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Detection of differentially expressed genes in primary tumor tissues using representational differences analysis coupled to microarray hybridization.

机译:使用代表性差异分析和微阵列杂交技术检测原发性肿瘤组织中差异表达的基因。

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The identification of differential gene expressionbetween cells is a frequent goal in modern biological research. Here we demonstrate the coupling of representational difference analysis (RDA) of cDNA with microarray analysis of the output for high throughput screening. Two primary Ewing's sarcoma tissue samples with different biological behavior in vivo were compared by RDA: one which was metastatic and progressed rapidly; the other localized and successfully treated. A modified RDA protocol that minimizes the necessary starting material was employed. After a reduced number of subtractive rounds, the output of RDA was shotgun cloned into a plasmid vector. Inserts from individual colonies from the subtracted library were amplified with vector-specific primers and arrayed at high density on glass slides. The arrays were then hybridized with differentially fluorescently labeled starting amplicons from the two tissues and fluorescent signals were measured at each DNA spot. We show that the relative amounts of fluorescent signal correlate well with the abundance of fragments in the RDA amplicon and in the starting mRNA. In our system, we analyzed 192 products and 173 (90%) were appropriately detected as being >2-fold differentially expressed. Fifty unique, differentially expressed clones were identified. Therefore, the use of RDA essentially provides an enriched library of differentially expressed genes, while analysis of this library with microarrays allows rapid and reproducible screening of thousands of DNA molecules simultaneously. The coupling of these two techniques in this system resulted in a large pool of differentially expressed genes.
机译:鉴定细胞之间的差异基因表达是现代生物学研究中的常见目标。在这里,我们展示了cDNA的代表性差异分析(RDA)与用于高通量筛选的输出微阵列分析的耦合。用RDA比较了两种在体内具有不同生物学行为的主要尤因肉瘤组织样品:一种是转移性的且进展迅速;另一种是快速转移的。其他本地化并成功治疗。采用了一种改良的RDA方案,该方案使所需的起始原料减至最少。减少减数回合后,将RDA的输出鸟枪法克隆到质粒载体中。来自减数文库的单个菌落的插入片段用载体特异性引物扩增,并以高密度排列在载玻片上。然后将阵列与来自两个组织的差异荧光标记的起始扩增子杂交,并在每个DNA点处测量荧光信号。我们显示,荧光信号的相对量与RDA扩增子和起始mRNA中的片段丰度很好相关。在我们的系统中,我们分析了192种产品,其中173种(占90%)被适当地检测为> 2倍差异表达。鉴定出五十个独特的,差异表达的克隆。因此,RDA的使用本质上提供了丰富的差异表达基因文库,而用微阵列对该文库进行分析则可以同时快速,可重复地筛选数千个DNA分子。这两种技术在该系统中的耦合导致大量差异表达基因。

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