A novel method for real time quantitative RT-PCR.
Open Access
- 1 October 1996
- journal article
- Published by Cold Spring Harbor Laboratory in Genome Research
- Vol. 6 (10) , 995-1001
- https://doi.org/10.1101/gr.6.10.995
Abstract
A novel approach to quantitative reverse transcriptase polymerase chain reaction (QC RT-PCR) using real time detection and the 5' nuclease assay has been developed. Cystic fibrosis transmembrane transductance regulator (CFTR) target mRNA is reverse transcribed, amplified, detected, and quantitated in real time. A fluorogenic probe was designed to detect the CFTR amplicon. Relative increase in 6-carboxy-fluorescein reporter fluorescent emission is monitored during PCR amplification using an analytical thermal cycler. An internal control template containing the same primer sequences as the CFTR amplicon, but a different internal sequence, has been designed as a control. An internal control probe with a reporter fluorescent dye tetrachloro-6-carboxy-fluorescein was designed to hybridize to the internal control amplicon. The internal control template is placed in each reaction tube and is used for quantitative analysis of the CFTR mRNA. This method provides a convenient and high-throughput format for QC RT-PCR.Keywords
This publication has 12 references indexed in Scilit:
- Real time quantitative PCR.Genome Research, 1996
- A commentary on the practical applications of competitive PCR.Genome Research, 1995
- Oligonucleotides with fluorescent dyes at opposite ends provide a quenched probe system useful for detecting PCR product and nucleic acid hybridization.Genome Research, 1995
- Towards fully automated genome–wide polymorphism screeningNature Genetics, 1995
- An evaluation of competitor type and size for use in the determination of mRNA by competitive PCR.Genome Research, 1995
- Competitive PCRNature, 1992
- Quantitative or semi-quantitative PCR: reality versus myth.Genome Research, 1992
- DNA amplification by the polymerase chain reactionAnalytical Chemistry, 1990
- Genomic Amplification with Transcript SequencingScience, 1988
- Specific Enzymatic Amplification of DNA In Vitro: The Polymerase Chain ReactionCold Spring Harbor Symposia on Quantitative Biology, 1986