Cargando…

Off Target, but Sequence-Specific, shRNA-Associated Trans-Activation of Promoter Reporters in Transient Transfection Assays

Transient transfection promoter reporter assays are commonly used in the study of transcriptional regulation, and can be used to define and characterize both cis-acting regulatory sequences and trans-acting factors. In the process of using a variety of reporter assays designed to study regulation of...

Descripción completa

Detalles Bibliográficos
Autores principales: Masuda, Tomohiro, Wan, Jun, Yerrabelli, Anitha, Berlinicke, Cindy, Kallman, Alyssa, Qian, Jiang, Zack, Donald J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5158200/
https://www.ncbi.nlm.nih.gov/pubmed/27977714
http://dx.doi.org/10.1371/journal.pone.0167867
_version_ 1782481579493294080
author Masuda, Tomohiro
Wan, Jun
Yerrabelli, Anitha
Berlinicke, Cindy
Kallman, Alyssa
Qian, Jiang
Zack, Donald J.
author_facet Masuda, Tomohiro
Wan, Jun
Yerrabelli, Anitha
Berlinicke, Cindy
Kallman, Alyssa
Qian, Jiang
Zack, Donald J.
author_sort Masuda, Tomohiro
collection PubMed
description Transient transfection promoter reporter assays are commonly used in the study of transcriptional regulation, and can be used to define and characterize both cis-acting regulatory sequences and trans-acting factors. In the process of using a variety of reporter assays designed to study regulation of the rhodopsin (rho) promoter, we discovered that rhodopsin promoter-driven reporter expression could be activated by certain species of shRNA in a gene-target-independent but shRNA sequence-specific manner, suggesting involvement of a specific shRNA associated pathway. Interestingly, the shRNA-mediated increase of rhodopsin promoter activity was synergistically enhanced by the rhodopsin transcriptional regulators CRX and NRL. Additionally, the effect was cell line-dependent, suggesting that this pathway requires the expression of cell-type specific factors. Since microRNA (miRNA) and interferon response-mediated processes have been implicated in RNAi off-target phenomena, we performed miRNA and gene expression profiling on cells transfected with shRNAs that do target a specific gene but have varied effects on rho reporter expression in order to identify transcripts whose expression levels are associated with shRNA induced rhodopsin promoter reporter activity. We identified a total of 50 miRNA species, and by microarray analysis, 320 protein-coding genes, some of which were predicted targets of the identified differentially expressed miRNAs, whose expression was altered in the presence of shRNAs that stimulated rhodopsin-promoter activity in a non-gene-targeting manner. Consistent with earlier studies on shRNA off-target effects, a number of interferon response genes were among those identified to be upregulated. Taken together, our results confirm the importance of considering off-target effects when interpreting data from RNAi experiments and extend prior results by focusing on the importance of including multiple and carefully designed controls in the design and analysis of the effects of shRNA on transient transfection-based transcriptional assays.
format Online
Article
Text
id pubmed-5158200
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-51582002016-12-21 Off Target, but Sequence-Specific, shRNA-Associated Trans-Activation of Promoter Reporters in Transient Transfection Assays Masuda, Tomohiro Wan, Jun Yerrabelli, Anitha Berlinicke, Cindy Kallman, Alyssa Qian, Jiang Zack, Donald J. PLoS One Research Article Transient transfection promoter reporter assays are commonly used in the study of transcriptional regulation, and can be used to define and characterize both cis-acting regulatory sequences and trans-acting factors. In the process of using a variety of reporter assays designed to study regulation of the rhodopsin (rho) promoter, we discovered that rhodopsin promoter-driven reporter expression could be activated by certain species of shRNA in a gene-target-independent but shRNA sequence-specific manner, suggesting involvement of a specific shRNA associated pathway. Interestingly, the shRNA-mediated increase of rhodopsin promoter activity was synergistically enhanced by the rhodopsin transcriptional regulators CRX and NRL. Additionally, the effect was cell line-dependent, suggesting that this pathway requires the expression of cell-type specific factors. Since microRNA (miRNA) and interferon response-mediated processes have been implicated in RNAi off-target phenomena, we performed miRNA and gene expression profiling on cells transfected with shRNAs that do target a specific gene but have varied effects on rho reporter expression in order to identify transcripts whose expression levels are associated with shRNA induced rhodopsin promoter reporter activity. We identified a total of 50 miRNA species, and by microarray analysis, 320 protein-coding genes, some of which were predicted targets of the identified differentially expressed miRNAs, whose expression was altered in the presence of shRNAs that stimulated rhodopsin-promoter activity in a non-gene-targeting manner. Consistent with earlier studies on shRNA off-target effects, a number of interferon response genes were among those identified to be upregulated. Taken together, our results confirm the importance of considering off-target effects when interpreting data from RNAi experiments and extend prior results by focusing on the importance of including multiple and carefully designed controls in the design and analysis of the effects of shRNA on transient transfection-based transcriptional assays. Public Library of Science 2016-12-15 /pmc/articles/PMC5158200/ /pubmed/27977714 http://dx.doi.org/10.1371/journal.pone.0167867 Text en © 2016 Masuda 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Masuda, Tomohiro
Wan, Jun
Yerrabelli, Anitha
Berlinicke, Cindy
Kallman, Alyssa
Qian, Jiang
Zack, Donald J.
Off Target, but Sequence-Specific, shRNA-Associated Trans-Activation of Promoter Reporters in Transient Transfection Assays
title Off Target, but Sequence-Specific, shRNA-Associated Trans-Activation of Promoter Reporters in Transient Transfection Assays
title_full Off Target, but Sequence-Specific, shRNA-Associated Trans-Activation of Promoter Reporters in Transient Transfection Assays
title_fullStr Off Target, but Sequence-Specific, shRNA-Associated Trans-Activation of Promoter Reporters in Transient Transfection Assays
title_full_unstemmed Off Target, but Sequence-Specific, shRNA-Associated Trans-Activation of Promoter Reporters in Transient Transfection Assays
title_short Off Target, but Sequence-Specific, shRNA-Associated Trans-Activation of Promoter Reporters in Transient Transfection Assays
title_sort off target, but sequence-specific, shrna-associated trans-activation of promoter reporters in transient transfection assays
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5158200/
https://www.ncbi.nlm.nih.gov/pubmed/27977714
http://dx.doi.org/10.1371/journal.pone.0167867
work_keys_str_mv AT masudatomohiro offtargetbutsequencespecificshrnaassociatedtransactivationofpromoterreportersintransienttransfectionassays
AT wanjun offtargetbutsequencespecificshrnaassociatedtransactivationofpromoterreportersintransienttransfectionassays
AT yerrabellianitha offtargetbutsequencespecificshrnaassociatedtransactivationofpromoterreportersintransienttransfectionassays
AT berlinickecindy offtargetbutsequencespecificshrnaassociatedtransactivationofpromoterreportersintransienttransfectionassays
AT kallmanalyssa offtargetbutsequencespecificshrnaassociatedtransactivationofpromoterreportersintransienttransfectionassays
AT qianjiang offtargetbutsequencespecificshrnaassociatedtransactivationofpromoterreportersintransienttransfectionassays
AT zackdonaldj offtargetbutsequencespecificshrnaassociatedtransactivationofpromoterreportersintransienttransfectionassays