Chen J J, Rowley J D, Wang S M
Section of Hematology/Oncology, University of Chicago Medical Center, 5841 South Maryland Avenue MC2115, Chicago, IL 60637, USA.
Proc Natl Acad Sci U S A. 2000 Jan 4;97(1):349-53. doi: 10.1073/pnas.97.1.349.
We have developed a technique called the generation of longer cDNA fragments from serial analysis of gene expression (SAGE) tags for gene identification (GLGI), to convert SAGE tags of 10 bases into their corresponding 3' cDNA fragments covering hundred bases. A primer containing the 10-base SAGE tag is used as the sense primer, and a single base anchored oligo(dT) primer is used as an antisense primer in PCR, together with Pfu DNA polymerase. By using this approach, a cDNA fragment extending from the SAGE tag toward the 3' end of the corresponding sequence can be generated. Application of the GLGI technique can solve two critical issues in applying the SAGE technique: one is that a longer fragment corresponding to a SAGE tag, which has no match in databases, can be generated for further studies; the other is that the specific fragment corresponding to a SAGE tag can be identified from multiple sequences that match the same SAGE tag. The development of the GLGI method provides several potential applications. First, it provides a strategy for even wider application of the SAGE technique for quantitative analysis of global gene expression. Second, a combined application of SAGE/GLGI can be used to complete the catalogue of the expressed genes in human and in other eukaryotic species. Third, it can be used to identify the 3' cDNA sequence from any exon within a gene. It can also be used to confirm the reality of exons predicted by bioinformatic tools in genomic sequences. Fourth, a combined application of SAGE/GLGI can be applied to define the 3' boundary of expressed genes in the genomic sequences in human and in other eukaryotic genomes.
我们开发了一种名为从基因表达序列分析(SAGE)标签生成更长cDNA片段用于基因鉴定(GLGI)的技术,以将10个碱基的SAGE标签转化为其对应的覆盖100个碱基的3' cDNA片段。在PCR中,将包含10个碱基SAGE标签的引物用作正义引物,将单碱基锚定的寡聚(dT)引物用作反义引物,并与Pfu DNA聚合酶一起使用。通过这种方法,可以生成从SAGE标签向相应序列的3'端延伸的cDNA片段。GLGI技术的应用可以解决SAGE技术应用中的两个关键问题:一是可以生成与数据库中无匹配的SAGE标签对应的更长片段以供进一步研究;另一个是可以从与同一SAGE标签匹配的多个序列中鉴定出与SAGE标签对应的特定片段。GLGI方法的开发提供了几种潜在的应用。首先,它为SAGE技术在全局基因表达定量分析中的更广泛应用提供了一种策略。其次,SAGE/GLGI的联合应用可用于完成人类和其他真核生物物种中表达基因的目录。第三,它可用于从基因内的任何外显子鉴定3' cDNA序列。它还可用于确认基因组序列中由生物信息学工具预测的外显子的真实性。第四,SAGE/GLGI的联合应用可用于定义人类和其他真核生物基因组中基因组序列中表达基因的3'边界。