Cargando…

HIV-1 Integrase Strand Transfer Inhibitors with Reduced Susceptibility to Drug Resistant Mutant Integrases

[Image: see text] HIV integrase (IN) strand transfer inhibitors (INSTIs) are among the newest anti-AIDS drugs; however, mutant forms of IN can confer resistance. We developed noncytotoxic naphthyridine-containing INSTIs that retain low nanomolar IC(50) values against HIV-1 variants harboring all of...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhao, Xue Zhi, Smith, Steven J., Maskell, Daniel P., Metifiot, Mathieu, Pye, Valerie E., Fesen, Katherine, Marchand, Christophe, Pommier, Yves, Cherepanov, Peter, Hughes, Stephen H., Burke, Terrence R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2016
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4836387/
https://www.ncbi.nlm.nih.gov/pubmed/26808478
http://dx.doi.org/10.1021/acschembio.5b00948
_version_ 1782427746247376896
author Zhao, Xue Zhi
Smith, Steven J.
Maskell, Daniel P.
Metifiot, Mathieu
Pye, Valerie E.
Fesen, Katherine
Marchand, Christophe
Pommier, Yves
Cherepanov, Peter
Hughes, Stephen H.
Burke, Terrence R.
author_facet Zhao, Xue Zhi
Smith, Steven J.
Maskell, Daniel P.
Metifiot, Mathieu
Pye, Valerie E.
Fesen, Katherine
Marchand, Christophe
Pommier, Yves
Cherepanov, Peter
Hughes, Stephen H.
Burke, Terrence R.
author_sort Zhao, Xue Zhi
collection PubMed
description [Image: see text] HIV integrase (IN) strand transfer inhibitors (INSTIs) are among the newest anti-AIDS drugs; however, mutant forms of IN can confer resistance. We developed noncytotoxic naphthyridine-containing INSTIs that retain low nanomolar IC(50) values against HIV-1 variants harboring all of the major INSTI-resistant mutations. We found by analyzing crystal structures of inhibitors bound to the IN from the prototype foamy virus (PFV) that the most successful inhibitors show striking mimicry of the bound viral DNA prior to 3′-processing and the bound host DNA prior to strand transfer. Using this concept of “bi-substrate mimicry,” we developed a new broadly effective inhibitor that not only mimics aspects of both the bound target and viral DNA but also more completely fills the space they would normally occupy. Maximizing shape complementarity and recapitulating structural components encompassing both of the IN DNA substrates could serve as a guiding principle for the development of new INSTIs.
format Online
Article
Text
id pubmed-4836387
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-48363872017-01-25 HIV-1 Integrase Strand Transfer Inhibitors with Reduced Susceptibility to Drug Resistant Mutant Integrases Zhao, Xue Zhi Smith, Steven J. Maskell, Daniel P. Metifiot, Mathieu Pye, Valerie E. Fesen, Katherine Marchand, Christophe Pommier, Yves Cherepanov, Peter Hughes, Stephen H. Burke, Terrence R. ACS Chem Biol [Image: see text] HIV integrase (IN) strand transfer inhibitors (INSTIs) are among the newest anti-AIDS drugs; however, mutant forms of IN can confer resistance. We developed noncytotoxic naphthyridine-containing INSTIs that retain low nanomolar IC(50) values against HIV-1 variants harboring all of the major INSTI-resistant mutations. We found by analyzing crystal structures of inhibitors bound to the IN from the prototype foamy virus (PFV) that the most successful inhibitors show striking mimicry of the bound viral DNA prior to 3′-processing and the bound host DNA prior to strand transfer. Using this concept of “bi-substrate mimicry,” we developed a new broadly effective inhibitor that not only mimics aspects of both the bound target and viral DNA but also more completely fills the space they would normally occupy. Maximizing shape complementarity and recapitulating structural components encompassing both of the IN DNA substrates could serve as a guiding principle for the development of new INSTIs. American Chemical Society 2016-01-25 2016-04-15 /pmc/articles/PMC4836387/ /pubmed/26808478 http://dx.doi.org/10.1021/acschembio.5b00948 Text en Copyright © 2016 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Zhao, Xue Zhi
Smith, Steven J.
Maskell, Daniel P.
Metifiot, Mathieu
Pye, Valerie E.
Fesen, Katherine
Marchand, Christophe
Pommier, Yves
Cherepanov, Peter
Hughes, Stephen H.
Burke, Terrence R.
HIV-1 Integrase Strand Transfer Inhibitors with Reduced Susceptibility to Drug Resistant Mutant Integrases
title HIV-1 Integrase Strand Transfer Inhibitors with Reduced Susceptibility to Drug Resistant Mutant Integrases
title_full HIV-1 Integrase Strand Transfer Inhibitors with Reduced Susceptibility to Drug Resistant Mutant Integrases
title_fullStr HIV-1 Integrase Strand Transfer Inhibitors with Reduced Susceptibility to Drug Resistant Mutant Integrases
title_full_unstemmed HIV-1 Integrase Strand Transfer Inhibitors with Reduced Susceptibility to Drug Resistant Mutant Integrases
title_short HIV-1 Integrase Strand Transfer Inhibitors with Reduced Susceptibility to Drug Resistant Mutant Integrases
title_sort hiv-1 integrase strand transfer inhibitors with reduced susceptibility to drug resistant mutant integrases
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4836387/
https://www.ncbi.nlm.nih.gov/pubmed/26808478
http://dx.doi.org/10.1021/acschembio.5b00948
work_keys_str_mv AT zhaoxuezhi hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT smithstevenj hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT maskelldanielp hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT metifiotmathieu hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT pyevaleriee hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT fesenkatherine hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT marchandchristophe hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT pommieryves hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT cherepanovpeter hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT hughesstephenh hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases
AT burketerrencer hiv1integrasestrandtransferinhibitorswithreducedsusceptibilitytodrugresistantmutantintegrases