We report here a novel approach to monitor the DNA polymerase fidelity in detailed steps, including mispair extension, mispair formation and 3' -> 5' proofreading. The method is based on the photo-induced electron transfer between the natural base guanine and the labeled fluorophore. The G:T mispair extension catalyzed by the exonuclease-deficient Klenow fragment DNA polymerase (KF exo(-)) was easily detected and the effect of the nearest neighbor base pair on the mispair extension rate was clearly observed. More importantly, kinetics of the G:T, G:A and G:G mispair formation and extension under single turnover conditions were measured by continuous fluorescence-based assay for the first time. The probes also showed their appli...
Studies of the mechanisms by which DNA polymerases select the correct nucleotide frequently employ f...
We developed a versatile DNA assay and framework for monitoring polymerization of DNA in real time a...
The replication of damaged DNA is a promutagenic process that can lead to disease development. This ...
We report here a novel approach to monitor the DNA polymerase fidelity in detailed steps, including ...
In this paper, a simple and rapid method was developed for real-time monitoring of the kinetics of d...
We report a simple homogeneous fluorescence assay for quantification of DNA polymerase function in h...
DNA polymerases maintain the genome integrity from one generation to the next by faithfully synthesi...
This thesis focuses on the characterization of DNA polymerases with single-molecule techniques. More...
DNA polymerases discriminate between correct and incorrect nucleotide substrates during a "nonchemic...
High fidelity DNA polymerases maintain genomic fidelity through a series of kinetic steps that inclu...
Genetic information is encoded in the long sequence of bases which form DNA, which is replicated dur...
There is increasing interest in the use of DNA polymerases (DNA pols) in next-generation sequencing ...
We report a method for the rapid and automated measurements of the incorporation kinetics of fluores...
<p>Monitoring conformational changes in DNA polymerases using single-molecule Förster resonance ener...
DNA polymerases are central biocatalysts in the life cycle of all organisms. Structural transitions...
Studies of the mechanisms by which DNA polymerases select the correct nucleotide frequently employ f...
We developed a versatile DNA assay and framework for monitoring polymerization of DNA in real time a...
The replication of damaged DNA is a promutagenic process that can lead to disease development. This ...
We report here a novel approach to monitor the DNA polymerase fidelity in detailed steps, including ...
In this paper, a simple and rapid method was developed for real-time monitoring of the kinetics of d...
We report a simple homogeneous fluorescence assay for quantification of DNA polymerase function in h...
DNA polymerases maintain the genome integrity from one generation to the next by faithfully synthesi...
This thesis focuses on the characterization of DNA polymerases with single-molecule techniques. More...
DNA polymerases discriminate between correct and incorrect nucleotide substrates during a "nonchemic...
High fidelity DNA polymerases maintain genomic fidelity through a series of kinetic steps that inclu...
Genetic information is encoded in the long sequence of bases which form DNA, which is replicated dur...
There is increasing interest in the use of DNA polymerases (DNA pols) in next-generation sequencing ...
We report a method for the rapid and automated measurements of the incorporation kinetics of fluores...
<p>Monitoring conformational changes in DNA polymerases using single-molecule Förster resonance ener...
DNA polymerases are central biocatalysts in the life cycle of all organisms. Structural transitions...
Studies of the mechanisms by which DNA polymerases select the correct nucleotide frequently employ f...
We developed a versatile DNA assay and framework for monitoring polymerization of DNA in real time a...
The replication of damaged DNA is a promutagenic process that can lead to disease development. This ...