CAPRISA),undefined
[26] University of KwaZulu-Natal,undefined
[27] Durban 4041,undefined
[28] South Africa,undefined
[29] Yale University School of Medicine,undefined
[30] Weill Cornell Medical College of Cornell University,undefined
来源
Nature | 2014年 / 514卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The human immunodeficiency virus type 1 (HIV-1) envelope (Env) spike, comprising three gp120 and three gp41 subunits, is a conformational machine that facilitates HIV-1 entry by rearranging from a mature unliganded state, through receptor-bound intermediates, to a post-fusion state. As the sole viral antigen on the HIV-1 virion surface, Env is both the target of neutralizing antibodies and a focus of vaccine efforts. Here we report the structure at 3.5 Å resolution for an HIV-1 Env trimer captured in a mature closed state by antibodies PGT122 and 35O22. This structure reveals the pre-fusion conformation of gp41, indicates rearrangements needed for fusion activation, and defines parameters of immune evasion and immune recognition. Pre-fusion gp41 encircles amino- and carboxy-terminal strands of gp120 with four helices that form a membrane-proximal collar, fastened by insertion of a fusion peptide-proximal methionine into a gp41-tryptophan clasp. Spike rearrangements required for entry involve opening the clasp and expelling the termini. N-linked glycosylation and sequence-variable regions cover the pre-fusion closed spike; we used chronic cohorts to map the prevalence and location of effective HIV-1-neutralizing responses, which were distinguished by their recognition of N-linked glycan and tolerance for epitope-sequence variation.
引用
收藏
页码:455 / 461
页数:6
相关论文
共 224 条
  • [1] Wyatt R(1998)The HIV-1 envelope glycoproteins: fusogens, antigens, and immunogens Science 280 1884-1888
  • [2] Sodroski J(2003)Antibody neutralization and escape by HIV-1 Nature 422 307-312
  • [3] Wei X(1990)Assignment of intrachain disulfide bonds and characterization of potential glycosylation sites of the type 1 recombinant human immunodeficiency virus envelope glycoprotein (gp120) expressed in Chinese hamster ovary cells J. Biol. Chem. 265 10373-10382
  • [4] Leonard CK(2014)Tyrosine sulfation in the second variable loop (V2) of HIV-1 gp120 stabilizes V2–V3 interaction and modulates neutralization sensitivity Proc. Natl Acad. Sci. USA 111 3152-3157
  • [5] Cimbro R(1996)Effects of inefficient cleavage of the signal sequence of HIV-1 gp 120 on its association with calnexin, folding, and intracellular transport Proc. Natl Acad. Sci. USA 93 9606-9611
  • [6] Li Y(1998)Structure of an HIV gp120 envelope glycoprotein in complex with the CD4 receptor and a neutralizing human antibody Nature 393 648-659
  • [7] Kwong PD(1997)Core structure of gp41 from the HIV envelope glycoprotein Cell 89 263-273
  • [8] Chan DC(1997)Atomic structure of the ectodomain from HIV-1 gp41 Nature 387 426-430
  • [9] Fass D(2013)Crystal structure of a soluble cleaved HIV-1 envelope trimer Science 342 1477-1483
  • [10] Berger JM(2013)Cryo-EM structure of a fully glycosylated soluble cleaved HIV-1 envelope trimer Science 342 1484-1490