Cargando…

Prolonged transcriptional silencing and CpG methylation induced by siRNAs targeted to the HIV-1 promoter region

In addition to the degradation of homologous RNAs through the RNA interference (RNAi) pathway, small interfering RNAs (siRNAs) can in some systems induce cytosine methylation and transcriptional silencing of homologous promoters. Targeting of HIV-1 by RNAi results in transient suppression of the vir...

Descripción completa

Detalles Bibliográficos
Autores principales: Suzuki, Kazuo, Shijuuku, Toshiaki, Fukamachi, Toshihiko, Zaunders, John, Guillemin, Gilles, Cooper, David, Kelleher, Anthony
Formato: Texto
Lenguaje:English
Publicado: Library Publishing Media 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2737205/
https://www.ncbi.nlm.nih.gov/pubmed/19771207
_version_ 1782171421450960896
author Suzuki, Kazuo
Shijuuku, Toshiaki
Fukamachi, Toshihiko
Zaunders, John
Guillemin, Gilles
Cooper, David
Kelleher, Anthony
author_facet Suzuki, Kazuo
Shijuuku, Toshiaki
Fukamachi, Toshihiko
Zaunders, John
Guillemin, Gilles
Cooper, David
Kelleher, Anthony
author_sort Suzuki, Kazuo
collection PubMed
description In addition to the degradation of homologous RNAs through the RNA interference (RNAi) pathway, small interfering RNAs (siRNAs) can in some systems induce cytosine methylation and transcriptional silencing of homologous promoters. Targeting of HIV-1 by RNAi results in transient suppression of the virus through degradation of viral transcripts. In an effort to prolong the suppressive effect of siRNAs on productive HIV-1 infection, we targeted conserved tandem NF-κB binding motifs in the viral LTR. A 21-nucleotide-RNA duplex induced marked and durable (at least 30 days) suppression of productive HIV-1 infection in chronically infected Magic-5 cells. This suppression is associated with CpG methylation within the 5′LTR and marked reduction of HIV-1 transcription in nuclear run-on assays. We then assessed three additional siRNAs targeting other sites within the HIV-1 promoter region. These siRNAs suppressed HIV-1 infection to different extents and the degree of suppression correlated with the extent of de novo methylation of CpG motifs within the HIV-1 promoter region. These findings indicate that HIV-1 can be silenced by an RNA-directed mechanism that suppresses transcription and induces CpG methylation. In addition to providing evidence that this RNA-directed DNA methylation is active in mammalian cells, this is the first report of prolonged suppression of HIV-1 infection induced by siRNA.
format Text
id pubmed-2737205
institution National Center for Biotechnology Information
language English
publishDate 2005
publisher Library Publishing Media
record_format MEDLINE/PubMed
spelling pubmed-27372052009-09-21 Prolonged transcriptional silencing and CpG methylation induced by siRNAs targeted to the HIV-1 promoter region Suzuki, Kazuo Shijuuku, Toshiaki Fukamachi, Toshihiko Zaunders, John Guillemin, Gilles Cooper, David Kelleher, Anthony J RNAi Gene Silencing Research Article In addition to the degradation of homologous RNAs through the RNA interference (RNAi) pathway, small interfering RNAs (siRNAs) can in some systems induce cytosine methylation and transcriptional silencing of homologous promoters. Targeting of HIV-1 by RNAi results in transient suppression of the virus through degradation of viral transcripts. In an effort to prolong the suppressive effect of siRNAs on productive HIV-1 infection, we targeted conserved tandem NF-κB binding motifs in the viral LTR. A 21-nucleotide-RNA duplex induced marked and durable (at least 30 days) suppression of productive HIV-1 infection in chronically infected Magic-5 cells. This suppression is associated with CpG methylation within the 5′LTR and marked reduction of HIV-1 transcription in nuclear run-on assays. We then assessed three additional siRNAs targeting other sites within the HIV-1 promoter region. These siRNAs suppressed HIV-1 infection to different extents and the degree of suppression correlated with the extent of de novo methylation of CpG motifs within the HIV-1 promoter region. These findings indicate that HIV-1 can be silenced by an RNA-directed mechanism that suppresses transcription and induces CpG methylation. In addition to providing evidence that this RNA-directed DNA methylation is active in mammalian cells, this is the first report of prolonged suppression of HIV-1 infection induced by siRNA. Library Publishing Media 2005-10-11 /pmc/articles/PMC2737205/ /pubmed/19771207 Text en © Copyright Kazuo Suzuki et al http://www.libpubmedia.co.uk/RNAiJ/LicenceForUsers.pdf This is an open access article, published under the terms of the Licence for Users available at http://www.libpubmedia.co.uk/RNAiJ/LicenceForUsers.pdf. This licence permits non-commercial use, distribution and reproduction of the article, provided the original work is appropriately acknowledged with correct citation details.
spellingShingle Research Article
Suzuki, Kazuo
Shijuuku, Toshiaki
Fukamachi, Toshihiko
Zaunders, John
Guillemin, Gilles
Cooper, David
Kelleher, Anthony
Prolonged transcriptional silencing and CpG methylation induced by siRNAs targeted to the HIV-1 promoter region
title Prolonged transcriptional silencing and CpG methylation induced by siRNAs targeted to the HIV-1 promoter region
title_full Prolonged transcriptional silencing and CpG methylation induced by siRNAs targeted to the HIV-1 promoter region
title_fullStr Prolonged transcriptional silencing and CpG methylation induced by siRNAs targeted to the HIV-1 promoter region
title_full_unstemmed Prolonged transcriptional silencing and CpG methylation induced by siRNAs targeted to the HIV-1 promoter region
title_short Prolonged transcriptional silencing and CpG methylation induced by siRNAs targeted to the HIV-1 promoter region
title_sort prolonged transcriptional silencing and cpg methylation induced by sirnas targeted to the hiv-1 promoter region
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2737205/
https://www.ncbi.nlm.nih.gov/pubmed/19771207
work_keys_str_mv AT suzukikazuo prolongedtranscriptionalsilencingandcpgmethylationinducedbysirnastargetedtothehiv1promoterregion
AT shijuukutoshiaki prolongedtranscriptionalsilencingandcpgmethylationinducedbysirnastargetedtothehiv1promoterregion
AT fukamachitoshihiko prolongedtranscriptionalsilencingandcpgmethylationinducedbysirnastargetedtothehiv1promoterregion
AT zaundersjohn prolongedtranscriptionalsilencingandcpgmethylationinducedbysirnastargetedtothehiv1promoterregion
AT guillemingilles prolongedtranscriptionalsilencingandcpgmethylationinducedbysirnastargetedtothehiv1promoterregion
AT cooperdavid prolongedtranscriptionalsilencingandcpgmethylationinducedbysirnastargetedtothehiv1promoterregion
AT kelleheranthony prolongedtranscriptionalsilencingandcpgmethylationinducedbysirnastargetedtothehiv1promoterregion