van de Peppel Jeroen, Kemmeren Patrick, van Bakel Harm, Radonjic Marijana, van Leenen Dik, Holstege Frank C P
Genomics Laboratory, Department of Physiological Chemistry, University Medical Centre Utrecht, Postbus, Utrecht, The Netherlands.
EMBO Rep. 2003 Apr;4(4):387-93. doi: 10.1038/sj.embor.embor798.
Expression profiling is a universal tool, with a range of applications that benefit from the accurate determination of differential gene expression. To allow normalization using endogenous transcript levels, current microarray analyses assume that relatively few transcripts vary, or that any changes that occur are balanced. When normalization using endogenous genes is carried out, changes in expression levels are calculated relative to the behaviour of most of the transcripts. This does not reflect absolute changes if global shifts in messenger RNA populations occur. Using external RNA controls, we have set up microarray experiments to monitor global changes. The levels of most mRNAs were found to change during yeast stationary phase and human heat shock when external controls were included. Even small global changes had a significant effect on the number of genes reported as being differentially expressed. This suggests that global mRNA changes occur more frequently than is assumed at present, and shows that monitoring such effects may be important for the accurate determination of changes in gene expression.
表达谱分析是一种通用工具,有一系列应用受益于差异基因表达的准确测定。为了使用内源性转录本水平进行标准化,当前的微阵列分析假定相对较少的转录本会发生变化,或者任何发生的变化都是平衡的。当使用内源性基因进行标准化时,表达水平的变化是相对于大多数转录本的行为来计算的。如果信使RNA群体发生全局变化,这并不能反映绝对变化。使用外部RNA对照,我们建立了微阵列实验来监测全局变化。当包括外部对照时,发现在酵母稳定期和人类热休克期间大多数mRNA的水平发生了变化。即使是很小的全局变化也对报告为差异表达的基因数量有显著影响。这表明全局mRNA变化比目前所假定的更频繁地发生,并且表明监测这种影响对于准确确定基因表达变化可能很重要。