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Inhibition of Both HIV-1 Reverse Transcription and Gene Expression by a Cyclic Peptide that Binds the Tat-Transactivating Response Element (TAR) RNA

The RNA response element TAR plays a critical role in HIV replication by providing a binding site for the recruitment of the viral transactivator protein Tat. Using a structure-guided approach, we have developed a series of conformationally-constrained cyclic peptides that act as structural mimics o...

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Autores principales: Lalonde, Matthew S., Lobritz, Michael A., Ratcliff, Annette, Chamanian, Mastooreh, Athanassiou, Zafiria, Tyagi, Mudit, Wong, Julian, Robinson, John A., Karn, Jonathan, Varani, Gabriele, Arts, Eric J.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3098202/
https://www.ncbi.nlm.nih.gov/pubmed/21625572
http://dx.doi.org/10.1371/journal.ppat.1002038
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author Lalonde, Matthew S.
Lobritz, Michael A.
Ratcliff, Annette
Chamanian, Mastooreh
Athanassiou, Zafiria
Tyagi, Mudit
Wong, Julian
Robinson, John A.
Karn, Jonathan
Varani, Gabriele
Arts, Eric J.
author_facet Lalonde, Matthew S.
Lobritz, Michael A.
Ratcliff, Annette
Chamanian, Mastooreh
Athanassiou, Zafiria
Tyagi, Mudit
Wong, Julian
Robinson, John A.
Karn, Jonathan
Varani, Gabriele
Arts, Eric J.
author_sort Lalonde, Matthew S.
collection PubMed
description The RNA response element TAR plays a critical role in HIV replication by providing a binding site for the recruitment of the viral transactivator protein Tat. Using a structure-guided approach, we have developed a series of conformationally-constrained cyclic peptides that act as structural mimics of the Tat RNA binding region and block Tat-TAR interactions at nanomolar concentrations in vitro. Here we show that these compounds block Tat-dependent transcription in cell-free systems and in cell-based reporter assays. The compounds are also cell permeable, have low toxicity, and inhibit replication of diverse HIV-1 strains, including both CXCR4-tropic and CCR5-tropic primary HIV-1 isolates of the divergent subtypes A, B, C, D and CRF01_AE. In human peripheral blood mononuclear cells, the cyclic peptidomimetic L50 exhibited an IC(50) ∼250 nM. Surprisingly, inhibition of LTR-driven HIV-1 transcription could not account for the full antiviral activity. Timed drug-addition experiments revealed that L-50 has a bi-phasic inhibition curve with the first phase occurring after HIV-1 entry into the host cell and during the initiation of HIV-1 reverse transcription. The second phase coincides with inhibition of HIV-1 transcription. Reconstituted reverse transcription assays confirm that HIV-1 (−) strand strong stop DNA synthesis is blocked by L50-TAR RNA interactions in-vitro. These findings are consistent with genetic evidence that TAR plays critical roles both during reverse transcription and during HIV gene expression. Our results suggest that antiviral drugs targeting TAR RNA might be highly effective due to a dual inhibitory mechanism.
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spelling pubmed-30982022011-05-27 Inhibition of Both HIV-1 Reverse Transcription and Gene Expression by a Cyclic Peptide that Binds the Tat-Transactivating Response Element (TAR) RNA Lalonde, Matthew S. Lobritz, Michael A. Ratcliff, Annette Chamanian, Mastooreh Athanassiou, Zafiria Tyagi, Mudit Wong, Julian Robinson, John A. Karn, Jonathan Varani, Gabriele Arts, Eric J. PLoS Pathog Research Article The RNA response element TAR plays a critical role in HIV replication by providing a binding site for the recruitment of the viral transactivator protein Tat. Using a structure-guided approach, we have developed a series of conformationally-constrained cyclic peptides that act as structural mimics of the Tat RNA binding region and block Tat-TAR interactions at nanomolar concentrations in vitro. Here we show that these compounds block Tat-dependent transcription in cell-free systems and in cell-based reporter assays. The compounds are also cell permeable, have low toxicity, and inhibit replication of diverse HIV-1 strains, including both CXCR4-tropic and CCR5-tropic primary HIV-1 isolates of the divergent subtypes A, B, C, D and CRF01_AE. In human peripheral blood mononuclear cells, the cyclic peptidomimetic L50 exhibited an IC(50) ∼250 nM. Surprisingly, inhibition of LTR-driven HIV-1 transcription could not account for the full antiviral activity. Timed drug-addition experiments revealed that L-50 has a bi-phasic inhibition curve with the first phase occurring after HIV-1 entry into the host cell and during the initiation of HIV-1 reverse transcription. The second phase coincides with inhibition of HIV-1 transcription. Reconstituted reverse transcription assays confirm that HIV-1 (−) strand strong stop DNA synthesis is blocked by L50-TAR RNA interactions in-vitro. These findings are consistent with genetic evidence that TAR plays critical roles both during reverse transcription and during HIV gene expression. Our results suggest that antiviral drugs targeting TAR RNA might be highly effective due to a dual inhibitory mechanism. Public Library of Science 2011-05-19 /pmc/articles/PMC3098202/ /pubmed/21625572 http://dx.doi.org/10.1371/journal.ppat.1002038 Text en Lalonde et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lalonde, Matthew S.
Lobritz, Michael A.
Ratcliff, Annette
Chamanian, Mastooreh
Athanassiou, Zafiria
Tyagi, Mudit
Wong, Julian
Robinson, John A.
Karn, Jonathan
Varani, Gabriele
Arts, Eric J.
Inhibition of Both HIV-1 Reverse Transcription and Gene Expression by a Cyclic Peptide that Binds the Tat-Transactivating Response Element (TAR) RNA
title Inhibition of Both HIV-1 Reverse Transcription and Gene Expression by a Cyclic Peptide that Binds the Tat-Transactivating Response Element (TAR) RNA
title_full Inhibition of Both HIV-1 Reverse Transcription and Gene Expression by a Cyclic Peptide that Binds the Tat-Transactivating Response Element (TAR) RNA
title_fullStr Inhibition of Both HIV-1 Reverse Transcription and Gene Expression by a Cyclic Peptide that Binds the Tat-Transactivating Response Element (TAR) RNA
title_full_unstemmed Inhibition of Both HIV-1 Reverse Transcription and Gene Expression by a Cyclic Peptide that Binds the Tat-Transactivating Response Element (TAR) RNA
title_short Inhibition of Both HIV-1 Reverse Transcription and Gene Expression by a Cyclic Peptide that Binds the Tat-Transactivating Response Element (TAR) RNA
title_sort inhibition of both hiv-1 reverse transcription and gene expression by a cyclic peptide that binds the tat-transactivating response element (tar) rna
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3098202/
https://www.ncbi.nlm.nih.gov/pubmed/21625572
http://dx.doi.org/10.1371/journal.ppat.1002038
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