Mutation detection by real-time PCR: a simple, robust and highly selective method.

BACKGROUND: Molecular tests for diagnosis of disease, particularly cancer, are gaining increased acceptance by physicians and their patients for disease prognosis and selection of treatment options. Gene expression profiles and genetic mutations are key parameters used for the molecular characteriza...

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Main Authors: John Morlan, Joffre Baker, Dominick Sinicropi
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2642996?pdf=render
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spelling doaj-9c2007c0c0e34f178875df8880e811fc2020-11-24T21:48:32ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-01-0142e458410.1371/journal.pone.0004584Mutation detection by real-time PCR: a simple, robust and highly selective method.John MorlanJoffre BakerDominick SinicropiBACKGROUND: Molecular tests for diagnosis of disease, particularly cancer, are gaining increased acceptance by physicians and their patients for disease prognosis and selection of treatment options. Gene expression profiles and genetic mutations are key parameters used for the molecular characterization of tumors. A variety of methods exist for mutation analysis but the development of assays with high selectivity tends to require a process of trial and error, and few are compatible with real-time PCR. We sought to develop a real-time PCR-based mutation assay methodology that successfully addresses these issues. METHODOLOGY/PRINCIPAL FINDINGS: The method we describe is based on the widely used TaqMan real-time PCR technology, and combines Allele-Specific PCR with a Blocking reagent (ASB-PCR) to suppress amplification of the wildype allele. ASB-PCR can be used for detection of germ line or somatic mutations in either DNA or RNA extracted from any type of tissue, including formalin-fixed paraffin-embedded tumor specimens. A set of reagent design rules was developed enabling sensitive and selective detection of single point substitutions, insertions, or deletions against a background of wild-type allele in thousand-fold or greater excess. CONCLUSIONS/SIGNIFICANCE: ASB-PCR is a simple and robust method for assaying single nucleotide mutations and polymorphisms within the widely used TaqMan protocol for real time RT-PCR. The ASB-PCR design rules consistently produce highly selective mutation assays while obviating the need for redesign and optimization of the assay reagents. The method is compatible with formalin-fixed tissue and simultaneous analysis of gene expression by RT-PCR on the same plate. No proprietary reagents other than those for TaqMan chemistry are required, so the method can be performed in any research laboratory with real-time PCR capability.http://europepmc.org/articles/PMC2642996?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author John Morlan
Joffre Baker
Dominick Sinicropi
spellingShingle John Morlan
Joffre Baker
Dominick Sinicropi
Mutation detection by real-time PCR: a simple, robust and highly selective method.
PLoS ONE
author_facet John Morlan
Joffre Baker
Dominick Sinicropi
author_sort John Morlan
title Mutation detection by real-time PCR: a simple, robust and highly selective method.
title_short Mutation detection by real-time PCR: a simple, robust and highly selective method.
title_full Mutation detection by real-time PCR: a simple, robust and highly selective method.
title_fullStr Mutation detection by real-time PCR: a simple, robust and highly selective method.
title_full_unstemmed Mutation detection by real-time PCR: a simple, robust and highly selective method.
title_sort mutation detection by real-time pcr: a simple, robust and highly selective method.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2009-01-01
description BACKGROUND: Molecular tests for diagnosis of disease, particularly cancer, are gaining increased acceptance by physicians and their patients for disease prognosis and selection of treatment options. Gene expression profiles and genetic mutations are key parameters used for the molecular characterization of tumors. A variety of methods exist for mutation analysis but the development of assays with high selectivity tends to require a process of trial and error, and few are compatible with real-time PCR. We sought to develop a real-time PCR-based mutation assay methodology that successfully addresses these issues. METHODOLOGY/PRINCIPAL FINDINGS: The method we describe is based on the widely used TaqMan real-time PCR technology, and combines Allele-Specific PCR with a Blocking reagent (ASB-PCR) to suppress amplification of the wildype allele. ASB-PCR can be used for detection of germ line or somatic mutations in either DNA or RNA extracted from any type of tissue, including formalin-fixed paraffin-embedded tumor specimens. A set of reagent design rules was developed enabling sensitive and selective detection of single point substitutions, insertions, or deletions against a background of wild-type allele in thousand-fold or greater excess. CONCLUSIONS/SIGNIFICANCE: ASB-PCR is a simple and robust method for assaying single nucleotide mutations and polymorphisms within the widely used TaqMan protocol for real time RT-PCR. The ASB-PCR design rules consistently produce highly selective mutation assays while obviating the need for redesign and optimization of the assay reagents. The method is compatible with formalin-fixed tissue and simultaneous analysis of gene expression by RT-PCR on the same plate. No proprietary reagents other than those for TaqMan chemistry are required, so the method can be performed in any research laboratory with real-time PCR capability.
url http://europepmc.org/articles/PMC2642996?pdf=render
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