Validation of cDNA microarray gene expression data obtained from linearly amplified RNA.

S D Jenson, R S Robetorye, S D Bohling, J A Schumacher, J W Morgan, M S Lim, K S J Elenitoba-Johnson
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引用次数: 65

Abstract

Background: DNA microarray technology has permitted the analysis of global gene expression profiles for several diseases, including cancer. However, standard hybridisation and detection protocols require micrograms of mRNA for microarray analysis, limiting broader application of this technology to small excisional biopsies, needle biopsies, and/or microdissected tissue samples. Therefore, linear amplification protocols to increase the amount of RNA have been developed. The correlation between the results of microarray experiments derived from non-amplified RNA and amplified samples needs to be evaluated in detail.

Methods: Total RNA was amplified and replicate hybridisation experiments were performed with linearly amplified (aRNA) and non-amplified mRNA from tonsillar B cells and the SUDHL-6 cell line using cDNA microarrays containing approximately 4500 genes. The results of microarray differential expression using either source of RNA (mRNA or aRNA) were also compared with those found using real time quantitative reverse transcription polymerase chain reaction (QRT-PCR).

Results: Microarray experiments using aRNA generated reproducible data displaying only small differences to data obtained from non-amplified mRNA. The quality of the starting total RNA template and the concentration of the promoter primer used to synthesise cDNA were crucial components of the linear amplification reaction. Approximately 80% of selected upregulated and downregulated genes identified by microarray analysis using linearly amplified RNA were confirmed by QRT-PCR using non-amplified mRNA as the starting template.

Conclusions: Linear RNA amplification methods can be used to generate high fidelity microarray expression data of comparable quality to data generated by microarray methods that use non-amplified mRNA samples.

从线性扩增RNA中获得的cDNA微阵列基因表达数据的验证。
背景:DNA微阵列技术已经允许分析包括癌症在内的几种疾病的全局基因表达谱。然而,标准杂交和检测方案需要微克mRNA进行微阵列分析,限制了该技术在小切除活检、针活检和/或显微解剖组织样本中的广泛应用。因此,已经开发了线性扩增方案来增加RNA的数量。来自非扩增RNA的微阵列实验结果与扩增样本之间的相关性需要详细评估。方法:对扁桃体B细胞和SUDHL-6细胞系的线性扩增(aRNA)和非扩增mRNA进行扩增和重复杂交实验,采用包含约4500个基因的cDNA芯片。使用RNA (mRNA或aRNA)的微阵列差异表达结果也与实时定量逆转录聚合酶链反应(QRT-PCR)的结果进行了比较。结果:使用aRNA的微阵列实验产生了可重复的数据,与从非扩增mRNA获得的数据只有很小的差异。起始总RNA模板的质量和用于合成cDNA的启动子引物的浓度是线性扩增反应的关键组成部分。使用线性扩增RNA的微阵列分析鉴定出的大约80%的上调和下调基因,使用未扩增mRNA作为起始模板的QRT-PCR进行确认。结论:线性RNA扩增方法可用于生成高保真的微阵列表达数据,其质量与使用非扩增mRNA样本的微阵列方法产生的数据相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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