Publication | Open Access
A Strong Strand Displacement Activity of Thermostable DNA Polymerase Markedly Improves the Results of DNA Amplification
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Citations
13
References
2014
Year
Dna AnalysisMolecular BiologyNucleic Acid Amplification TestReal-time Polymerase Chain ReactionPolymerase Chain ReactionStrand Displacement ActivityDna PolymeraseDna ComputingBiophysicsBiochemistryOligonucleotideDna ReplicationSd Dna PolymeraseChromatinNatural SciencesNucleic Acid BiochemistrySynthetic BiologyNucleic Acid AmplificationDna AmplificationMedicineGenome Editing
The sensitivity and robustness of various DNA detection and amplification techniques are to a large extent determined by the properties of the DNA polymerase used. We have compared the performance of conventional Taq and Bst DNA polymerases to a novel Taq DNA polymerase mutant (SD DNA polymerase), which has a strong strand displacement activity, in PCR (including amplification of GC-rich and complex secondary structure templates), long-range PCR (LR PCR), loop-mediated amplification (LAMP), and polymerase chain displacement reaction (PCDR). Our results demonstrate that the strand displacement activity of SD DNA polymerase, in combination with the robust polymerase activity, provides a notable improvement in the sensitivity and efficiency of all these methods.
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