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Design, development, and validation of a strand-specific RT-qPCR assay for GI and GII human Noroviruses

Human noroviruses (HuNoV) are the major cause of viral gastroenteritis worldwide. Similar to other positive-sense single-stranded RNA viruses, norovirus RNA replication requires the formation of a negative strand RNA intermediate. Methods for detecting and quantifying the viral positive or negative...

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Autores principales: König, Katja Marie Kjara, Jahun, Aminu S., Nayak, Komal, Drumright, Lydia N., Zilbauer, Matthias, Goodfellow, Ian, Hosmillo, Myra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: F1000 Research Limited 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8506223/
https://www.ncbi.nlm.nih.gov/pubmed/34708158
http://dx.doi.org/10.12688/wellcomeopenres.17078.1
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author König, Katja Marie Kjara
Jahun, Aminu S.
Nayak, Komal
Drumright, Lydia N.
Zilbauer, Matthias
Goodfellow, Ian
Hosmillo, Myra
author_facet König, Katja Marie Kjara
Jahun, Aminu S.
Nayak, Komal
Drumright, Lydia N.
Zilbauer, Matthias
Goodfellow, Ian
Hosmillo, Myra
author_sort König, Katja Marie Kjara
collection PubMed
description Human noroviruses (HuNoV) are the major cause of viral gastroenteritis worldwide. Similar to other positive-sense single-stranded RNA viruses, norovirus RNA replication requires the formation of a negative strand RNA intermediate. Methods for detecting and quantifying the viral positive or negative sense RNA in infected cells and tissues can be used as important tools in dissecting virus replication. In this study, we have established a sensitive and strand-specific Taqman-based quantitative polymerase chain reaction (qPCR) assay for both genogroups GI and GII HuNoV. This assay shows good reproducibility, has a broad dynamic range and is able to detect a diverse range of isolates. We used tagged primers containing a non-viral sequence for the reverse transcription (RT) reaction and targeted this tag in the succeeding qPCR reaction to achieve strand specificity. The specificity of the assay was confirmed by the detection of specific viral RNA strands in the presence of high levels of the opposing strands, in both RT and qPCR reactions. Finally, we further validated the assay in norovirus replicon-bearing cell lines and norovirus-infected human small intestinal organoids, in the presence or absence of small-molecule inhibitors. Overall, we have established a strand-specific qPCR assay that can be used as a reliable method to understand the molecular details of the human norovirus life cycle.
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spelling pubmed-85062232021-10-26 Design, development, and validation of a strand-specific RT-qPCR assay for GI and GII human Noroviruses König, Katja Marie Kjara Jahun, Aminu S. Nayak, Komal Drumright, Lydia N. Zilbauer, Matthias Goodfellow, Ian Hosmillo, Myra Wellcome Open Res Method Article Human noroviruses (HuNoV) are the major cause of viral gastroenteritis worldwide. Similar to other positive-sense single-stranded RNA viruses, norovirus RNA replication requires the formation of a negative strand RNA intermediate. Methods for detecting and quantifying the viral positive or negative sense RNA in infected cells and tissues can be used as important tools in dissecting virus replication. In this study, we have established a sensitive and strand-specific Taqman-based quantitative polymerase chain reaction (qPCR) assay for both genogroups GI and GII HuNoV. This assay shows good reproducibility, has a broad dynamic range and is able to detect a diverse range of isolates. We used tagged primers containing a non-viral sequence for the reverse transcription (RT) reaction and targeted this tag in the succeeding qPCR reaction to achieve strand specificity. The specificity of the assay was confirmed by the detection of specific viral RNA strands in the presence of high levels of the opposing strands, in both RT and qPCR reactions. Finally, we further validated the assay in norovirus replicon-bearing cell lines and norovirus-infected human small intestinal organoids, in the presence or absence of small-molecule inhibitors. Overall, we have established a strand-specific qPCR assay that can be used as a reliable method to understand the molecular details of the human norovirus life cycle. F1000 Research Limited 2021-09-23 /pmc/articles/PMC8506223/ /pubmed/34708158 http://dx.doi.org/10.12688/wellcomeopenres.17078.1 Text en Copyright: © 2021 König KMK et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Method Article
König, Katja Marie Kjara
Jahun, Aminu S.
Nayak, Komal
Drumright, Lydia N.
Zilbauer, Matthias
Goodfellow, Ian
Hosmillo, Myra
Design, development, and validation of a strand-specific RT-qPCR assay for GI and GII human Noroviruses
title Design, development, and validation of a strand-specific RT-qPCR assay for GI and GII human Noroviruses
title_full Design, development, and validation of a strand-specific RT-qPCR assay for GI and GII human Noroviruses
title_fullStr Design, development, and validation of a strand-specific RT-qPCR assay for GI and GII human Noroviruses
title_full_unstemmed Design, development, and validation of a strand-specific RT-qPCR assay for GI and GII human Noroviruses
title_short Design, development, and validation of a strand-specific RT-qPCR assay for GI and GII human Noroviruses
title_sort design, development, and validation of a strand-specific rt-qpcr assay for gi and gii human noroviruses
topic Method Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8506223/
https://www.ncbi.nlm.nih.gov/pubmed/34708158
http://dx.doi.org/10.12688/wellcomeopenres.17078.1
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