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Combination of PCR subtraction and cDNA microarray for differential gene expression profiling

机译:PCR减法和cDNA微阵列相结合进行差异基因表达谱分析

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摘要

PCR subtraction hybridization has been used effectively to enrich and single out differentially expressed genes. However, identification of these genes by means of cloning and sequencing individual cDNAs is a tedious and lengthy process. In this report, an attempt has been made to combine the use of PCR select cDNA subtraction hybridization and cDNA microarrays to identify differentially expressed genes using a nonradioactive chemiluminescent detection method. mRNA from human prolactin (hPRL) or human prolactin antagonist (hPRL-G129R) treated and non-treated breast cancer cells was isolated, and cDNAs were synthesized and used for the PCR subtraction to enrich the differentially expressed genes in the treated cells. The PCR-amplified and subtracted cDNA pools were purified and labeled using the digoxigenin method. Labeled cDNAs were hybridized to a human apoptosis cDNA microarray membrane and identified by chemiluminescence. The results suggest that the strategy of combining all three methods will allow for a more efficient, nonradioactive way of identifying differentially expressed genes in target cells.
机译:PCR减法杂交已被有效地用于富集和选出差异表达的基因。但是,通过克隆和测序单个cDNA鉴定这些基因是一个繁琐而漫长的过程。在本报告中,已经尝试使用非放射性化学发光检测方法结合使用PCR选择cDNA减法杂交和cDNA微阵列来鉴定差异表达的基因。从人催乳素(hPRL)或人催乳素拮抗剂(hPRL-G129R)处理的和未处理的乳腺癌细胞中分离mRNA,合成cDNA并用于PCR减法以富集处理细胞中差异表达的基因。使用洋地黄毒苷方法纯化和标记PCR扩增和扣除的cDNA库。标记的cDNA与人凋亡cDNA微阵列膜杂交,并通过化学发光鉴定。结果表明,将所有三种方法结合使用的策略将为鉴定靶细胞中差异表达的基因提供一种更有效的非放射性方法。

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