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6OPQ

CD4- and 17-bound HIV-1 Env B41 SOSIP frozen with LMNG

Summary for 6OPQ
Entry DOI10.2210/pdb6opq/pdb
EMDB information20153
DescriptorEnvelope glycoprotein gp160, 17b Fab light chain, Envelope glycoprotein gp41, ... (8 entities in total)
Functional Keywordshiv-1, env, cd4, receptor-bound state, small molecule, fusion inhibitor, viral protein, viral protein-immune system complex, viral protein/immune system
Biological sourceHuman immunodeficiency virus 1
More
Total number of polymer chains15
Total formula weight456449.63
Authors
Ozorowski, G.,Torres, J.L.,Ward, A.B. (deposition date: 2019-04-25, release date: 2020-10-21, Last modification date: 2020-12-09)
Primary citationOzorowski, G.,Torres, J.L.,Santos-Martins, D.,Forli, S.,Ward, A.B.
A Strain-Specific Inhibitor of Receptor-Bound HIV-1 Targets a Pocket near the Fusion Peptide.
Cell Rep, 33:108428-108428, 2020
Cited by
PubMed Abstract: Disruption of viral fusion represents a viable, albeit under-explored, target for HIV therapeutics. Here, while studying the receptor-bound envelope glycoprotein conformation by cryoelectron microscopy (cryo-EM), we identify a pocket near the base of the trimer containing a bound detergent molecule and perform in silico drug screening by using a library of drug-like and commercially available molecules. After down-selection, we solve cryo-EM structures that validate the binding of two small molecule hits in very similar manners to the predicted binding poses, including interactions with aromatic residues within the fusion peptide. One of the molecules demonstrates low micromolar inhibition of the autologous virus by using a very rare phenylalanine in the fusion peptide and stabilizing the surrounding region. This work demonstrates that small molecules can target the fusion process, providing an additional target for anti-HIV therapeutics, and highlights the need to explore how fusion peptide sequence variations affect receptor-mediated conformational states across diverse HIV strains.
PubMed: 33238117
DOI: 10.1016/j.celrep.2020.108428
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.8 Å)
Structure validation

226707

數據於2024-10-30公開中

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