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Accessing a New Dimension in TP53 Biology: Multiplex Long Amplicon Digital PCR to Specifically Detect and Quantitate Individual TP53 Transcripts

TP53, the most commonly-mutated gene in cancer, undergoes complex alternative splicing. Different TP53 transcripts play different biological roles, both in normal function and in the progression of diseases such as cancer. The study of TP53’s alternative RNA splice forms and their use as clinical bi...

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Autores principales: Lasham, Annette, Tsai, Peter, Fitzgerald, Sandra J., Mehta, Sunali Y., Knowlton, Nicholas S., Braithwaite, Antony W., Print, Cristin G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7140069/
https://www.ncbi.nlm.nih.gov/pubmed/32213968
http://dx.doi.org/10.3390/cancers12030769
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author Lasham, Annette
Tsai, Peter
Fitzgerald, Sandra J.
Mehta, Sunali Y.
Knowlton, Nicholas S.
Braithwaite, Antony W.
Print, Cristin G.
author_facet Lasham, Annette
Tsai, Peter
Fitzgerald, Sandra J.
Mehta, Sunali Y.
Knowlton, Nicholas S.
Braithwaite, Antony W.
Print, Cristin G.
author_sort Lasham, Annette
collection PubMed
description TP53, the most commonly-mutated gene in cancer, undergoes complex alternative splicing. Different TP53 transcripts play different biological roles, both in normal function and in the progression of diseases such as cancer. The study of TP53’s alternative RNA splice forms and their use as clinical biomarkers has been hampered by limited specificity and quantitative accuracy of current methods. TP53 RNA splice variants differ at both 5’ and 3’ ends, but because they have a common central region of 618 bp, the individual TP53 transcripts are impossible to specifically detect and precisely quantitate using standard PCR-based methods or short-read RNA sequencing. Therefore, we devised multiplex probe-based long amplicon droplet digital PCR (ddPCR) assays, which for the first time allow precise end-to-end quantitation of the seven major TP53 transcripts, with amplicons ranging from 0.85 to 1.85 kb. Multiple modifications to standard ddPCR assay procedures were required to enable specific co-amplification of these long transcripts and to overcome issues with secondary structure. Using these assays, we show that several TP53 transcripts are co-expressed in breast cancers, and illustrate the potential for this method to identify novel TP53 transcripts in tumour cells. This capability will facilitate a new level of biological and clinical understanding of the alternatively-spliced TP53 isoforms.
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spelling pubmed-71400692020-04-13 Accessing a New Dimension in TP53 Biology: Multiplex Long Amplicon Digital PCR to Specifically Detect and Quantitate Individual TP53 Transcripts Lasham, Annette Tsai, Peter Fitzgerald, Sandra J. Mehta, Sunali Y. Knowlton, Nicholas S. Braithwaite, Antony W. Print, Cristin G. Cancers (Basel) Article TP53, the most commonly-mutated gene in cancer, undergoes complex alternative splicing. Different TP53 transcripts play different biological roles, both in normal function and in the progression of diseases such as cancer. The study of TP53’s alternative RNA splice forms and their use as clinical biomarkers has been hampered by limited specificity and quantitative accuracy of current methods. TP53 RNA splice variants differ at both 5’ and 3’ ends, but because they have a common central region of 618 bp, the individual TP53 transcripts are impossible to specifically detect and precisely quantitate using standard PCR-based methods or short-read RNA sequencing. Therefore, we devised multiplex probe-based long amplicon droplet digital PCR (ddPCR) assays, which for the first time allow precise end-to-end quantitation of the seven major TP53 transcripts, with amplicons ranging from 0.85 to 1.85 kb. Multiple modifications to standard ddPCR assay procedures were required to enable specific co-amplification of these long transcripts and to overcome issues with secondary structure. Using these assays, we show that several TP53 transcripts are co-expressed in breast cancers, and illustrate the potential for this method to identify novel TP53 transcripts in tumour cells. This capability will facilitate a new level of biological and clinical understanding of the alternatively-spliced TP53 isoforms. MDPI 2020-03-24 /pmc/articles/PMC7140069/ /pubmed/32213968 http://dx.doi.org/10.3390/cancers12030769 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lasham, Annette
Tsai, Peter
Fitzgerald, Sandra J.
Mehta, Sunali Y.
Knowlton, Nicholas S.
Braithwaite, Antony W.
Print, Cristin G.
Accessing a New Dimension in TP53 Biology: Multiplex Long Amplicon Digital PCR to Specifically Detect and Quantitate Individual TP53 Transcripts
title Accessing a New Dimension in TP53 Biology: Multiplex Long Amplicon Digital PCR to Specifically Detect and Quantitate Individual TP53 Transcripts
title_full Accessing a New Dimension in TP53 Biology: Multiplex Long Amplicon Digital PCR to Specifically Detect and Quantitate Individual TP53 Transcripts
title_fullStr Accessing a New Dimension in TP53 Biology: Multiplex Long Amplicon Digital PCR to Specifically Detect and Quantitate Individual TP53 Transcripts
title_full_unstemmed Accessing a New Dimension in TP53 Biology: Multiplex Long Amplicon Digital PCR to Specifically Detect and Quantitate Individual TP53 Transcripts
title_short Accessing a New Dimension in TP53 Biology: Multiplex Long Amplicon Digital PCR to Specifically Detect and Quantitate Individual TP53 Transcripts
title_sort accessing a new dimension in tp53 biology: multiplex long amplicon digital pcr to specifically detect and quantitate individual tp53 transcripts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7140069/
https://www.ncbi.nlm.nih.gov/pubmed/32213968
http://dx.doi.org/10.3390/cancers12030769
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