We report here a new method for the real-time detection of DNA point mutations with molecular beacon as the fluorescence tracer and 3' (exo-) Bst DNA polymerase large fragment as the polymerase. The method is based on the mechanism of allele specific primer extension-strand displacement (ASPE-SD). To improve the specificity of the method only one cycle of the allele specific polymerase chain reaction (PCR) was used that could largely eliminate the non-specific reactions between the primers and template of the "wrong" genotype. At first, the primer and molecular beacon both hybridize to the DNA template, and the molecular beacon emits intensive fluorescence. The role of 3' exonuclease excision of Bst DNA polymerase large ...
Arrayed primer extension reaction (APEX) is a straightforward and robust enzymatic genotyping method...
Point mutations have emerged as prominent biomarkers for disease diagnosis, particularly in the case...
was evaluated for primer extension using inert allele specific primers with exonuclease-digestible d...
DNA diagnostic has been moving from expensive, low-throughput, multistep methods to inexpensive, hig...
Molecular beacons are oligonucleotide probes that be-come fluorescent upon hybridization. We designe...
The ability to analyze multiple polymorphic/mutation sites rapidly and accurately is pivotal in all ...
<p>(A) Principle of the single-nucleotide primer extension method illustrated through analysis of a ...
The development of a convenient and sensitive biosensing system to detect specific DNA sequences is ...
We demonstrate that single-nucleotide differences in a DNA sequence can be detected in homogeneous a...
Method for conducting an allele specific polymerase chain reaction which comprises subjecting DNA wh...
By combination of a modified block PCR and endonuclease IV-based signal amplification system, we hav...
Method for conducting an allele specific polymerase chain reaction which comprises subjecting DNA wh...
Human tumor samples were screened for point mutations by adapting a mobility-shift assay to automate...
High levels of non-authentic sequence data can be generated by traditional PCR-based methodologies w...
Human tumor samples were screened for point mutations by adapting a mobility-shift assay to automate...
Arrayed primer extension reaction (APEX) is a straightforward and robust enzymatic genotyping method...
Point mutations have emerged as prominent biomarkers for disease diagnosis, particularly in the case...
was evaluated for primer extension using inert allele specific primers with exonuclease-digestible d...
DNA diagnostic has been moving from expensive, low-throughput, multistep methods to inexpensive, hig...
Molecular beacons are oligonucleotide probes that be-come fluorescent upon hybridization. We designe...
The ability to analyze multiple polymorphic/mutation sites rapidly and accurately is pivotal in all ...
<p>(A) Principle of the single-nucleotide primer extension method illustrated through analysis of a ...
The development of a convenient and sensitive biosensing system to detect specific DNA sequences is ...
We demonstrate that single-nucleotide differences in a DNA sequence can be detected in homogeneous a...
Method for conducting an allele specific polymerase chain reaction which comprises subjecting DNA wh...
By combination of a modified block PCR and endonuclease IV-based signal amplification system, we hav...
Method for conducting an allele specific polymerase chain reaction which comprises subjecting DNA wh...
Human tumor samples were screened for point mutations by adapting a mobility-shift assay to automate...
High levels of non-authentic sequence data can be generated by traditional PCR-based methodologies w...
Human tumor samples were screened for point mutations by adapting a mobility-shift assay to automate...
Arrayed primer extension reaction (APEX) is a straightforward and robust enzymatic genotyping method...
Point mutations have emerged as prominent biomarkers for disease diagnosis, particularly in the case...
was evaluated for primer extension using inert allele specific primers with exonuclease-digestible d...