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Arginine rich short linear motif of HIV-1 regulatory proteins inhibits Dicer dependent RNA interference

BACKGROUND: Arginine Rich Motif (ARM) of HIV-1 Tat and Rev are extensively studied linear motifs (LMs). They are already established as an inefficient bipartite nuclear localisation signal (NLS). The unusual passive diffusion of HIV-1 NLS tagged reporter proteins across the nucleus is due to an unkn...

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Autores principales: Ponia, Sanket Singh, Arora, Sakshi, Kumar, Binod, Banerjea, Akhil C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3848888/
https://www.ncbi.nlm.nih.gov/pubmed/24025624
http://dx.doi.org/10.1186/1742-4690-10-97
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author Ponia, Sanket Singh
Arora, Sakshi
Kumar, Binod
Banerjea, Akhil C
author_facet Ponia, Sanket Singh
Arora, Sakshi
Kumar, Binod
Banerjea, Akhil C
author_sort Ponia, Sanket Singh
collection PubMed
description BACKGROUND: Arginine Rich Motif (ARM) of HIV-1 Tat and Rev are extensively studied linear motifs (LMs). They are already established as an inefficient bipartite nuclear localisation signal (NLS). The unusual passive diffusion of HIV-1 NLS tagged reporter proteins across the nucleus is due to an unknown competing functionality of ARM. Recent findings about the role of retroviral proteins as a suppressor of RNA interference (RNAi) involving their basic residues hint an interesting answer to this alternate functionality. The present work explores the role of HIV-1 ARM as a uniquely evolved viral motif to combat Dicer dependent RNAi. RESULTS: We show that RNA binding ARM of both HIV-1 Tat and Rev is a LM with a pattern RXXRRXRRR unique to viruses. Extending the in silico results to wet lab, we proved both HIV-1 Tat and Rev can suppress Dicer dependent RNA silencing process involving ARM. We show, HIV-1 Tat and Rev and their corresponding ARM can bind the RISC loading complex (RLC) components TRBP and PACT confirming ARM as an independent RNAi suppression motif. Enhancement of RNAi in infection scenario through enoxacin increases HIV-1 replication as indicated by p24 levels. Except Dicer, all other cytoplasmic RNAi components enhance HIV-1 replication, indicating crucial role of Dicer independent (Ago2 dependent) RNAi pathway in HIV-1 infection. Sequence and structural analysis of endo/exo-microRNA precursors known to be regulated in HIV-1 infection highlights differential features of microRNA biogenesis. One such set of miRNA is viral TAR encoded HIV-1-miR-TAR-5p (Tar1) and HIV-1-miR-TAR-3p (Tar2) that are known to be present throughout the HIV-1 life cycle. Our qPCR results showed that enoxacin increases Tar2 miRNA level which is interesting as Tar2 precursor shows Ago2 dependent processing features. CONCLUSIONS: We establish HIV-1 ARM as a novel viral motif evolved to target the Dicer dependent RNAi pathway. The conservation of such motif in other viral proteins possibly explains the potent suppression of Dicer dependent RNAi. Our model argues that HIV-1 suppress the processing of siRNAs through inhibition of Dicer while at the same time manipulates the RNAi machinery to process miRNA involved in HIV-1 replication from Dicer independent pathways.
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spelling pubmed-38488882013-12-04 Arginine rich short linear motif of HIV-1 regulatory proteins inhibits Dicer dependent RNA interference Ponia, Sanket Singh Arora, Sakshi Kumar, Binod Banerjea, Akhil C Retrovirology Research BACKGROUND: Arginine Rich Motif (ARM) of HIV-1 Tat and Rev are extensively studied linear motifs (LMs). They are already established as an inefficient bipartite nuclear localisation signal (NLS). The unusual passive diffusion of HIV-1 NLS tagged reporter proteins across the nucleus is due to an unknown competing functionality of ARM. Recent findings about the role of retroviral proteins as a suppressor of RNA interference (RNAi) involving their basic residues hint an interesting answer to this alternate functionality. The present work explores the role of HIV-1 ARM as a uniquely evolved viral motif to combat Dicer dependent RNAi. RESULTS: We show that RNA binding ARM of both HIV-1 Tat and Rev is a LM with a pattern RXXRRXRRR unique to viruses. Extending the in silico results to wet lab, we proved both HIV-1 Tat and Rev can suppress Dicer dependent RNA silencing process involving ARM. We show, HIV-1 Tat and Rev and their corresponding ARM can bind the RISC loading complex (RLC) components TRBP and PACT confirming ARM as an independent RNAi suppression motif. Enhancement of RNAi in infection scenario through enoxacin increases HIV-1 replication as indicated by p24 levels. Except Dicer, all other cytoplasmic RNAi components enhance HIV-1 replication, indicating crucial role of Dicer independent (Ago2 dependent) RNAi pathway in HIV-1 infection. Sequence and structural analysis of endo/exo-microRNA precursors known to be regulated in HIV-1 infection highlights differential features of microRNA biogenesis. One such set of miRNA is viral TAR encoded HIV-1-miR-TAR-5p (Tar1) and HIV-1-miR-TAR-3p (Tar2) that are known to be present throughout the HIV-1 life cycle. Our qPCR results showed that enoxacin increases Tar2 miRNA level which is interesting as Tar2 precursor shows Ago2 dependent processing features. CONCLUSIONS: We establish HIV-1 ARM as a novel viral motif evolved to target the Dicer dependent RNAi pathway. The conservation of such motif in other viral proteins possibly explains the potent suppression of Dicer dependent RNAi. Our model argues that HIV-1 suppress the processing of siRNAs through inhibition of Dicer while at the same time manipulates the RNAi machinery to process miRNA involved in HIV-1 replication from Dicer independent pathways. BioMed Central 2013-09-11 /pmc/articles/PMC3848888/ /pubmed/24025624 http://dx.doi.org/10.1186/1742-4690-10-97 Text en Copyright © 2013 Ponia 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
Ponia, Sanket Singh
Arora, Sakshi
Kumar, Binod
Banerjea, Akhil C
Arginine rich short linear motif of HIV-1 regulatory proteins inhibits Dicer dependent RNA interference
title Arginine rich short linear motif of HIV-1 regulatory proteins inhibits Dicer dependent RNA interference
title_full Arginine rich short linear motif of HIV-1 regulatory proteins inhibits Dicer dependent RNA interference
title_fullStr Arginine rich short linear motif of HIV-1 regulatory proteins inhibits Dicer dependent RNA interference
title_full_unstemmed Arginine rich short linear motif of HIV-1 regulatory proteins inhibits Dicer dependent RNA interference
title_short Arginine rich short linear motif of HIV-1 regulatory proteins inhibits Dicer dependent RNA interference
title_sort arginine rich short linear motif of hiv-1 regulatory proteins inhibits dicer dependent rna interference
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3848888/
https://www.ncbi.nlm.nih.gov/pubmed/24025624
http://dx.doi.org/10.1186/1742-4690-10-97
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