Literature DB >> 11384232

Identification of a putative binding site for [2',5'-bis-O-(tert-butyldimethylsilyl)-beta-D-ribofuranosyl]-3'-spiro-5''-(4''-amino-1'',2''-oxathiole-2'',2''-dioxide)thymine (TSAO) derivatives at the p51-p66 interface of HIV-1 reverse transcriptase.

F Rodríguez-Barrios1, C Pérez, E Lobatón, S Velázquez, C Chamorro, A San-Félix, M J Pérez-Pérez, M J Camarasa, H Pelemans, J Balzarini, F Gago.   

Abstract

A binding site for TSAO-m(3)T at the interface between the p66 and p51 subunits of HIV-1 reverse transcriptase (RT) and distinct from that of "classical" HIV-1 non-nucleoside inhibitors is proposed. The feasibility of the binding mode was assessed by carrying out nanosecond molecular dynamics simulations for the complexes of TSAO-m(3)T with reduced models of both the wild-type enzyme and a more sensitive R172A mutant. The molecular model is in agreement with a previous proposal, with known structure-activity and mutagenesis data for this unique class of inhibitors, and also with recent biochemical evidence indicating that TSAO analogues can affect enzyme dimerization. The relative importance of residues involved in dimer formation and TSAO-RT complex stabilization was assessed by a combination of surface area accessibility, molecular mechanics, and continuum electrostatics calculations. A structure-based modification introduced into the lead compound yielded a new derivative with improved antiviral activity.

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Year:  2001        PMID: 11384232     DOI: 10.1021/jm001095i

Source DB:  PubMed          Journal:  J Med Chem        ISSN: 0022-2623            Impact factor:   7.446


  7 in total

Review 1.  Conformational changes in HIV-1 reverse transcriptase induced by nonnucleoside reverse transcriptase inhibitor binding.

Authors:  Nicolas Sluis-Cremer; N Alpay Temiz; Ivet Bahar
Journal:  Curr HIV Res       Date:  2004-10       Impact factor: 1.581

2.  Crystal structure of tert-butyldimethylsilyl-spiroaminooxathioledioxide-thymine (TSAO-T) in complex with HIV-1 reverse transcriptase (RT) redefines the elastic limits of the non-nucleoside inhibitor-binding pocket.

Authors:  Kalyan Das; Joseph D Bauman; Angela S Rim; Chhaya Dharia; Arthur D Clark; María-José Camarasa; Jan Balzarini; Eddy Arnold
Journal:  J Med Chem       Date:  2011-03-29       Impact factor: 7.446

3.  Peptides Mimicking the β7/β8 Loop of HIV-1 Reverse Transcriptase p51 as "Hotspot-Targeted" Dimerization Inhibitors.

Authors:  Pedro A Sánchez-Murcia; Sonia de Castro; Carlos García-Aparicio; M Angeles Jiménez; Angela Corona; Enzo Tramontano; Nicolas Sluis-Cremer; Luis Menéndez-Arias; Sonsoles Velázquez; Federico Gago; María-José Camarasa
Journal:  ACS Med Chem Lett       Date:  2020-01-24       Impact factor: 4.345

4.  High sequence conservation of human immunodeficiency virus type 1 reverse transcriptase under drug pressure despite the continuous appearance of mutations.

Authors:  Francesca Ceccherini-Silberstein; Federico Gago; Maria Santoro; Caterina Gori; Valentina Svicher; Fátima Rodríguez-Barrios; Roberta d'Arrigo; Massimo Ciccozzi; Ada Bertoli; Antonella d'Arminio Monforte; Jan Balzarini; Andrea Antinori; Carlo-Federico Perno
Journal:  J Virol       Date:  2005-08       Impact factor: 5.103

5.  Solution structural dynamics of HIV-1 reverse transcriptase heterodimer.

Authors:  James M Seckler; Kathryn J Howard; Mary D Barkley; Patrick L Wintrode
Journal:  Biochemistry       Date:  2009-08-18       Impact factor: 3.162

6.  Targeting human immunodeficiency virus type 1 assembly, maturation and budding.

Authors:  Johanna Wapling; Seema Srivastava; Miranda Shehu-Xhilaga; Gilda Tachedjian
Journal:  Drug Target Insights       Date:  2007-07-20

Review 7.  Allosteric modulation of protein oligomerization: an emerging approach to drug design.

Authors:  Ronen Gabizon; Assaf Friedler
Journal:  Front Chem       Date:  2014-03-24       Impact factor: 5.221

  7 in total

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