AbstractWe report heterogeneity in the time necessary for Exonuclease I to hydrolyze identical DNA fragments. A real-time fluorescence method measured the time required by molecules of Exonuclease I to hydrolyze single-stranded DNA that was synthesized to have two fluorescently labeled nucleotides. One fluorescently labeled nucleotide was located near the 3′ end of the DNA and the other near the 5′ end. Heterogeneity in the hydrolysis rate of the exonuclease population was inferred from the distribution of times necessary to cleave these DNA fragments. In particular, we found simple first-order kinetics, using a single hydrolysis rate, did not result in a good fit to the data. Better fits to the data were obtained if one assumed a distribut...
A kinetic theory is developed for exonuclease-deficient DNA polymerases, based on the experimental o...
Kinetic theory and thermodynamics are applied to DNA polymerases with exonuclease activity, taking i...
High fidelity DNA polymerases maintain genomic fidelity through a series of kinetic steps that inclu...
A recent publication reported on measurements of Exonuclease I activity using a real-time fluorescen...
AbstractA recent publication reported on measurements of Exonuclease I activity using a real-time fl...
AbstractA recent publication reported on measurements of Exonuclease I activity using a real-time fl...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We describe progress towards sequencing DNA at the single molecule level. Our technique involves inc...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
© 2019, Springer Science+Business Media, LLC, part of Springer Nature. The DNA hydrolysis by deoxyri...
© 2019, Springer Science+Business Media, LLC, part of Springer Nature. The DNA hydrolysis by deoxyri...
A kinetic theory is developed for exonuclease-deficient DNA polymerases, based on the experimental o...
Kinetic theory and thermodynamics are applied to DNA polymerases with exonuclease activity, taking i...
High fidelity DNA polymerases maintain genomic fidelity through a series of kinetic steps that inclu...
A recent publication reported on measurements of Exonuclease I activity using a real-time fluorescen...
AbstractA recent publication reported on measurements of Exonuclease I activity using a real-time fl...
AbstractA recent publication reported on measurements of Exonuclease I activity using a real-time fl...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We describe progress towards sequencing DNA at the single molecule level. Our technique involves inc...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
We used a multiplexed approach based on flow-stretched DNA to monitor the enzymatic digestion of λ-p...
© 2019, Springer Science+Business Media, LLC, part of Springer Nature. The DNA hydrolysis by deoxyri...
© 2019, Springer Science+Business Media, LLC, part of Springer Nature. The DNA hydrolysis by deoxyri...
A kinetic theory is developed for exonuclease-deficient DNA polymerases, based on the experimental o...
Kinetic theory and thermodynamics are applied to DNA polymerases with exonuclease activity, taking i...
High fidelity DNA polymerases maintain genomic fidelity through a series of kinetic steps that inclu...