The genetic code is continuously expanding with new nucleobases designed to suit specific research needs. These synthetic nucleotides are used to study DNA polymerase dynamics and specificity and may even inhibit DNA polymerase activity. The availability of an increasing chemical diversity of nucleotides allows questions of utilization by different DNA polymerases to be addressed. Much of the work in this area deals with the A family DNA polymerases, for example, Escherichia coli DNA polymerase I, which are DNA polymerases involved in replication and whose fidelity is relatively high, but more recent work includes other families of polymerases, including the Y family, whose members are known to be error prone. This paper focuses on the abil...
DNA polymerases are known to recognize preferably D-nucleotides over L-nucleotides during DNA synthe...
Survival of an organism is closely linked to the accuracy of DNA replication process. To examine the...
Many details about the complex enzyme mechanism of polymerases are still unknown, despite their esse...
DNA polymerases catalyze the addition of mononucleotides into a growing polymer using a DNA template...
Transmission of the genetic information from the parental DNA strand to the offspring is crucial for...
DNA polymerases catalyze the entire biological DNA synthesis in DNA replication, repair and recombin...
Abstract: DNA polymerases catalyze the entire biological DNA synthesis in DNA replication, repair an...
DNA that encodes elements for degenerate replication events by use of artificial nucleobases offers ...
This work describes an investigation into the recognition of nucleobase features by several DNA poly...
DNA polymerases find broad applications in molecular biology techniques (e.g., polymerase chain reac...
An essential prerequisite for all organisms is to keep its genome intact and to accurately duplicate...
DNA polymerases are the enzymes that catalyse all DNA synthesis in Nature often with astounding spee...
The vast majority of DNA polymerases use the complementary templating strand of DNA to guide each nu...
DNA polymerases are core tools for molecular biology including PCR, whole genome amplification, DNA ...
The cytosine analog 1,3-diaza-2-oxophenothiazine (tC) is a fluorescent nucleotide that forms Watson ...
DNA polymerases are known to recognize preferably D-nucleotides over L-nucleotides during DNA synthe...
Survival of an organism is closely linked to the accuracy of DNA replication process. To examine the...
Many details about the complex enzyme mechanism of polymerases are still unknown, despite their esse...
DNA polymerases catalyze the addition of mononucleotides into a growing polymer using a DNA template...
Transmission of the genetic information from the parental DNA strand to the offspring is crucial for...
DNA polymerases catalyze the entire biological DNA synthesis in DNA replication, repair and recombin...
Abstract: DNA polymerases catalyze the entire biological DNA synthesis in DNA replication, repair an...
DNA that encodes elements for degenerate replication events by use of artificial nucleobases offers ...
This work describes an investigation into the recognition of nucleobase features by several DNA poly...
DNA polymerases find broad applications in molecular biology techniques (e.g., polymerase chain reac...
An essential prerequisite for all organisms is to keep its genome intact and to accurately duplicate...
DNA polymerases are the enzymes that catalyse all DNA synthesis in Nature often with astounding spee...
The vast majority of DNA polymerases use the complementary templating strand of DNA to guide each nu...
DNA polymerases are core tools for molecular biology including PCR, whole genome amplification, DNA ...
The cytosine analog 1,3-diaza-2-oxophenothiazine (tC) is a fluorescent nucleotide that forms Watson ...
DNA polymerases are known to recognize preferably D-nucleotides over L-nucleotides during DNA synthe...
Survival of an organism is closely linked to the accuracy of DNA replication process. To examine the...
Many details about the complex enzyme mechanism of polymerases are still unknown, despite their esse...