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Combining SSH and cDNA microarrays for rapid identification of differentially expressed genes.

机译:结合使用SSH和cDNA微阵列可快速鉴定差异表达的基因。

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Comparing patterns of gene expression in cell lines and tissues has important applications in a variety of biological systems. In this study we have examined whether the emerging technology of cDNA microarrays will allow a high throughput analysis of expression of cDNA clones generated by suppression subtractive hybridization (SSH). A set of cDNA clones including 332 SSH inserts amplified by PCR was arrayed using robotic printing. The cDNA arrays were hybridized with fluorescent labeled probes prepared from RNA from ER-positive (MCF7 and T47D) and ER-negative (MDA-MB-231 and HBL-100) breast cancer cell lines. Ten clones were identified that were over-expressed by at least a factor of five in the ER-positive cell lines. Northern blot analysis confirmed over-expression of these 10 cDNAs. Sequence analysis identified four of these clones as cytokeratin 19, GATA-3, CD24 and glutathione-S-transferase mu-3. Of the remaining six cDNA clones, four clones matched EST sequences from two different genes and two clones were novel sequences. Flow cytometry and immunofluorescence confirmed that CD24 protein was over-expressed in the ER-positive cell lines. We conclude that SSH and microarray technology can be successfully applied to identify differentially expressed genes. This approach allowed the identification of differentially expressed genes without the need to obtain previously cloned cDNAs.
机译:比较细胞系和组织中基因表达的模式在各种生物系统中具有重要的应用。在这项研究中,我们研究了新兴的cDNA微阵列技术是否可以对抑制消减杂交(SSH)产生的cDNA克隆的表达进行高通量分析。使用机器人印刷技术对一组包括332个SSH插入片段的cDNA克隆进行了PCR扩增。 cDNA阵列与从ER阳性(MCF7和T47D)和ER阴性(MDA-MB-231和HBL-100)乳腺癌细胞系的RNA制备的荧光标记探针杂交。鉴定出十个克隆,它们在ER阳性细胞系中过量表达至少5倍。 Northern印迹分析证实了这10个cDNA的过表达。序列分析鉴定出这些克隆中的四个为细胞角蛋白19,GATA-3,CD24和谷胱甘肽-S-转移酶mu-3。在其余的六个cDNA克隆中,四个克隆与来自两个不同基因的EST序列匹配,两个克隆是新序列。流式细胞仪和免疫荧光证实CD24蛋白在ER阳性细胞系中过表达。我们得出结论,SSH和微阵列技术可以成功地应用于鉴定差异表达的基因。这种方法可以鉴定差异表达的基因,而无需获得先前克隆的cDNA。

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