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Indolyl Aryl Sulfones bearing Natural and Unnatural Aminoacids. Discovery of Potent Inhibitors of both HIV-1 Non-Nucleoside Wild Type and Resistant Mutant Strains Reverse Transcriptase, and Coxsackie B4 Virus

Authors :
Giuseppe La Regina
Samantha Zanoli
Andrea Brancale
Roberto Cirilli
Romano Silvestri
Alberta Samuele
Francesco Piscitelli
Jan Balzarini
Cesare Giordano
Ettore Novellino
Antonio Lavecchia
Giovanni Maga
Antonio Coluccia
Anna Sansone
Francesco La Torre
Source :
Journal of medicinal chemistry 52 (2009): 1922–1934. doi:10.1021/jm801470b, info:cnr-pdr/source/autori:Piscitelli F; Coluccia A; Brancale A; La Regina G; Sansone A; Giordano C; Balzarini J; Maga G; Zanoli S; Samuele A; Cirilli R; La Torre F; Lavecchia A; Novellino E; Silvestri R/titolo:Indolylarylsulfones Bearing Natural and Unnatural Amino Acids. Discovery of Potent Inhibitors of HIV-1 Non-Nucleoside Wild Type and Resistant Mutant Strains Reverse Transcriptase and Coxsackie B4 Virus/doi:10.1021%2Fjm801470b/rivista:Journal of medicinal chemistry/anno:2009/pagina_da:1922/pagina_a:1934/intervallo_pagine:1922–1934/volume:52
Publication Year :
2009
Publisher :
American Chemical Society, Washington, USA, 2009.

Abstract

New potent indolylarylsulfone (IAS) HIV-1 NNRTIs were obtained by coupling natural and unnatural amino acids to the 2-carboxamide and introducing different electron-withdrawing substituents at position 4 and 5 of the indole nucleus. The new IASs inhibited the HIV-1 replication in human T-lymphocyte (CEM) cells at low/subnanomolar concentration and were weakly cytostatic. Against the mutant L100I, K103N, and Y181C RT HIV-1 strains in CEM cells, sulfones 3, 4, 19, 27, and 31 were comparable to EFV. The new IASs were inhibitors to Coxsackie B4 virus at low micromolar (2-9 microM) concentrations. Superimposition of PLANTS docked conformations of IASs 19 and 9 revealed different hydrophobic interactions of the 3,5-dimethylphenyl group, for which a staking interaction with Tyr181 aromatic side chain was observed. The binding mode of 19 was not affected by the L100I mutation and was consistent with the interactions reported for the WT strain.

Details

Language :
English
Database :
OpenAIRE
Journal :
Journal of medicinal chemistry 52 (2009): 1922–1934. doi:10.1021/jm801470b, info:cnr-pdr/source/autori:Piscitelli F; Coluccia A; Brancale A; La Regina G; Sansone A; Giordano C; Balzarini J; Maga G; Zanoli S; Samuele A; Cirilli R; La Torre F; Lavecchia A; Novellino E; Silvestri R/titolo:Indolylarylsulfones Bearing Natural and Unnatural Amino Acids. Discovery of Potent Inhibitors of HIV-1 Non-Nucleoside Wild Type and Resistant Mutant Strains Reverse Transcriptase and Coxsackie B4 Virus/doi:10.1021%2Fjm801470b/rivista:Journal of medicinal chemistry/anno:2009/pagina_da:1922/pagina_a:1934/intervallo_pagine:1922–1934/volume:52
Accession number :
edsair.doi.dedup.....078034fdb384493a8f62d83b45723189