The HIV-1 transactivator protein Tat interacts with the transactivation response element (TAR) at the three-nucleotide UCU bulge to facilitate the recruitment of transcription elongation factor-b (P-TEFb) and induce the transcription of the integrated proviral genome. Therefore, the Tat-TAR interaction, unique to the virus, is a promising target for developing antiviral therapeutics. Currently, there are no FDA-approved drugs against HIV-1 transcription, suggesting the need to develop novel inhibitors that specifically target HIV-1 transcription. We have identified potential candidates that effectively inhibit viral transcription in myeloid and T cells without apparent toxicity. Among these candidates, two molecules showed inhibition of viral protein expression. A molecular docking and simulation approach was used to determine the binding dynamics of these small molecules on TAR RNA in the presence of the P-TEFb complex, which was further validated by a biotinylated RNA pulldown assay. Furthermore, we examined the effect of these molecules on transcription factors, including the SWI/SNF complex (BAF or PBAF), which plays an important role in chromatin remodeling near the transcription start site and hence regulates virus transcription. The top candidates showed significant viral transcription inhibition in primary cells infected with HIV-1 (98.6). Collectively, our study identified potential transcription inhibitors that can potentially complement existing cART drugs to address the current therapeutic gap in current regimens. Additionally, shifting of the TAR RNA loop towards Cyclin T1 upon molecule binding during molecular simulation studies suggested that targeting the TAR loop and Tat-binding UCU bulge together should be an essential feature of TAR-binding molecules/inhibitors to achieve complete viral transcription inhibition.
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NCI, HIV Drug Resistance Program, Frederick, MD 21701 USANCI, HIV Drug Resistance Program, Frederick, MD 21701 USA
Sztuba-Solinska, Joanna
Shenoy, Shilpa R.
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NCI, Mol Targets Lab, Frederick, MD 21701 USA
Frederick Natl Lab, Leidos Biomed Res Inc, Frederick, MD USANCI, HIV Drug Resistance Program, Frederick, MD 21701 USA
Shenoy, Shilpa R.
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Gareiss, Peter
Krumpe, Lauren R. H.
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机构:
NCI, Mol Targets Lab, Frederick, MD 21701 USA
Frederick Natl Lab, Leidos Biomed Res Inc, Frederick, MD USANCI, HIV Drug Resistance Program, Frederick, MD 21701 USA
Krumpe, Lauren R. H.
Le Grice, Stuart F. J.
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NCI, HIV Drug Resistance Program, Frederick, MD 21701 USANCI, HIV Drug Resistance Program, Frederick, MD 21701 USA
Le Grice, Stuart F. J.
O'Keefe, Barry R.
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NCI, Mol Targets Lab, Frederick, MD 21701 USANCI, HIV Drug Resistance Program, Frederick, MD 21701 USA
O'Keefe, Barry R.
Schneekloth, John S., Jr.
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NCI, Biol Chem Lab, Frederick, MD 21701 USANCI, HIV Drug Resistance Program, Frederick, MD 21701 USA
机构:
Univ Chile, Fac Med, Lab Mol & Cellular Virol, Inst Biomed Sci, Santiago 8380453, Chile
Univ Chile, Fac Med, Ctr HIV AIDS Integral Res CHAIR, Santiago 8380453, Chile
Millennium Inst Immunol & Immunotherapy, Santiago 8380453, ChileUniv Chile, Fac Med, Lab Mol & Cellular Virol, Inst Biomed Sci, Santiago 8380453, Chile
Giraldo-Ocampo, Sebastian
Valiente-Echeverria, Fernando
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Univ Chile, Fac Med, Lab Mol & Cellular Virol, Inst Biomed Sci, Santiago 8380453, Chile
Univ Chile, Fac Med, Ctr HIV AIDS Integral Res CHAIR, Santiago 8380453, Chile
Millennium Inst Immunol & Immunotherapy, Santiago 8380453, ChileUniv Chile, Fac Med, Lab Mol & Cellular Virol, Inst Biomed Sci, Santiago 8380453, Chile
Valiente-Echeverria, Fernando
Soto-Rifo, Ricardo
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Univ Chile, Fac Med, Lab Mol & Cellular Virol, Inst Biomed Sci, Santiago 8380453, Chile
Univ Chile, Fac Med, Ctr HIV AIDS Integral Res CHAIR, Santiago 8380453, Chile
Millennium Inst Immunol & Immunotherapy, Santiago 8380453, ChileUniv Chile, Fac Med, Lab Mol & Cellular Virol, Inst Biomed Sci, Santiago 8380453, Chile