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The Renilla luciferase gene as a reference gene for normalization of gene expression in transiently transfected cells

机译:海肾荧光素酶基因作为参考基因,可用于瞬时转染细胞中基因表达的正常化

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The importance of appropriate normalization controls in quantitative real-time polymerase chain reaction (qPCR) experiments has become more apparent as the number of biological studies using this methodology has increased. In developing a system to study gene expression from transiently transfected plasmids, it became clear that normalization using chromosomally encoded genes is not ideal, at it does not take into account the transfection efficiency and the significantly lower expression levels of the plasmids. We have developed and validated a normalization method for qPCR using a co-transfected plasmid. The best chromosomal gene for normalization in the presence of the transcriptional activators used in this study, cadmium, dexamethasone, forskolin and phorbol-12-myristate 13-acetate was first identified. qPCR data was analyzed using geNorm, Normfinder and BestKeeper. Each software application was found to rank the normalization controls differently with no clear correlation. Including a co-transfected plasmid encoding the Renilla luciferase gene (Rluc) in this analysis showed that its calculated stability was not as good as the optimised chromosomal genes, most likely as a result of the lower expression levels and transfection variability. Finally, we validated these analyses by testing two chromosomal genes (B2M and ActB) and a co-transfected gene (Rluc) under biological conditions. When analyzing co-transfected plasmids, Rluc normalization gave the smallest errors compared to the chromosomal reference genes. Our data demonstrates that transfected Rluc is the most appropriate normalization reference gene for transient transfection qPCR analysis; it significantly reduces the standard deviation within biological experiments as it takes into account the transfection efficiencies and has easily controllable expression levels. This improves reproducibility, data validity and most importantly, enables accurate interpretation of qPCR data.
机译:随着使用这种方法的生物学研究数量的增加,在定量实时聚合酶链反应(qPCR)实验中使用适当的标准化控制的重要性变得更加明显。在开发用于研究瞬时转染质粒的基因表达的系统时,很明显,使用染色体编码的基因进行标准化是不理想的,因为它没有考虑转染效率和质粒的较低表达水平。我们已经开发并验证了使用共转染质粒的qPCR标准化方法。在本研究中使用的转录激活剂存在下,用于标准化的最佳染色体基因是镉,地塞米松,福司可林和佛波醇12-肉豆蔻酸酯13-乙酸酯。使用geNorm,Normfinder和BestKeeper分析qPCR数据。发现每个软件应用程序对标准化控件的排名不同,没有明显的相关性。在此分析中,包括编码Renilla荧光素酶基因(Rluc)的共转染质粒显示,其计算的稳定性不如优化的染色体基因那么好,这很可能是由于较低的表达水平和转染变异性造成的。最后,我们通过在生物学条件下测试两个染色体基因(B2M和ActB)和一个共转染的基因(Rluc)来验证这些分析。当分析共转染的质粒时,与染色体参考基因相比,Rluc归一化产生的误差最小。我们的数据表明,转染的Rluc是瞬时转染qPCR分析的最合适的标准化参考基因。它考虑到了转染效率并易于控制表达水平,因此大大降低了生物学实验中的标准偏差。这样可以提高重现性,数据有效性,最重要的是,可以对qPCR数据进行准确的解释。

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