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Download fileA High-Fidelity Codon Set for the T4 DNA Ligase-Catalyzed Polymerization of Modified Oligonucleotides
journal contribution
posted on 2015-12-14, 00:00 authored by Yi Lei, Dehui Kong, Ryan HiliIn vitro selection of nucleic acid
polymers can readily deliver
highly specific receptors and catalysts for a variety of applications;
however, it is suspected that the functional group deficit of nucleic
acids has limited their potential with respect to proteinogenic polymers.
This has stimulated research toward expanding their chemical diversity
to bridge the functional gap between nucleic acids and proteins to
develop a superior biopolymer. In this study, we investigate the effect
of codon library size and composition on the sequence specificity
of T4 DNA ligase in the DNA-templated polymerization of both unmodified
and modified oligonucleotides. Using high-throughput DNA sequencing
of duplex pairs, we have uncovered a 256-membered codon set that yields
sequence-defined modified ssDNA polymers in high yield and with high
fidelity.