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Quantitative analysis of mRNA amplification by in vitro transcription

机译:mRNA定量分析 体外转录扩增

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摘要

Effective transcript profiling in animal systems requires isolation of homogenous tissue or cells followed by faithful mRNA amplification. Linear amplification based on cDNA synthesis and in vitro transcription is reported to maintain representation of mRNA levels, however, quantitative data demonstrating this as well as a description of inherent limitations is lacking. We show that published protocols produce a template-independent product in addition to amplifying real target mRNA thus reducing the specific activity of the final product. We describe a modified amplification protocol that minimizes the generation of template-independent product and can therefore generate the desired microgram quantities of message-derived material from 100 ng of total RNA. Application of a second, nested round of cDNA synthesis and in vitro transcription reduces the required starting material to 2 ng of total RNA. Quantitative analysis of these products on Caenorhabditis elegans Affymetrix GeneChips shows that this amplification does not reduce overall sensitivity and has only minor effects on fidelity.
机译:在动物系统中有效的转录谱分析需要分离均质的组织或细胞,然后进行忠实的mRNA扩增。据报道,基于cDNA合成和体外转录的线性扩增可维持mRNA水平的代表,但是,缺乏证明这一点以及对固有局限性的描述的定量数据。我们显示,已发布的协议除了扩增真实的目标mRNA外,还产生模板独立的产品,从而降低了最终产品的比活性。我们描述了一种改良的扩增方案,该方案可最大程度地减少模板无关产品的产生,因此可以从100 ng总RNA中产生所需微克量的消息衍生材料。进行第二轮嵌套的cDNA合成和体外转录后,所需的起始物质减少到2 ng总RNA。对这些产品在秀丽隐杆线虫Affymetrix GeneChips上的定量分析表明,这种扩增不会降低总体敏感性,对保真度的影响很小。

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