A Rapid Protocol for the Authentication of Isolated Differential Display RT-PCR CDNAs
Gino Miele, Roger B. Slee, Jean C. Manson, Michael Clinton
Abstract
Gino Miele, Roger B. Slee, Jean C. Manson, Michael Clinton
Abstract
The most time-consuming and problematic step in the overall DDRT-PCR technique is the confirmation that the isolated cDNA clone represents a differentially expressed gene. We have previously suggested that the majority of apparent false positives generated by DDRT-PCR do in fact result from the PCR reamplification of cDNA species which co-migrate with the cDNA of interest, and we have outlined a procedure to effectively eliminate these from further study. However, in situations where RNA is limiting, it is still desirable to confirm that a purified cDNA amplicon does, in fact, represent the originally observed differentially expressed gene prior to embarking on expression studies.
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The most time-consuming and problematic step in the overall DDRT-PCR technique is the confirmation that the isolated cDNA clone represents a differentially expressed gene. We have previously suggested that the majority of apparent false positives generated by DDRT-PCR do in fact result from the PCR reamplification of cDNA species which co-migrate with the cDNA of interest, and we have outlined a procedure to effectively eliminate these from further study. However, in situations where RNA is limiting, it is still desirable to confirm that a purified cDNA amplicon does, in fact, represent the originally observed differentially expressed gene prior to embarking on expression studies.
Key concepts: Complementary DNA, Differential display, Amplicon, Biology, False positive paradox, Gene, Molecular biology, Cloning (programming)