Literature DB >> 17406515

Single-tube reaction using peptide nucleic acid as both PCR clamp and sensor probe for the detection of rare mutations.

Chiuan-Chian Chiou1, Ji-Dung Luo, Tai-Long Chen.   

Abstract

The detection of rare mutant DNA from a background of wild-type alleles usually requires laborious manipulations, such as restriction enzyme digestion and gel electrophoresis. Here, we describe a protocol for homogeneous detection of rare mutant DNA in a single tube. The protocol uses a peptide nucleic acid (PNA) as both PCR clamp and sensor probe. The PNA probe binds tightly to perfectly matched wild-type DNA template but not to mismatched mutant DNA sequences, which specifically inhibits the PCR amplification of wild-type alleles without interfering with the amplification of mutant DNA. A fluorescein tag (which undergoes fluorescence resonance energy transfer with the adjacent fluorophore of an anchor probe when both are annealed to the template DNA) also allows the PNA probe to generate unambiguous melting curves to detect mutant DNA during real-time fluorescent monitoring. The whole assay takes about only 1 h. This protocol has been used for detecting mutant K-ras DNA and could be applied to the detection of other rare mutant DNAs.

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Year:  2006        PMID: 17406515     DOI: 10.1038/nprot.2006.428

Source DB:  PubMed          Journal:  Nat Protoc        ISSN: 1750-2799            Impact factor:   13.491


  12 in total

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3.  Analytical chemistry: Clamping down on cancer detection.

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6.  High-fidelity DNA polymerase enhances the sensitivity of a peptide nucleic acid clamp PCR assay for K-ras mutations.

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10.  Kinetic hairpin oligonucleotide blockers for selective amplification of rare mutations.

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