Department of Life Sciences and Institute of Physics, Graduate School of Arts and Sciences, The University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo 153-8902, Japan.
Nucleic Acids Res. 2011 May;39(10):e70. doi: 10.1093/nar/gkr138. Epub 2011 Mar 16.
Microarray-based gene expression measurement is one of the major methods for transcriptome analysis. However, current microarray data are substantially affected by microarray platforms and RNA references because of the microarray method can provide merely the relative amounts of gene expression levels. Therefore, valid comparisons of the microarray data require standardized platforms, internal and/or external controls and complicated normalizations. These requirements impose limitations on the extensive comparison of gene expression data. Here, we report an effective approach to removing the unfavorable limitations by measuring the absolute amounts of gene expression levels on common DNA microarrays. We have developed a multiplex cDNA quantification method called GEP-DEAN (Gene expression profiling by DCN-encoding-based analysis). The method was validated by using chemically synthesized DNA strands of known quantities and cDNA samples prepared from mouse liver, demonstrating that the absolute amounts of cDNA strands were successfully measured with a sensitivity of 18 zmol in a highly multiplexed manner in 7 h.
基于微阵列的基因表达测量是转录组分析的主要方法之一。然而,由于微阵列方法只能提供基因表达水平的相对量,因此当前的微阵列数据受到微阵列平台和 RNA 参考的显著影响。因此,微阵列数据的有效比较需要标准化的平台、内部和/或外部对照以及复杂的归一化。这些要求对基因表达数据的广泛比较施加了限制。在这里,我们报告了一种通过在常见 DNA 微阵列上测量基因表达水平的绝对量来消除不利限制的有效方法。我们开发了一种称为 GEP-DEAN(基于 DCN 编码分析的基因表达谱)的多重 cDNA 定量方法。该方法通过使用已知数量的化学合成 DNA 链和从小鼠肝脏制备的 cDNA 样品进行验证,证明以高多重方式在 7 小时内以 18 zmol 的灵敏度成功测量了 cDNA 链的绝对量。