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A descriptive guide for absolute quantification of produced shRNA pseudotyped lentiviral particles by real-time PCR

Gene silencing techniques, including RNA interference methodologies, are widely used in reverse genetics to study the role of specific genes in biological processes. RNA interference has become easier to implement thanks to the RNAi Consortium (TRC), which has developed libraries of short hairpin RN...

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Autores principales: Mournetas, Virginie, Pereira, Sofia Melo, Fernig, David G., Murray, Patricia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: jbm 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6706118/
https://www.ncbi.nlm.nih.gov/pubmed/31453218
http://dx.doi.org/10.14440/jbm.2016.142
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author Mournetas, Virginie
Pereira, Sofia Melo
Fernig, David G.
Murray, Patricia
author_facet Mournetas, Virginie
Pereira, Sofia Melo
Fernig, David G.
Murray, Patricia
author_sort Mournetas, Virginie
collection PubMed
description Gene silencing techniques, including RNA interference methodologies, are widely used in reverse genetics to study the role of specific genes in biological processes. RNA interference has become easier to implement thanks to the RNAi Consortium (TRC), which has developed libraries of short hairpin RNA (shRNA) sequences in pseudotyped lentiviral particles capable of targeting most genes in the human and mouse genomes. However, a problem is the lack of a simple method to titrate the homemade lentiviral particle product, making it difficult to optimize and standardize shRNA experiments. Here we provide a guide describing a quick, non-laborious and reliable method for the titration of TRC pseudotyped lentiviral particles that is based on the detection and measurement of viral RNA using quantitative PCR. Our data demonstrate that purified linearized shRNA plasmids represent more suitable standards than circular or unpurified linearized plasmids. We also show that for precise absolute quantification, it is important to determine suitable plasmid and viral cDNA concentrations in order to find the linear range for quantification, as well as to reduce inhibition and primer dimer amplification. Finally, we show that the lentivirus concentration impacts the level of knockdown in transduced cells. Primers utilized in this non-functional titration can potentially be applied to functional titration of proviral DNA copies or transgene expression, overcoming problems arising from the absence of fluorescent reporter genes in TRC plasmids.
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spelling pubmed-67061182019-08-26 A descriptive guide for absolute quantification of produced shRNA pseudotyped lentiviral particles by real-time PCR Mournetas, Virginie Pereira, Sofia Melo Fernig, David G. Murray, Patricia J Biol Methods Protocol Gene silencing techniques, including RNA interference methodologies, are widely used in reverse genetics to study the role of specific genes in biological processes. RNA interference has become easier to implement thanks to the RNAi Consortium (TRC), which has developed libraries of short hairpin RNA (shRNA) sequences in pseudotyped lentiviral particles capable of targeting most genes in the human and mouse genomes. However, a problem is the lack of a simple method to titrate the homemade lentiviral particle product, making it difficult to optimize and standardize shRNA experiments. Here we provide a guide describing a quick, non-laborious and reliable method for the titration of TRC pseudotyped lentiviral particles that is based on the detection and measurement of viral RNA using quantitative PCR. Our data demonstrate that purified linearized shRNA plasmids represent more suitable standards than circular or unpurified linearized plasmids. We also show that for precise absolute quantification, it is important to determine suitable plasmid and viral cDNA concentrations in order to find the linear range for quantification, as well as to reduce inhibition and primer dimer amplification. Finally, we show that the lentivirus concentration impacts the level of knockdown in transduced cells. Primers utilized in this non-functional titration can potentially be applied to functional titration of proviral DNA copies or transgene expression, overcoming problems arising from the absence of fluorescent reporter genes in TRC plasmids. jbm 2016-10-04 /pmc/articles/PMC6706118/ /pubmed/31453218 http://dx.doi.org/10.14440/jbm.2016.142 Text en This work is licensed under a Creative Commons Attribution 3.0 License (http://creativecommons.org/licenses/by/3.0) .
spellingShingle Protocol
Mournetas, Virginie
Pereira, Sofia Melo
Fernig, David G.
Murray, Patricia
A descriptive guide for absolute quantification of produced shRNA pseudotyped lentiviral particles by real-time PCR
title A descriptive guide for absolute quantification of produced shRNA pseudotyped lentiviral particles by real-time PCR
title_full A descriptive guide for absolute quantification of produced shRNA pseudotyped lentiviral particles by real-time PCR
title_fullStr A descriptive guide for absolute quantification of produced shRNA pseudotyped lentiviral particles by real-time PCR
title_full_unstemmed A descriptive guide for absolute quantification of produced shRNA pseudotyped lentiviral particles by real-time PCR
title_short A descriptive guide for absolute quantification of produced shRNA pseudotyped lentiviral particles by real-time PCR
title_sort descriptive guide for absolute quantification of produced shrna pseudotyped lentiviral particles by real-time pcr
topic Protocol
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6706118/
https://www.ncbi.nlm.nih.gov/pubmed/31453218
http://dx.doi.org/10.14440/jbm.2016.142
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