LEM-PCR: A method for determining relative transcript isoform proportions using real-time PCR without a standard curve
LEM-PCR: A method for determining relative transcript isoform proportions using real-time PCR without a standard curve
Many genes express multiple transcript isoforms generated by alternative splicing of mRNA. Using real-time PCR, it is straightforward to determine the relative expression level of each isoform independently. However, it is less trivial to determine the relative proportions of different isoforms in a cDNA sample. The relative proportions of different isoforms can be important, as a small change in a highly abundant transcript may be more relevant than a large change in a minimally expressed transcript. Currently, determining the relative proportions of isoforms requires the construction of a standard curve using recombinant plasmid DNA or genomic DNA. As recombinant or genomic DNA standards often amplify with different efficiencies to cDNA samples, they may give under- or overestimations of isoform abundances. The method described in this article uses a titration curve generated from the same cDNA samples measured in the experiment. By using samples with different levels of separate isoforms, it is possible to derive linear equations which, when solved, allow the determination of the proportion of each isoform within the samples under study.
3T3-L1, Adipogenesis, Isoform, Peroxisome proliferator-activated receptor γ, PPARγ, Real-time PCR, Standard curve
637-642
Virtue, S.
5a5860ed-b7a9-4bee-a2cc-50a019b5bc5c
Dale, M.
dd941e8f-d56c-4a71-8caf-b5a7b7458e71
Sethi, J.K.
923f1a81-91e4-46cd-8853-bb4a979f5a85
Vidal-Puig, A.
e63d69a6-77fe-4c3d-821f-75e3aba1919b
August 2010
Virtue, S.
5a5860ed-b7a9-4bee-a2cc-50a019b5bc5c
Dale, M.
dd941e8f-d56c-4a71-8caf-b5a7b7458e71
Sethi, J.K.
923f1a81-91e4-46cd-8853-bb4a979f5a85
Vidal-Puig, A.
e63d69a6-77fe-4c3d-821f-75e3aba1919b
Virtue, S., Dale, M., Sethi, J.K. and Vidal-Puig, A.
(2010)
LEM-PCR: A method for determining relative transcript isoform proportions using real-time PCR without a standard curve.
Genome Biology, 53 (8), .
(doi:10.1139/G10-036).
Abstract
Many genes express multiple transcript isoforms generated by alternative splicing of mRNA. Using real-time PCR, it is straightforward to determine the relative expression level of each isoform independently. However, it is less trivial to determine the relative proportions of different isoforms in a cDNA sample. The relative proportions of different isoforms can be important, as a small change in a highly abundant transcript may be more relevant than a large change in a minimally expressed transcript. Currently, determining the relative proportions of isoforms requires the construction of a standard curve using recombinant plasmid DNA or genomic DNA. As recombinant or genomic DNA standards often amplify with different efficiencies to cDNA samples, they may give under- or overestimations of isoform abundances. The method described in this article uses a titration curve generated from the same cDNA samples measured in the experiment. By using samples with different levels of separate isoforms, it is possible to derive linear equations which, when solved, allow the determination of the proportion of each isoform within the samples under study.
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Accepted/In Press date: 8 May 2010
e-pub ahead of print date: 27 July 2010
Published date: August 2010
Keywords:
3T3-L1, Adipogenesis, Isoform, Peroxisome proliferator-activated receptor γ, PPARγ, Real-time PCR, Standard curve
Identifiers
Local EPrints ID: 415410
URI: http://eprints.soton.ac.uk/id/eprint/415410
ISSN: 0831-2796
PURE UUID: 907a5118-631a-42a3-9b4f-ea332712ec94
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Date deposited: 09 Nov 2017 17:30
Last modified: 16 Mar 2024 04:31
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Author:
S. Virtue
Author:
M. Dale
Author:
A. Vidal-Puig
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