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通过竞争性单管逆转录聚合酶链反应和毛细管电泳对RNA转录本进行直接定量。

Direct quantitation of RNA transcripts by competitive single-tube RT-PCR and capillary electrophoresis.

作者信息

Borson N D, Strausbauch M A, Wettstein P J, Oda R P, Johnston S L, Landers J P

机构信息

Mayo Clinic/Foundation, Rochester, MN, USA.

出版信息

Biotechniques. 1998 Jul;25(1):130-7. doi: 10.2144/98251rr01.

Abstract

Attempts are frequently made to semiquantitate mRNA as a means of circumventing the laborious and time-consuming process of quantitation that is inherent in the use of competitor templates. However, semiquantitative approaches present the risk of generating non-reproducible data due to tube-to-tube variability and/or misinterpretation of quantities of product being generated during the plateau phase of PCR. Subsequently, it is difficult to compare semiquantitative data from separate experiments, and comparisons of levels of mRNA transcript from genes that amplify with different primer pairs cannot be made. Thus, reliable methods for mRNA quantitation continue to rely on the use of internal standardization. In this report, we describe a strategy for dependable quantitation of low-abundance mRNA transcripts based on quantitative competitive reverse transcription PCR (QC-RT-PCR) coupled to capillary electrophoresis (CE) for rapid separation and detection of products. Recommendations are included for the design of RNA competitors that can be paired with target RNA for cDNA synthesis primed with a gene-specific primer; these synthesized cDNAs are then co-amplified directly in the same tube using a single primer pair. We describe (i) a protocol for a single-tube RT-PCR that provides for cDNA synthesis and subsequent PCR amplification of target and competitor in identical reaction environments at each critical enzymatic step, (ii) a unique hot-start provision for optimizing precise and consistent PCR amplifications and (iii) a method for rapid PCR product separation, detection and quantitation by CE and laser-induced fluorescence.

摘要

人们经常尝试对mRNA进行半定量,以规避使用竞争模板时固有的繁琐且耗时的定量过程。然而,由于管间差异和/或对PCR平台期产生的产物量的错误解读,半定量方法存在产生不可重复数据的风险。随后,很难比较来自不同实验的半定量数据,并且无法对使用不同引物对扩增的基因的mRNA转录水平进行比较。因此,可靠的mRNA定量方法仍然依赖于内部标准化的使用。在本报告中,我们描述了一种基于定量竞争逆转录PCR(QC-RT-PCR)与毛细管电泳(CE)相结合的策略,用于可靠地定量低丰度mRNA转录本,以便快速分离和检测产物。报告还包括了关于RNA竞争物设计的建议,这些竞争物可与靶RNA配对,用于以基因特异性引物引发的cDNA合成;然后使用单一引物对在同一管中直接共扩增这些合成 cDNA。我们描述了(i)一种单管RT-PCR方案,该方案在每个关键酶促步骤中,在相同的反应环境中进行cDNA合成以及随后的靶标和竞争物的PCR扩增,(ii)一种独特的热启动方法,用于优化精确且一致的PCR扩增,以及(iii)一种通过CE和激光诱导荧光对PCR产物进行快速分离、检测和定量的方法。

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