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A covalent inhibitor targeting an intermediate conformation of the fusogenic subunit of the HIV-1 envelope complex

  1. Author:
    Jacobs, A.
    Quraishi, O.
    Huang, X. C.
    Bousquet-Gagnon, N.
    Nault, G.
    Francella, N.
    Alvord, W. G.
    Pham, N.
    Soucy, C.
    Robitaille, M.
    Bridon, D.
    Blumenthal, R.
  2. Author Address

    Conjuchem Biotechnol Inc, Montreal, PQ H2X 3Y8, Canada. NCI, Ctr Canc Res Nanobiol Program, NIH, Frederick, MD 21702 USA. Data Management Serv Inc, NCI, NIH, Frederick, MD 21702 USA.;Blumenthal, R, Conjuchem Biotechnol Inc, 225 President Kennedy Ave,Ste PK-3950, Montreal, PQ H2X 3Y8, Canada.;blumenthalr@mail.nih.gov
    1. Year: 2007
    2. Date: Nov
  1. Journal: Journal of Biological Chemistry
    1. 282
    2. 44
    3. Pages: 32406-32413
  2. Type of Article: Article
  3. ISSN: 0021-9258
  1. Abstract:

    Peptide inhibitors corresponding to sequences in the six helix bundle structure of the fusogenic portion (gp41) of the HIV envelope glycoprotein have been successfully implemented in preventing HIV entry. These peptides bind to regions in HIV gp41 transiently exposed during the fusion reaction. In an effort to improve upon these entry inhibitors, we have successfully designed and tested peptide analogs composed of chemical spacers and reactive moieties positioned strategically to facilitate covalent attachment. Using a temperature-arrested state prime wash in vitro assay we show evidence for the trapping of a pre-six helix bundle fusion intermediate by a covalent reaction with the specific anti-HIV-1 peptide. This is the first demonstration of the trapping of an intermediate conformation of a viral envelope glycoprotein during the fusion process that occurs in live cells. The permanent specific attachment of the covalent inhibitor is projected to improve the pharmacokinetics of administration in vivo and thereby improve the long-term sustainability of peptide entry inhibitor therapy and help to expand its applicability beyond salvage therapy.

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External Sources

  1. DOI: 10.1074/jbc.M705577200
  2. WOS: 000250480300063

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