Rajeevan M S, Ranamukhaarachchi D G, Vernon S D, Unger E R
Division of Viral and Rickettsial Diseases, National Center for Infectious Diseases, Ceners for Disease Control and Prevention, US Department of Health and Public Services, Atlanta, Georgia 30333, USA.
Methods. 2001 Dec;25(4):443-51. doi: 10.1006/meth.2001.1266.
Real-time reverse transcription polymerase chain reaction (RT-PCR) methods that monitor product accumulation were adapted for the validation of differentially expressed genes. We describe a real-time quantitative PCR assay that uses SYBR Green I dye-based detection and product melting curve analysis to validate differentially expressed genes identified by gene expression profiling technologies. Since SYBR Green I dye is a nonspecific intercalating dye, the reaction is made specific by using "hot-start" PCR and empirically determined annealing and signal acquisition temperatures for each gene-specific primer. Relative expression levels were quantified by constructing a standard curve using cDNA dilutions of a highly expressed gene. Using this approach, real-time PCR validated 17 of 21 (71%) genes identified by DNA arrays, and all but 1 of 13 (91%) genes identified by differential display PCR (DD-PCR). Validation of differentially expressed genes detected by array analysis was related to hybridization intensity. Real-time RT-PCR results suggest that genes identified by DNA arrays with a two to fourfold difference in expression cannot be accepted as true or false without validation. Validation of differentially expressed genes detected by DD-PCR was not affected by band intensities. Regardless of the gene expression profiling technology (microarrays, DD-PCR, serial analysis of gene expression and subtraction hybridization), once the sequence of gene of interest is known, the real-time RT-PCR approach is well suited for validation of differential expression since it is quantitative and rapid and requires 1000-fold less RNA than conventional assays.
监测产物积累的实时逆转录聚合酶链反应(RT-PCR)方法被用于差异表达基因的验证。我们描述了一种实时定量PCR检测方法,该方法使用基于SYBR Green I染料的检测和产物熔解曲线分析来验证通过基因表达谱技术鉴定的差异表达基因。由于SYBR Green I染料是一种非特异性嵌入染料,通过使用“热启动”PCR以及针对每个基因特异性引物凭经验确定的退火温度和信号采集温度,使反应具有特异性。通过使用高表达基因的cDNA稀释液构建标准曲线来定量相对表达水平。使用这种方法,实时PCR验证了DNA阵列鉴定的21个基因中的17个(71%),以及差异显示PCR(DD-PCR)鉴定的13个基因中的12个(91%)。通过阵列分析检测到的差异表达基因的验证与杂交强度有关。实时RT-PCR结果表明,未经验证,DNA阵列鉴定的表达差异为2至4倍的基因不能被认定为真或假。通过DD-PCR检测到的差异表达基因的验证不受条带强度的影响。无论基因表达谱技术(微阵列、DD-PCR、基因表达序列分析和消减杂交)如何,一旦已知感兴趣基因的序列,实时RT-PCR方法就非常适合用于差异表达的验证,因为它定量且快速,所需RNA比传统检测方法少1000倍。
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