Molecular architecture of the uncleaved HIV-1 envelope glycoprotein trimer
Author(s) -
Youdong Mao,
Liping Wang,
Christopher Gu,
Alon Herschhorn,
Anik Désormeaux,
Andrés Finzi,
Shi-Hua Xiang,
Joseph Sodroski
Publication year - 2013
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1307382110
Subject(s) - trimer , ectodomain , gp41 , lipid bilayer fusion , glycoprotein , chemistry , conformational change , protein quaternary structure , protein structure , biophysics , viral envelope , viral entry , biology , receptor , virus , stereochemistry , antibody , biochemistry , virology , membrane , protein subunit , viral replication , epitope , dimer , immunology , gene , organic chemistry
The human immunodeficiency virus type 1 (HIV-1) envelope glycoprotein (Env) trimer, a membrane-fusing machine, mediates virus entry into host cells and is the sole virus-specific target for neutralizing antibodies. Binding the receptors, CD4 and CCR5/CXCR4, triggers Env conformational changes from the metastable unliganded state to the fusion-active state. We used cryo-electron microscopy to obtain a 6-Å structure of the membrane-bound, heavily glycosylated HIV-1 Env trimer in its uncleaved and unliganded state. The spatial organization of secondary structure elements reveals that the unliganded conformations of both glycoprotein (gp)120 and gp41 subunits differ from those induced by receptor binding. The gp120 trimer association domains, which contribute to interprotomer contacts in the unliganded Env trimer, undergo rearrangement upon CD4 binding. In the unliganded Env, intersubunit interactions maintain the gp41 ectodomain helical bundles in a “spring-loaded” conformation distinct from the extended helical coils of the fusion-active state. Quaternary structure regulates the virus-neutralizing potency of antibodies targeting the conserved CD4-binding site on gp120. The Env trimer architecture provides mechanistic insights into the metastability of the unliganded state, receptor-induced conformational changes, and quaternary structure-based strategies for immune evasion.
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