The amplification of target DNA by the polymerase chain reaction (PCR) produces copies which may contain errors. Two sources of errors are associated with the PCR process: (1) editing errors that occur during DNA polymerase-catalyzed enzymatic copying and (2) errors due to DNA thermal damage. In this study a quantitative model of error frequencies is proposed and the role of reaction conditions is investigated. The errors which are ascribed to the polymerase depend on the efficiency of its editing function as well as the reaction conditions; specifically the temperature and the dNTP pool composition. Thermally induced errors stem mostly from three sources: A+G depurination, oxidative damage of guanine to 8-oxoG and cytosine deamination to u...
Next-generation sequencing technology has enabled the detection of rare genetic or somatic mutations...
For certain applications of the polymerase chain reaction (PCR), it may be necessary to consider the...
pre-printBACKGROUND: Radioactive DNA polymerase activity methods are cumbersome and do not provide i...
The amplification of target DNA by the polymerase chain reaction (PCR) produces copies which may con...
The Polymerase Chain Reaction (PCR) is one of the most widely used techniques in modern molecular bi...
The polymerase chain reaction (PCR) is one of the most important reactions in molecular biology. The...
Polymerase chain reaction (PCR) is an important molecular biological tool for the amplification of n...
The polymerase chain reaction (PCR) has found wide application in biochemistry and molecular biology...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Estimation of DNA copy number in a given biological sample is an extremely important problem in geno...
AbstractA theoretical framework for prediction of the dynamic evolution of chemical species in DNA a...
Biological evidence collected at crime scenes are often subjected to forensic deoxyribonucleic acid ...
PCR permits the exponential and sequence-specific amplification of DNA, even from minute starting qu...
The polymerase chain reaction (PCR) allows the exponential amplification of target DNA sequences, an...
International audienceThe purpose of this review is to verify the reliability of the PCR test in amp...
Next-generation sequencing technology has enabled the detection of rare genetic or somatic mutations...
For certain applications of the polymerase chain reaction (PCR), it may be necessary to consider the...
pre-printBACKGROUND: Radioactive DNA polymerase activity methods are cumbersome and do not provide i...
The amplification of target DNA by the polymerase chain reaction (PCR) produces copies which may con...
The Polymerase Chain Reaction (PCR) is one of the most widely used techniques in modern molecular bi...
The polymerase chain reaction (PCR) is one of the most important reactions in molecular biology. The...
Polymerase chain reaction (PCR) is an important molecular biological tool for the amplification of n...
The polymerase chain reaction (PCR) has found wide application in biochemistry and molecular biology...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Estimation of DNA copy number in a given biological sample is an extremely important problem in geno...
AbstractA theoretical framework for prediction of the dynamic evolution of chemical species in DNA a...
Biological evidence collected at crime scenes are often subjected to forensic deoxyribonucleic acid ...
PCR permits the exponential and sequence-specific amplification of DNA, even from minute starting qu...
The polymerase chain reaction (PCR) allows the exponential amplification of target DNA sequences, an...
International audienceThe purpose of this review is to verify the reliability of the PCR test in amp...
Next-generation sequencing technology has enabled the detection of rare genetic or somatic mutations...
For certain applications of the polymerase chain reaction (PCR), it may be necessary to consider the...
pre-printBACKGROUND: Radioactive DNA polymerase activity methods are cumbersome and do not provide i...