Yakubov E, Dinerman P, Kuperstein F, Saban S, Yavin E
Department of Neurobiology, Weizmann Institute of Science, Rehovot 76100, Israel.
Brain Res Mol Brain Res. 2005 Jun 13;137(1-2):110-8. doi: 10.1016/j.molbrainres.2005.02.019. Epub 2005 Apr 1.
Despite the success and popularity of microarrays as a high-throughput technology for gene-expression studies, its sensitivity is as yet fairly limited. We have successfully combined the use of PCR-Select cDNA subtraction and Affymetrix GeneChips (AGC) to identify differentially expressed gene markers. Total RNA (totRNA) from combined hippocampus and cerebellum tissues of 2-week-old rat pups maintained for 5 weeks on an n-3 fatty acid (FA) deficient diet supplied to dams was isolated, SMART-amplified, and used for PCR-Select subtraction versus an adequately fed control litter preparation. Subtracted and amplified ds-cDNA end products were fragmented, terminally labeled with biotin-ddUTP and hybridized with RN-U34A AGC. At least 10-fold more potential gene markers with log2(T/D) > or = 1.4 were found versus the traditional AGC technology when the same chip was tested using nonsubtracted targets. Of this set of markers, 30% were robustly validated by real-time relative RT-PCR (rtrRT-PCR) and grouped as "confirmed" markers while the remaining were ascribed as "latent" markers. An improved and universal protocol to provide a rapid assessment for gene profiling in biological specimens is indicated.
尽管微阵列作为一种用于基因表达研究的高通量技术取得了成功并广受欢迎,但其灵敏度至今仍相当有限。我们成功地将PCR-Select cDNA消减技术与Affymetrix基因芯片(AGC)结合使用,以鉴定差异表达的基因标记。从在缺乏n-3脂肪酸(FA)饮食的母鼠喂养下维持5周的2周龄幼鼠的海马和小脑组织组合中分离出总RNA(totRNA),进行SMART扩增,并用于与充足喂养的对照窝制备物进行PCR-Select消减。将消减并扩增的双链cDNA终产物片段化,用生物素-ddUTP进行末端标记,并与RN-U34A AGC杂交。当使用未消减的靶标测试同一芯片时,与传统AGC技术相比,发现具有log2(T/D)>或= 1.4的潜在基因标记至少多10倍。在这组标记中,30%通过实时相对RT-PCR(rtrRT-PCR)得到有力验证,并归类为“已确认”标记,其余则归类为“潜在”标记。本文提出了一种改进的通用方案,用于对生物标本中的基因谱进行快速评估。