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Atomic Structure of a Thermostable Subdomain of HIV-1 Gp41

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Specialty Science
Date 1997 Nov 14
PMID 9356444
Citations 277
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Abstract

Infection by HIV-1 involves the fusion of viral and cellular membranes with subsequent transfer of viral genetic material into the cell. The HIV-1 envelope glycoprotein that mediates fusion consists of the surface subunit gp120 and the transmembrane subunit gp41. gp120 directs virion attachment to the cell-surface receptors, and gp41 then promotes viral-cell membrane fusion. A soluble, alpha-helical, trimeric complex within gp41 composed of N-terminal and C-terminal extraviral segments has been proposed to represent the core of the fusion-active conformation of the HIV-1 envelope. A thermostable subdomain denoted N34(L6)C28 can be formed by the N-34 and C-28 peptides connected by a flexible linker in place of the disulfide-bonded loop region. Three-dimensional structure of N34(L6)C28 reveals that three molecules fold into a six-stranded helical bundle. Three N-terminal helices within the bundle form a central, parallel, trimeric coiled coil, whereas three C-terminal helices pack in the reverse direction into three hydrophobic grooves on the surface of the N-terminal trimer. This thermostable subdomain displays the salient features of the core structure of the isolated gp41 subunit and thus provides a possible target for therapeutics designed selectively to block HIV-1 entry.

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References
1.
Gonzalez Jr L, Woolfson D, Alber T . Buried polar residues and structural specificity in the GCN4 leucine zipper. Nat Struct Biol. 1996; 3(12):1011-8. DOI: 10.1038/nsb1296-1011. View

2.
Harbury P, Kim P, Alber T . Crystal structure of an isoleucine-zipper trimer. Nature. 1994; 371(6492):80-3. DOI: 10.1038/371080a0. View

3.
Stegmann T, Delfino J, Richards F, Helenius A . The HA2 subunit of influenza hemagglutinin inserts into the target membrane prior to fusion. J Biol Chem. 1991; 266(27):18404-10. View

4.
DSouza M, Harden V . Chemokines and HIV-1 second receptors. Confluence of two fields generates optimism in AIDS research. Nat Med. 1996; 2(12):1293-300. DOI: 10.1038/nm1296-1293. View

5.
Gallaher W, Ball J, Garry R, GRIFFIN M, Montelaro R . A general model for the transmembrane proteins of HIV and other retroviruses. AIDS Res Hum Retroviruses. 1989; 5(4):431-40. DOI: 10.1089/aid.1989.5.431. View