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Reporter Gene-Based qRT-PCR Assay for Rho-Dependent Termination In Vivo

In bacteria, the Rho protein mediates Rho-dependent termination (RDT) by identifying a non-specific cytosine-rich Rho utilization site on the newly synthesized RNA. As a result of RDT, downstream RNA transcription is reduced. Due to the bias in reverse transcription and PCR amplification, we could n...

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Autores principales: N, Monford Paul Abishek, Jeon, Heungjin, Wang, Xun, Lim, Heon M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10670590/
https://www.ncbi.nlm.nih.gov/pubmed/37998331
http://dx.doi.org/10.3390/cells12222596
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author N, Monford Paul Abishek
Jeon, Heungjin
Wang, Xun
Lim, Heon M.
author_facet N, Monford Paul Abishek
Jeon, Heungjin
Wang, Xun
Lim, Heon M.
author_sort N, Monford Paul Abishek
collection PubMed
description In bacteria, the Rho protein mediates Rho-dependent termination (RDT) by identifying a non-specific cytosine-rich Rho utilization site on the newly synthesized RNA. As a result of RDT, downstream RNA transcription is reduced. Due to the bias in reverse transcription and PCR amplification, we could not identify the RDT site by directly measuring the amount of mRNA upstream and downstream of RDT sites. To overcome this difficulty, we employed a 77 bp reporter gene argX, (coding tRNA(arg)) from Brevibacterium albidum, and we transcriptionally fused it to the sequences to be assayed. We constructed a series of plasmids by combining a segment of the galactose (gal) operon sequences, both with and without the RDT regions at the ends of cistrons (galE, galT, and galM) upstream of argX. The RNA polymerase will transcribe the gal operon sequence and argX unless it encounters the RDT encoded by the inserted sequence. Since the quantitative real-time PCR (qRT-PCR) method detects the steady state following mRNA synthesis and degradation, we observed that tRNA(arg) is degraded at the same rate in these transcriptional fusion plasmids. Therefore, the amount of tRNA(arg) can directly reflect the mRNA synthesis. Using this approach, we were able to effectively assay the RDTs and Rho-independent termination (RIT) in the gal operon by quantifying the relative amount of tRNA(arg) using qRT-PCR analyses. The resultant RDT% for galET, galTK, and at the end of galM were 36, 26, and 63, individually. The resultant RIT% at the end of the gal operon is 33%. Our findings demonstrate that combining tRNA(arg) with qRT-PCR can directly measure RIT, RDT, or any other signal that attenuates transcription efficiencies in vivo, making it a useful tool for gene expression research.
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spelling pubmed-106705902023-11-09 Reporter Gene-Based qRT-PCR Assay for Rho-Dependent Termination In Vivo N, Monford Paul Abishek Jeon, Heungjin Wang, Xun Lim, Heon M. Cells Article In bacteria, the Rho protein mediates Rho-dependent termination (RDT) by identifying a non-specific cytosine-rich Rho utilization site on the newly synthesized RNA. As a result of RDT, downstream RNA transcription is reduced. Due to the bias in reverse transcription and PCR amplification, we could not identify the RDT site by directly measuring the amount of mRNA upstream and downstream of RDT sites. To overcome this difficulty, we employed a 77 bp reporter gene argX, (coding tRNA(arg)) from Brevibacterium albidum, and we transcriptionally fused it to the sequences to be assayed. We constructed a series of plasmids by combining a segment of the galactose (gal) operon sequences, both with and without the RDT regions at the ends of cistrons (galE, galT, and galM) upstream of argX. The RNA polymerase will transcribe the gal operon sequence and argX unless it encounters the RDT encoded by the inserted sequence. Since the quantitative real-time PCR (qRT-PCR) method detects the steady state following mRNA synthesis and degradation, we observed that tRNA(arg) is degraded at the same rate in these transcriptional fusion plasmids. Therefore, the amount of tRNA(arg) can directly reflect the mRNA synthesis. Using this approach, we were able to effectively assay the RDTs and Rho-independent termination (RIT) in the gal operon by quantifying the relative amount of tRNA(arg) using qRT-PCR analyses. The resultant RDT% for galET, galTK, and at the end of galM were 36, 26, and 63, individually. The resultant RIT% at the end of the gal operon is 33%. Our findings demonstrate that combining tRNA(arg) with qRT-PCR can directly measure RIT, RDT, or any other signal that attenuates transcription efficiencies in vivo, making it a useful tool for gene expression research. MDPI 2023-11-09 /pmc/articles/PMC10670590/ /pubmed/37998331 http://dx.doi.org/10.3390/cells12222596 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
N, Monford Paul Abishek
Jeon, Heungjin
Wang, Xun
Lim, Heon M.
Reporter Gene-Based qRT-PCR Assay for Rho-Dependent Termination In Vivo
title Reporter Gene-Based qRT-PCR Assay for Rho-Dependent Termination In Vivo
title_full Reporter Gene-Based qRT-PCR Assay for Rho-Dependent Termination In Vivo
title_fullStr Reporter Gene-Based qRT-PCR Assay for Rho-Dependent Termination In Vivo
title_full_unstemmed Reporter Gene-Based qRT-PCR Assay for Rho-Dependent Termination In Vivo
title_short Reporter Gene-Based qRT-PCR Assay for Rho-Dependent Termination In Vivo
title_sort reporter gene-based qrt-pcr assay for rho-dependent termination in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10670590/
https://www.ncbi.nlm.nih.gov/pubmed/37998331
http://dx.doi.org/10.3390/cells12222596
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