We developed a method to translate DNA sequences into densely functionalized nucleic acids by using T4 DNA ligase to mediate the DNA-templated polymerization of 5′-phosphorylated trinucleotides containing a wide variety of appended functional groups. This polymerization proceeds sequence specifically along a DNA template and can generate polymers of at least 50 building blocks (150 nucleotides) in length with remarkable efficiency. The resulting single-stranded highly modified nucleic acid is a suitable template for primer extension using deep vent (exo-) DNA polymerase, thereby enabling the regeneration of template DNA. We integrated these capabilities to perform iterated cycles of in vitro translation, selection, and template regeneration...
Polymerase chain reaction amplification of a locked nucleic acid (LNA)-modified DNA strand and trans...
DNA strands containing an unnatural T-triazole-T linkage have been synthesized by click DNA ligation...
We have developed a method for the T4 DNA ligase-catalyzed DNA-templated polymerization of 5′-phosph...
We developed a method to translate DNA sequences into densely functionalized nucleic acids by using ...
ABSTRACT: We developed a method to translate DNA sequences into densely functionalized nucleic acids...
The translation of DNA sequences into corresponding biopolymers enables the production, function, an...
In vitro selection of nucleic acid polymers can readily deliver highly specific receptors and cataly...
We describe the development and analysis of the T4 DNA ligase-catalyzed DNA templated polymerization...
Current gene synthesis methods are driven by enzymatic reactions. Here we report the one-pot synthes...
<p>The use of DNA as a polymeric building material transcends its function in biology and is excitin...
We describe the first enzymatic incorporation of an α-L-LNA nucleotide into an oligonucleotide. It w...
Polymerases are an ancient family of enzymes that synthesize long strands of DNA and RNA. These enzy...
DNA-templated organic synthesis enables the translation, selection, and amplification of DNA sequenc...
ature has engineered rapid, highly sequence-specific enzymes capable of repairing spliced RNA and DN...
Ultra-high molecular weight DNA/polymer hybrid materials were prepared employing molecular biology t...
Polymerase chain reaction amplification of a locked nucleic acid (LNA)-modified DNA strand and trans...
DNA strands containing an unnatural T-triazole-T linkage have been synthesized by click DNA ligation...
We have developed a method for the T4 DNA ligase-catalyzed DNA-templated polymerization of 5′-phosph...
We developed a method to translate DNA sequences into densely functionalized nucleic acids by using ...
ABSTRACT: We developed a method to translate DNA sequences into densely functionalized nucleic acids...
The translation of DNA sequences into corresponding biopolymers enables the production, function, an...
In vitro selection of nucleic acid polymers can readily deliver highly specific receptors and cataly...
We describe the development and analysis of the T4 DNA ligase-catalyzed DNA templated polymerization...
Current gene synthesis methods are driven by enzymatic reactions. Here we report the one-pot synthes...
<p>The use of DNA as a polymeric building material transcends its function in biology and is excitin...
We describe the first enzymatic incorporation of an α-L-LNA nucleotide into an oligonucleotide. It w...
Polymerases are an ancient family of enzymes that synthesize long strands of DNA and RNA. These enzy...
DNA-templated organic synthesis enables the translation, selection, and amplification of DNA sequenc...
ature has engineered rapid, highly sequence-specific enzymes capable of repairing spliced RNA and DN...
Ultra-high molecular weight DNA/polymer hybrid materials were prepared employing molecular biology t...
Polymerase chain reaction amplification of a locked nucleic acid (LNA)-modified DNA strand and trans...
DNA strands containing an unnatural T-triazole-T linkage have been synthesized by click DNA ligation...
We have developed a method for the T4 DNA ligase-catalyzed DNA-templated polymerization of 5′-phosph...