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使用基因特异性引物和杂交阵列鉴定及验证差异显示cDNA

Identification and verification of differential display cDNAs using gene-specific primers and hybridization arrays.

作者信息

Martin K J, Kwan C P, O'Hare M J, Pardee A B, Sager R

机构信息

Division of Cancer Genetics, Dana-Farber Cancer Institute, Boston, MA 02115, USA.

出版信息

Biotechniques. 1998 Jun;24(6):1018-26. doi: 10.2144/98246cr01.

Abstract

An accurate and streamlined approach to differential display (DD) band identification and verification is described. To minimize false positives, the strategy avoids the use of impure Northern blot probes obtained from PCR-amplified DD bands. To increase throughput, the cloning of DD bands is replaced by a gene-specific primer approach, and hybridization arrays are used in place of Northern blots. In summary, DD bands obtained with long primers were directly sequenced to allow the design and synthesis of gene-specific primers, which were then used to PCR-amplify homogeneous probes for the verification of expression patterns by hybridization array analysis. Differential expression of 60 of the 63 genes tested was confirmed. Thus, false positives are not inherent to DD. The results demonstrate the power of DD used with hybridization arrays to rapidly generate information on expression patterns of differentially expressed genes.

摘要

本文描述了一种准确且简化的差异显示(DD)条带鉴定与验证方法。为尽量减少假阳性,该策略避免使用从PCR扩增的DD条带获得的不纯Northern印迹探针。为提高通量,用基因特异性引物方法取代DD条带的克隆,并使用杂交阵列代替Northern印迹。总之,对用长引物获得的DD条带直接进行测序,以设计和合成基因特异性引物,然后用于PCR扩增同源探针,通过杂交阵列分析验证表达模式。所测试的63个基因中有60个基因的差异表达得到了证实。因此,假阳性并非DD所固有。结果证明了DD与杂交阵列结合使用能够快速生成差异表达基因表达模式信息的能力。

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