Boelens Mirjam C, te Meerman Gerard J, Gibcus Johan H, Blokzijl Tjasso, Boezen H Marike, Timens Wim, Postma Dirkje S, Groen Harry J M, van den Berg Anke
Department of Pathology, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
BMC Genomics. 2007 Aug 15;8:277. doi: 10.1186/1471-2164-8-277.
Laser microdissection microscopy has become a rising tool to assess gene expression profiles of pure cell populations. Given the low yield of RNA, a second round of amplification is usually mandatory to yield sufficient amplified-RNA for microarray approaches. Since amplification induces truncation of RNA molecules, we studied the impact of a second round of amplification on identification of differentially expressed genes in relation to the probe - poly(A)-tail distances.
Disagreement was observed between gene expression profiles acquired after a second round of amplification compared to a single round. Thirty percent of the differentially expressed genes identified after one round of amplification were not detected after two rounds. These inconsistent genes have a significant longer probe - poly(A)-tail distance. qRT-PCR on unamplified RNA confirmed differential expression of genes with a probe - poly(A)-tail distance >500 nucleotides appearing only after one round of amplification.
Our data demonstrate a marked loss of 30% of truly differentially expressed genes after a second round of amplification. Therefore, we strongly recommend improvement of amplification procedures and importance of microarray probe design to allow detection of all differentially expressed genes in case of limited amounts of RNA.
激光显微切割显微镜已成为评估纯细胞群体基因表达谱的一种新兴工具。鉴于RNA产量低,通常需要第二轮扩增才能产生足够的扩增RNA用于微阵列分析。由于扩增会导致RNA分子截断,我们研究了第二轮扩增对与探针 - 聚腺苷酸尾距离相关的差异表达基因鉴定的影响。
与一轮扩增后获得的基因表达谱相比,第二轮扩增后观察到不一致。一轮扩增后鉴定出的差异表达基因中有30%在两轮扩增后未被检测到。这些不一致的基因具有明显更长的探针 - 聚腺苷酸尾距离。对未扩增RNA进行的qRT-PCR证实,只有在一轮扩增后才出现探针 - 聚腺苷酸尾距离>500个核苷酸的基因的差异表达。
我们的数据表明,第二轮扩增后真正差异表达的基因明显损失了30%。因此,我们强烈建议改进扩增程序以及微阵列探针设计的重要性,以便在RNA量有限的情况下能够检测到所有差异表达的基因。