2011Methods in molecular biologyRequires access

Characterizing cDNA Ends by Circular RACE

Patrick T. McGrath

Open publisher page 10 citations

Abstract

Rapid amplification of cDNA ends (RACE) is a widely used PCR-based method to identify the 5' and 3' ends of cDNA transcripts from partial cDNAs. While conceptually simple, this method often requires substantial optimization before accurate end identification is achieved. This is due in part to the anchoring of a universal primer to a cDNA or mRNA for PCR, which can lead to the generation of nonspecific amplification. Here, we describe an improvement of the original RACE method, circular RACE, which can be used to simultaneously identify both the 5' and 3' end of a target cDNA.

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What this paper is about

Rapid amplification of cDNA ends (RACE) is a widely used PCR-based method to identify the 5' and 3' ends of cDNA transcripts from partial cDNAs. While conceptually simple, this method often requires substantial optimization before accurate end identification is achieved. This is due in part to the anchoring of a universal primer to a cDNA or mRNA for PCR, which can lead to the generation of nonspecific amplification. Here, we describe an improvement of the original RACE method, circular RACE, which can be used to simultaneously identify both the 5' and 3' end of a target cDNA.

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Available abstract

Rapid amplification of cDNA ends (RACE) is a widely used PCR-based method to identify the 5' and 3' ends of cDNA transcripts from partial cDNAs. While conceptually simple, this method often requires substantial optimization before accurate end identification is achieved. This is due in part to the anchoring of a universal primer to a cDNA or mRNA for PCR, which can lead to the generation of nonspecific amplification. Here, we describe an improvement of the original RACE method, circular RACE, which can be used to simultaneously identify both the 5' and 3' end of a target cDNA.

Key concepts: Race (biology), Complementary DNA, Rapid amplification of cDNA ends, Biology, Genetics, Gene, Molecular cloning, Botany

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