International audienceMetal-mediated base pairs are formed by the connection of two nucleobases via coordination to a metal cation. The resulting metal-containing duplexes have been used in a large variety of applications ranging from allosteric control of functional nucleic acids to the construction of nanowires. Recently, enzymatic approaches are being developed for the construction of metal-mediated base pairs. Here, we have studied the possibility of constructing HgII- and AgI-mediated DNA/RNA hetero base pairs using primer extension reactions. The high thermodynamic stabilities of metal base pairs can be harnessed to trigger the formation of two rU-HgII-dT base pairs. Bypass experiments demonstrate the possibility of constructing RNA c...
The incorporation of transition-metal ions into nucleic acids by using metal-mediated base pairs has...
The identification of synthetic nucleotides that sustain the formation of orthogonal, unnatural base...
The union of transition metal catalysis with native biochemistry presents a powerful opportunity to ...
International audienceArtificial metal base pairs have become increasingly important in nucleic acid...
The expansion of the genetic alphabet with additional, unnatural base pairs (UBPs) is an important a...
International audienceFormation of metal base pairs is a versatile method for the introduction of me...
The exquisite structures and properties of nucleic acids enable them to function in information stor...
International audienceThe formation of artificial metal base pairs is an alluring and versatile meth...
International audienceThe formation of artificial metal base pairs is an alluring and versatile meth...
International audienceThe formation of artificial metal base pairs is an alluring and versatile meth...
The formation of artificial metal base pairs is an alluring and versatile method for the functionali...
The expansion of the genetic alphabet with an additional, artificial base pair is of high relevance ...
International audienceThe expansion of the genetic alphabet with an additional, artificial base pair...
DNA double helices comprising chimeric GNA/DNA metal-mediated base pairs have been synthesized and c...
An extended genetic alphabet can provide insight to the development of biological structure and func...
The incorporation of transition-metal ions into nucleic acids by using metal-mediated base pairs has...
The identification of synthetic nucleotides that sustain the formation of orthogonal, unnatural base...
The union of transition metal catalysis with native biochemistry presents a powerful opportunity to ...
International audienceArtificial metal base pairs have become increasingly important in nucleic acid...
The expansion of the genetic alphabet with additional, unnatural base pairs (UBPs) is an important a...
International audienceFormation of metal base pairs is a versatile method for the introduction of me...
The exquisite structures and properties of nucleic acids enable them to function in information stor...
International audienceThe formation of artificial metal base pairs is an alluring and versatile meth...
International audienceThe formation of artificial metal base pairs is an alluring and versatile meth...
International audienceThe formation of artificial metal base pairs is an alluring and versatile meth...
The formation of artificial metal base pairs is an alluring and versatile method for the functionali...
The expansion of the genetic alphabet with an additional, artificial base pair is of high relevance ...
International audienceThe expansion of the genetic alphabet with an additional, artificial base pair...
DNA double helices comprising chimeric GNA/DNA metal-mediated base pairs have been synthesized and c...
An extended genetic alphabet can provide insight to the development of biological structure and func...
The incorporation of transition-metal ions into nucleic acids by using metal-mediated base pairs has...
The identification of synthetic nucleotides that sustain the formation of orthogonal, unnatural base...
The union of transition metal catalysis with native biochemistry presents a powerful opportunity to ...