Circle-to-circle amplification for precise and sensitive DNA analysis
- 15 March 2004
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (13) , 4548-4553
- https://doi.org/10.1073/pnas.0400834101
Abstract
We present a tightly controlled process for strand-specific amplification of circularized DNA molecules. Tandem repeated complements of DNA circles are generated by rolling-circle replication, and converted to monomer circles of opposite polarity to that of the starting material. These circles are then subjected to one more round of rolling-circle replication and circularization, and the process can be further repeated. The method can be directed to produce single-stranded circular or linear monomers, or linear concatemers of the desired polarity. The reaction is not product inhibited, and can yield ≈100-fold higher concentrations of monomer products than PCR. Each generation of the amplification process proceeds in a linear fashion, ensuring precise quantification. The procedure is suitable for parallel amplification of large numbers of DNA circles, because the few cycles and the robust reaction mechanism preserves the proportion of amplified molecules. We demonstrate the utility of the method for multiplexed genotyping of polymorphic loci and for quantitative DNA analysis.Keywords
This publication has 20 references indexed in Scilit:
- Parallel gene analysis with allele-specific padlock probes and tag microarraysNucleic Acids Research, 2003
- Multiplexed genotyping with sequence-tagged molecular inversion probesNature Biotechnology, 2003
- Integration of DNA ligation and rolling circle amplification for the homogeneous, end-point detection of single nucleotide polymorphismsNucleic Acids Research, 2002
- Protein detection using proximity-dependent DNA ligation assaysNature Biotechnology, 2002
- Genome Information Broker (GIB): data retrieval and comparative analysis system for completed microbial genomes and moreNucleic Acids Research, 2002
- PCR-generated padlock probes detect single nucleotide variation in genomic DNANucleic Acids Research, 2000
- Molecular Beacons: Probes that Fluoresce upon HybridizationNature Biotechnology, 1996
- Rolling Circle DNA Synthesis: Small Circular Oligonucleotides as Efficient Templates for DNA PolymerasesJournal of the American Chemical Society, 1996
- Rolling replication of short DNA circles.Proceedings of the National Academy of Sciences, 1995
- Padlock Probes: Circularizing Oligonucleotides for Localized DNA DetectionScience, 1994