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February 23, 2004Clinical Chemistry410 citationsOpen Access

Properties of the Reverse Transcription Reaction in mRNA Quantification

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ASAnders StåhlbergJHJoakim HåkanssonXXXiaojie Xian

Key Points

  • This research aims to understand how different aspects of the reverse transcription reaction affect the accuracy of mRNA quantification.
  • Used SYBR green I-based quantitative real-time PCR to study reverse transcription.
  • Measured gene expression for beta-tubulin, GAPDH, Glut2, CaV1D, and insulin II genes.
  • Applied various priming strategies including random hexamers, oligo(dT), and gene-specific primers.
  • Experimental variation in RT-QPCR largely resulted from the reverse transcription step.
  • Reverse transcription efficiency varied depending on the priming strategy for each gene studied.
  • Yields from reverse transcription depended on the total RNA concentration used.

Abstract

BACKGROUND: In most measurements of gene expression, mRNA is first reverse-transcribed into cDNA. We studied the reverse transcription reaction and its consequences for quantitative measurements of gene expression. METHODS: We used SYBR green I-based quantitative real-time PCR (QPCR) to measure the properties of reverse transcription reaction for the beta-tubulin, glyceraldehyde-3-phosphate dehydrogenase, Glut2, CaV1D, and insulin II genes, using random hexamers, oligo(dT), and gene-specific reverse transcription primers. RESULTS: Experimental variation in reverse transcription-QPCR (RT-QPCR) was mainly attributable to the reverse transcription step. Reverse transcription efficiency depended on priming strategy, and the dependence was different for the five genes studied. Reverse transcription yields also depended on total RNA concentration. CONCLUSIONS: RT-QPCR gene expression measurements are comparable only when the same priming strategy and reaction conditions are used in all experiments and the samples contain the same total amount of RNA. Experimental accuracy is improved by running samples in (at least) duplicate starting with the reverse transcription reaction.

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Cite This Study

Ståhlberg et al. (2004) studied this question.

synapsesocial.com/papers/69fca620c864bacdacdd8fbchttps://doi.org/10.1373/clinchem.2003.026161
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