DNA polymerase fidelity is affected by both intrinsic properties and environmental conditions. Current strategies for measuring DNA polymerase error rate in vitro are constrained by low error subtype sensitivity, poor scalability, and lack of flexibility in types of sequence contexts that can be tested. We have developed the Magnification via Nucleotide Imbalance Fidelity (MagNIFi) assay, a scalable next-generation sequencing assay that uses a biased deoxynucleotide pool to quantitatively shift error rates into a range where errors are frequent and hence measurement is robust, while still allowing for accurate mapping to error rates under typical conditions. This assay is compatible with a wide range of fidelity-modulating conditions, and e...
DNA conformation may deviate from the classical B-form in ∼13% of the human genome. Non-B DNA regula...
DNA polymerases are used in a plethora of biotechnical applications, especially in the polymerase ch...
<p>(A) Overview of a strategy for using DNA polymerases as signal recording devices. Signals (top) a...
DNA polymerases have an innate error rate which is polymerase and DNA context specific. Historically...
High-throughput recording of signals embedded within inaccessible micro-environments is a technologi...
High-throughput recording of signals embedded within inaccessible micro-environments is a technologi...
<p>(A) Base substitution error rates of various DNA polymerases relative to Taq polymerase. (B) Prop...
AbstractA significantly improved DNA polymerase fidelity assay, based on a gapped plasmid containing...
Digital PCR (dPCR) enables absolute quantification of nucleic acids by partitioning of the sample in...
We report here a novel approach to monitor the DNA polymerase fidelity in detailed steps, including ...
Digital PCR (dPCR) enables absolute quantification of nucleic acids by partitioning of the sample in...
The six billion nucleotides of the diploid human genome are replicated in only a few hours while gen...
We report here a novel approach to monitor the DNA polymerase fidelity in detailed steps, including ...
The fidelity of DNA synthesis has usually been determined from polynucleotide templates of restricte...
DNA conformation may deviate from the classical B-form in ∼13% of the human genome. Non-B DNA regula...
DNA conformation may deviate from the classical B-form in ∼13% of the human genome. Non-B DNA regula...
DNA polymerases are used in a plethora of biotechnical applications, especially in the polymerase ch...
<p>(A) Overview of a strategy for using DNA polymerases as signal recording devices. Signals (top) a...
DNA polymerases have an innate error rate which is polymerase and DNA context specific. Historically...
High-throughput recording of signals embedded within inaccessible micro-environments is a technologi...
High-throughput recording of signals embedded within inaccessible micro-environments is a technologi...
<p>(A) Base substitution error rates of various DNA polymerases relative to Taq polymerase. (B) Prop...
AbstractA significantly improved DNA polymerase fidelity assay, based on a gapped plasmid containing...
Digital PCR (dPCR) enables absolute quantification of nucleic acids by partitioning of the sample in...
We report here a novel approach to monitor the DNA polymerase fidelity in detailed steps, including ...
Digital PCR (dPCR) enables absolute quantification of nucleic acids by partitioning of the sample in...
The six billion nucleotides of the diploid human genome are replicated in only a few hours while gen...
We report here a novel approach to monitor the DNA polymerase fidelity in detailed steps, including ...
The fidelity of DNA synthesis has usually been determined from polynucleotide templates of restricte...
DNA conformation may deviate from the classical B-form in ∼13% of the human genome. Non-B DNA regula...
DNA conformation may deviate from the classical B-form in ∼13% of the human genome. Non-B DNA regula...
DNA polymerases are used in a plethora of biotechnical applications, especially in the polymerase ch...
<p>(A) Overview of a strategy for using DNA polymerases as signal recording devices. Signals (top) a...