Rajeevan M S, Vernon S D, Taysavang N, Unger E R
Division of Viral and Rickettsial Diseases, National Center for Infectious Diseases, Centers for Disease Control and Prevention, U.S. Department of Health and Human Services, Atlanta, GA 30333, USA.
J Mol Diagn. 2001 Feb;3(1):26-31. doi: 10.1016/S1525-1578(10)60646-0.
We evaluated real-time (kinetic) reverse transcription-polymerase chain reaction (RT-PCR) to validate differentially expressed genes identified by DNA arrays. Gene expression of two keratinocyte subclones differing in the physical state of human papillomavirus (episomal or integrated) was used as a model system. High-density filter arrays identified 444 of 588 genes as either negative or expressed with less than twofold difference, and the other 144 genes as expressed uniquely or with more than twofold difference between the two subclones. Real-time RT-PCR used LightCycler-based SYBR Green I dye detection and melting curve analysis to validate the relative change in gene expression. Real-time RT-PCR confirmed the change in expression of 17 of 24 (71%) genes identified by high-density filter arrays. Genes with strong hybridization signals and at least twofold difference were likely to be validated by real-time RT-PCR. This data suggests that (i) both hybridization intensity and the level of differential expression determine the likelihood of validating high-density filter array results and (ii) genes identified by DNA arrays with a two- to fourfold difference in expression cannot be eliminated as false nor be accepted as true without validation. Real-time RT-PCR based on LightCycler technology is well-suited to validate DNA array results because it is quantitative, rapid, and requires 1000-fold less RNA than conventional assays.
我们评估了实时(动力学)逆转录-聚合酶链反应(RT-PCR),以验证DNA阵列鉴定出的差异表达基因。将在人乳头瘤病毒物理状态(游离或整合)上存在差异的两个角质形成细胞亚克隆的基因表达用作模型系统。高密度滤膜阵列将588个基因中的444个鉴定为阴性或表达差异小于两倍,另外144个基因鉴定为在两个亚克隆中独特表达或表达差异超过两倍。实时RT-PCR使用基于LightCycler的SYBR Green I染料检测和熔解曲线分析来验证基因表达的相对变化。实时RT-PCR证实了高密度滤膜阵列鉴定出的24个基因中有17个(71%)的表达变化。具有强杂交信号且差异至少两倍的基因很可能通过实时RT-PCR得到验证。这些数据表明:(i)杂交强度和差异表达水平都决定了验证高密度滤膜阵列结果的可能性;(ii)通过DNA阵列鉴定出的表达差异为两到四倍的基因,在未经验证的情况下,既不能作为假阳性排除,也不能作为真阳性接受。基于LightCycler技术的实时RT-PCR非常适合验证DNA阵列结果,因为它具有定量、快速的特点,且所需RNA比传统检测方法少1000倍。