Efficient incorporation of modified nucleotides by DNA polymerases is essential for many cutting-edge biomolecular technologies. The present study compares the acceptance of either alkene- or alkyne-modified nucleotides by KlenTaq DNA polymerase and provides structural insights into how 7-deaza-adenosine and deoxyuridine with attached alkene-modifications are incorporated into the growing DNA strand. Thereby, we identified modified nucleotides that prove to be superior substrates for KlenTaq DNA polymerase compared with their natural analogues. The knowledge can be used to guide future design of functionalized nucleotide building blocks.publishe
In addition to their potential as diagnostic and therapeutic agents, modified oligonucleotides have ...
Modified nucleotides play a paramount role in many cuttingedge biomolecular techniques. The present ...
Recently, KOD and its related DNA polymerases have been used for preparing various modified nucleic ...
Efficient incorporation of modified nucleotides by DNA polymerases is essential for many cutting-edg...
ABSTRACT: The capability of DNA polymerases to accept chemically modified nucleotides is of paramoun...
The capability of DNA polymerases to accept chemically modified nucleotides is of paramount importan...
DNA polymerases are involved in all DNA synthesis events occurring in nature. Therefore, these enzym...
Abstract: DNA polymerases catalyze the entire biological DNA synthesis in DNA replication, repair an...
Functional nucleotides are important in many cutting-edge biomolecular techniques. Often several mod...
Functional nucleotides are important in many cutting-edge biomolecular techniques. Often several mod...
DNA polymerases catalyze the entire biological DNA synthesis in DNA replication, repair and recombin...
DNA polymerases have evolved to process the four canonical nucleotides accurately. Nevertheless, the...
DNA polymerases have evolved to process the four canonical nucleotides accurately. Nevertheless, the...
DNA polymerases catalyze the addition of mononucleotides into a growing polymer using a DNA template...
Numerous 2'-deoxynucleoside triphosphates (dNTPs) that are functionalized with spacious modification...
In addition to their potential as diagnostic and therapeutic agents, modified oligonucleotides have ...
Modified nucleotides play a paramount role in many cuttingedge biomolecular techniques. The present ...
Recently, KOD and its related DNA polymerases have been used for preparing various modified nucleic ...
Efficient incorporation of modified nucleotides by DNA polymerases is essential for many cutting-edg...
ABSTRACT: The capability of DNA polymerases to accept chemically modified nucleotides is of paramoun...
The capability of DNA polymerases to accept chemically modified nucleotides is of paramount importan...
DNA polymerases are involved in all DNA synthesis events occurring in nature. Therefore, these enzym...
Abstract: DNA polymerases catalyze the entire biological DNA synthesis in DNA replication, repair an...
Functional nucleotides are important in many cutting-edge biomolecular techniques. Often several mod...
Functional nucleotides are important in many cutting-edge biomolecular techniques. Often several mod...
DNA polymerases catalyze the entire biological DNA synthesis in DNA replication, repair and recombin...
DNA polymerases have evolved to process the four canonical nucleotides accurately. Nevertheless, the...
DNA polymerases have evolved to process the four canonical nucleotides accurately. Nevertheless, the...
DNA polymerases catalyze the addition of mononucleotides into a growing polymer using a DNA template...
Numerous 2'-deoxynucleoside triphosphates (dNTPs) that are functionalized with spacious modification...
In addition to their potential as diagnostic and therapeutic agents, modified oligonucleotides have ...
Modified nucleotides play a paramount role in many cuttingedge biomolecular techniques. The present ...
Recently, KOD and its related DNA polymerases have been used for preparing various modified nucleic ...