Motlik J, Carnwath J W, Herrmann D, Terletski V, Anger M, Niemann H
Institute of Animal Physiology and Genetics, Libechov, Czech Republic.
Biotechniques. 1998 Jan;24(1):148-53. doi: 10.2144/98241rr02.
We have developed a protocol for fast, nonradioactive, mRNA differential display reverse transcription PCR (DDRT-PCR) based on a commercial automated sequencer with RNA isolated from pig granulosa cells. We sought to discover conditions that would minimize the problem of using relatively small primers labeled with large infrared dye molecule, IR41, required for the sequencer. Extended IR41-labeled primers IR41-AAGC-T11-A, IE41-AAGC-T11-C and IR41-AAGC-T11-G gave more consistent differential display patterns than shorter anchored primers (IR41-T11A, IR41-T11C and IR41-T11G) without the additional (AAGC) cloning site. The optimal concentration of the extended labeled (downstream) primers was 20 pmol when 13-mer arbitrary (upstream) primers were used at a concentration of 4 pmol. Background smear and the intensity of amplified bands was significantly improved by changing from conventional Taq DNA polymerase to AmpliTaq Gold polymerase, which permits an improved "hot start" for the reaction. Running time (during which a digitized gel image is recorded) for a 26-cm polyacrylamide gel was 4 h, enabling us to analyze 90 reactions in an 8-h day. This protocol offers a rapid and reliable nonradioactive method for comparing gene expression patterns for various research or diagnostic purposes.
我们基于一台商业自动测序仪,开发了一种快速、非放射性的mRNA差异显示逆转录PCR(DDRT-PCR)方法,该方法使用从猪颗粒细胞中分离的RNA。我们试图找到能够将使用测序仪所需的、标记有大型红外染料分子IR41的相对较小引物所带来的问题降至最低的条件。与没有额外(AAGC)克隆位点的较短锚定引物(IR41-T11A、IR41-T11C和IR41-T11G)相比,延伸的IR41标记引物IR41-AAGC-T11-A、IE41-AAGC-T11-C和IR41-AAGC-T11-G产生了更一致的差异显示模式。当13-mer随机(上游)引物以4 pmol的浓度使用时,延伸标记(下游)引物的最佳浓度为20 pmol。从传统的Taq DNA聚合酶改为AmpliTaq Gold聚合酶,显著改善了背景拖尾和扩增条带的强度,这使得反应能够实现更好的“热启动”。26厘米聚丙烯酰胺凝胶的运行时间(在此期间记录数字化凝胶图像)为4小时,使我们能够在8小时内分析90个反应。该方法为比较各种研究或诊断目的的基因表达模式提供了一种快速可靠的非放射性方法。