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Discovery of a diaminoquinoxaline benzenesulfonamide antagonist of HIV-1 Nef function using a yeast-based phenotypic screen

BACKGROUND: HIV-1 Nef is a viral accessory protein critical for AIDS progression. Nef lacks intrinsic catalytic activity and binds multiple host cell signaling proteins, including Hck and other Src-family tyrosine kinases. Nef binding induces constitutive Hck activation that may contribute to HIV pa...

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Autores principales: Trible, Ronald P, Narute, Purushottam, Emert-Sedlak, Lori A, Alvarado, John Jeff, Atkins, Katelyn, Thomas, Laurel, Kodama, Toshiaki, Yanamala, Naveena, Korotchenko, Vasiliy, Day, Billy W, Thomas, Gary, Smithgall, Thomas E
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3874621/
https://www.ncbi.nlm.nih.gov/pubmed/24229420
http://dx.doi.org/10.1186/1742-4690-10-135
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author Trible, Ronald P
Narute, Purushottam
Emert-Sedlak, Lori A
Alvarado, John Jeff
Atkins, Katelyn
Thomas, Laurel
Kodama, Toshiaki
Yanamala, Naveena
Korotchenko, Vasiliy
Day, Billy W
Thomas, Gary
Smithgall, Thomas E
author_facet Trible, Ronald P
Narute, Purushottam
Emert-Sedlak, Lori A
Alvarado, John Jeff
Atkins, Katelyn
Thomas, Laurel
Kodama, Toshiaki
Yanamala, Naveena
Korotchenko, Vasiliy
Day, Billy W
Thomas, Gary
Smithgall, Thomas E
author_sort Trible, Ronald P
collection PubMed
description BACKGROUND: HIV-1 Nef is a viral accessory protein critical for AIDS progression. Nef lacks intrinsic catalytic activity and binds multiple host cell signaling proteins, including Hck and other Src-family tyrosine kinases. Nef binding induces constitutive Hck activation that may contribute to HIV pathogenesis by promoting viral infectivity, replication and downregulation of cell-surface MHC-I molecules. In this study, we developed a yeast-based phenotypic screen to identify small molecules that inhibit the Nef-Hck complex. RESULTS: Nef-Hck interaction was faithfully reconstituted in yeast cells, resulting in kinase activation and growth arrest. Yeast cells expressing the Nef-Hck complex were used to screen a library of small heterocyclic compounds for their ability to rescue growth inhibition. The screen identified a dihydrobenzo-1,4-dioxin-substituted analog of 2-quinoxalinyl-3-aminobenzene-sulfonamide (DQBS) as a potent inhibitor of Nef-dependent HIV-1 replication and MHC-I downregulation in T-cells. Docking studies predicted direct binding of DQBS to Nef which was confirmed in differential scanning fluorimetry assays with recombinant purified Nef protein. DQBS also potently inhibited the replication of HIV-1 NL4-3 chimeras expressing Nef alleles representative of all M-group HIV-1 clades. CONCLUSIONS: Our findings demonstrate the utility of a yeast-based growth reversion assay for the identification of small molecule Nef antagonists. Inhibitors of Nef function discovered with this assay, such as DQBS, may complement the activity of current antiretroviral therapies by enabling immune recognition of HIV-infected cells through the rescue of cell surface MHC-I.
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spelling pubmed-38746212013-12-31 Discovery of a diaminoquinoxaline benzenesulfonamide antagonist of HIV-1 Nef function using a yeast-based phenotypic screen Trible, Ronald P Narute, Purushottam Emert-Sedlak, Lori A Alvarado, John Jeff Atkins, Katelyn Thomas, Laurel Kodama, Toshiaki Yanamala, Naveena Korotchenko, Vasiliy Day, Billy W Thomas, Gary Smithgall, Thomas E Retrovirology Research BACKGROUND: HIV-1 Nef is a viral accessory protein critical for AIDS progression. Nef lacks intrinsic catalytic activity and binds multiple host cell signaling proteins, including Hck and other Src-family tyrosine kinases. Nef binding induces constitutive Hck activation that may contribute to HIV pathogenesis by promoting viral infectivity, replication and downregulation of cell-surface MHC-I molecules. In this study, we developed a yeast-based phenotypic screen to identify small molecules that inhibit the Nef-Hck complex. RESULTS: Nef-Hck interaction was faithfully reconstituted in yeast cells, resulting in kinase activation and growth arrest. Yeast cells expressing the Nef-Hck complex were used to screen a library of small heterocyclic compounds for their ability to rescue growth inhibition. The screen identified a dihydrobenzo-1,4-dioxin-substituted analog of 2-quinoxalinyl-3-aminobenzene-sulfonamide (DQBS) as a potent inhibitor of Nef-dependent HIV-1 replication and MHC-I downregulation in T-cells. Docking studies predicted direct binding of DQBS to Nef which was confirmed in differential scanning fluorimetry assays with recombinant purified Nef protein. DQBS also potently inhibited the replication of HIV-1 NL4-3 chimeras expressing Nef alleles representative of all M-group HIV-1 clades. CONCLUSIONS: Our findings demonstrate the utility of a yeast-based growth reversion assay for the identification of small molecule Nef antagonists. Inhibitors of Nef function discovered with this assay, such as DQBS, may complement the activity of current antiretroviral therapies by enabling immune recognition of HIV-infected cells through the rescue of cell surface MHC-I. BioMed Central 2013-11-14 /pmc/articles/PMC3874621/ /pubmed/24229420 http://dx.doi.org/10.1186/1742-4690-10-135 Text en Copyright © 2013 Trible et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Trible, Ronald P
Narute, Purushottam
Emert-Sedlak, Lori A
Alvarado, John Jeff
Atkins, Katelyn
Thomas, Laurel
Kodama, Toshiaki
Yanamala, Naveena
Korotchenko, Vasiliy
Day, Billy W
Thomas, Gary
Smithgall, Thomas E
Discovery of a diaminoquinoxaline benzenesulfonamide antagonist of HIV-1 Nef function using a yeast-based phenotypic screen
title Discovery of a diaminoquinoxaline benzenesulfonamide antagonist of HIV-1 Nef function using a yeast-based phenotypic screen
title_full Discovery of a diaminoquinoxaline benzenesulfonamide antagonist of HIV-1 Nef function using a yeast-based phenotypic screen
title_fullStr Discovery of a diaminoquinoxaline benzenesulfonamide antagonist of HIV-1 Nef function using a yeast-based phenotypic screen
title_full_unstemmed Discovery of a diaminoquinoxaline benzenesulfonamide antagonist of HIV-1 Nef function using a yeast-based phenotypic screen
title_short Discovery of a diaminoquinoxaline benzenesulfonamide antagonist of HIV-1 Nef function using a yeast-based phenotypic screen
title_sort discovery of a diaminoquinoxaline benzenesulfonamide antagonist of hiv-1 nef function using a yeast-based phenotypic screen
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3874621/
https://www.ncbi.nlm.nih.gov/pubmed/24229420
http://dx.doi.org/10.1186/1742-4690-10-135
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