The molecular properties of the phosphodiester backbone that made it the evolutionary choice for the enzymatic replication of genetic information are not well understood. To address this, and to develop new chemical ligation strategies for assembly of biocompatible modified DNA, we have synthesized oligonucleotides containing several structurally and electronically varied artificial linkages. This has yielded a new highly promising ligation method based on amide backbone formation that is chemically orthogonal to CuAAC “click” ligation. A study of kinetics and fidelity of replication through these artificial linkages by primer extension, PCR, and deep sequencing reveals that a subtle interplay between backbone flexibility, steric factors, a...
We describe the development of a chemical process based on the CuAAC reaction (click chemistry) to l...
The genetic alphabet is composed of two base pairs, and the development of a third, unnatural base p...
Chemically modified oligonucleotides find myriad applications in therapeutics and synthetic biology ...
The molecular properties of the phosphodiester backbone that made it the evolutionary choice for the...
One of the long-standing aims of biomimetic chemistry has been to develop molecules that function as...
Ligases are a class of enzymes that catalyze the formation of phosphodiester bonds between an oligon...
A triazole mimic of a DNA phosphodiester linkage has been produced by templated chemical ligation of...
DNA strands containing an unnatural T-triazole-T linkage have been synthesized by click DNA ligation...
Nucleic acid analogues are very attractive molecules for therapeutic applications as in principle th...
Joining oligonucleotides together (ligation) is a powerful means of retrieving information at the na...
Biochemical strategies that use a combination of synthetic oligonucleotides, thermostable DNA polyme...
The ability to synthesise large nucleic acids with site-specific chemical modifications would be inv...
DNA strands containing an unnatural T-triazole-T linkage have been synthesized by click DNA ligation...
Current gene synthesis methods are driven by enzymatic reactions. Here we report the one-pot synthes...
AbstractBackground: Nucleic acid replication via oligonucleotide ligation has been shown to be extre...
We describe the development of a chemical process based on the CuAAC reaction (click chemistry) to l...
The genetic alphabet is composed of two base pairs, and the development of a third, unnatural base p...
Chemically modified oligonucleotides find myriad applications in therapeutics and synthetic biology ...
The molecular properties of the phosphodiester backbone that made it the evolutionary choice for the...
One of the long-standing aims of biomimetic chemistry has been to develop molecules that function as...
Ligases are a class of enzymes that catalyze the formation of phosphodiester bonds between an oligon...
A triazole mimic of a DNA phosphodiester linkage has been produced by templated chemical ligation of...
DNA strands containing an unnatural T-triazole-T linkage have been synthesized by click DNA ligation...
Nucleic acid analogues are very attractive molecules for therapeutic applications as in principle th...
Joining oligonucleotides together (ligation) is a powerful means of retrieving information at the na...
Biochemical strategies that use a combination of synthetic oligonucleotides, thermostable DNA polyme...
The ability to synthesise large nucleic acids with site-specific chemical modifications would be inv...
DNA strands containing an unnatural T-triazole-T linkage have been synthesized by click DNA ligation...
Current gene synthesis methods are driven by enzymatic reactions. Here we report the one-pot synthes...
AbstractBackground: Nucleic acid replication via oligonucleotide ligation has been shown to be extre...
We describe the development of a chemical process based on the CuAAC reaction (click chemistry) to l...
The genetic alphabet is composed of two base pairs, and the development of a third, unnatural base p...
Chemically modified oligonucleotides find myriad applications in therapeutics and synthetic biology ...