Extension of the Polyanionic Cosalane Pharmacophore as a Strategy for Increasing Anti-HIV Potency
The anti-HIV agent cosalane inhibits both the binding of gp120 to CD4 as well as an undefined postattachment event prior to reverse transcription. Several cosalane analogues having an extended polyanionic “pharmacophore” were designed based on a hypothetical model of the binding of cosalane to CD4....
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Published in: | Journal of medicinal chemistry Vol. 42; no. 10; pp. 1767 - 1777 |
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Main Authors: | , , , , , , , , , , , |
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20-05-1999
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Abstract | The anti-HIV agent cosalane inhibits both the binding of gp120 to CD4 as well as an undefined postattachment event prior to reverse transcription. Several cosalane analogues having an extended polyanionic “pharmacophore” were designed based on a hypothetical model of the binding of cosalane to CD4. The analogues were synthesized, and a number of them displayed anti-HIV activity. One of the new analogues was found to possess enhanced potency as an anti-HIV agent relative to cosalane itself. Although the new analogues inhibited both HIV-1 and HIV-2, they were more potent as inhibitors of HIV-1 than HIV-2. Mechanism of action studies indicated that the most potent of the new analogues inhibited fusion of the viral envelope with the cell membrane at lower concentrations than it inhibited attachment, suggesting inhibition of fusion as the primary mechanism of action. |
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AbstractList | The anti-HIV agent cosalane inhibits both the binding of gp120 to CD4 as well as an undefined postattachment event prior to reverse transcription. Several cosalane analogues having an extended polyanionic "pharmacophore" were designed based on a hypothetical model of the binding of cosalane to CD4. The analogues were synthesized, and a number of them displayed anti-HIV activity. One of the new analogues was found to possess enhanced potency as an anti-HIV agent relative to cosalane itself. Although the new analogues inhibited both HIV-1 and HIV-2, they were more potent as inhibitors of HIV-1 than HIV-2. Mechanism of action studies indicated that the most potent of the new analogues inhibited fusion of the viral envelope with the cell membrane at lower concentrations than it inhibited attachment, suggesting inhibition of fusion as the primary mechanism of action. |
Author | Paul, Gitendra Schols, Dominique Rice, William G De Clercq, Erik Pannecouque, Christophe Ruell, Jeffrey A Williamson, Karen Cushman, Mark Insaf, Shabana Schaeffer, Catherine A Turpin, Jim A Witvrouw, Myriam |
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Cites_doi | 10.1016/S0040-4020(01)81957-8 10.1021/jo00052a046 10.1128/AAC.42.3.487 10.1177/095632029600700304 10.1016/0006-291X(86)90877-6 10.1016/0166-0934(88)90134-6 10.1016/S0006-291X(88)81297-X 10.1084/jem.186.8.1383 10.1177/095632029000100402 10.1021/jo50009a010 10.1021/jm950666h 10.1016/S0960-894X(96)00552-5 10.1084/jem.176.2.507 10.1016/S0021-9258(19)50432-X 10.1016/S0960-894X(00)80053-0 |
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Keywords | Steroid Polyanion Benzene derivatives Retroviridae Haloether Lentivirus In vitro Modeling Virus Sodium Compounds Organic anion Biological fixation Position isomer Structure activity relation Carboxylic acid Chlorine Organic compounds T-Lymphocyte Molecular model Organic salt Carboxylate Antiviral Human immunodeficiency virus Mechanism of action Chemical synthesis |
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SubjectTerms | AIDS/HIV Animals Anti-HIV Agents - chemical synthesis Anti-HIV Agents - chemistry Anti-HIV Agents - metabolism Anti-HIV Agents - pharmacology Antibiotics. Antiinfectious agents. Antiparasitic agents Antiviral agents Aurintricarboxylic Acid - analogs & derivatives Aurintricarboxylic Acid - chemistry Benzoates - chemical synthesis Benzoates - chemistry Benzoates - metabolism Benzoates - pharmacology Biological and medical sciences CD4 Antigens - chemistry CD4 Antigens - metabolism Cell Line Cholestanes - chemical synthesis Cholestanes - chemistry Cholestanes - metabolism Cholestanes - pharmacology HIV-1 - drug effects HIV-2 - drug effects Humans Medical sciences Models, Molecular Pharmacology. Drug treatments Protein Binding Structure-Activity Relationship |
Title | Extension of the Polyanionic Cosalane Pharmacophore as a Strategy for Increasing Anti-HIV Potency |
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