| Literature DB >> 30698800 |
Marleen Renders1, Shrinivas Dumbre1, Mikhail Abramov1, Donaat Kestemont1, Lia Margamuljana1, Eric Largy2, Christopher Cozens3,4, Julie Vandenameele5, Vitor B Pinheiro3,4, Dominique Toye6, Jean-Marie Frère5, Piet Herdewijn1,7.
Abstract
Six 1',5'-anhydrohexitol uridine triphosphates were synthesized with aromatic substitutions appended via a carboxamide linker to the 5-position of their bases. An improved method for obtaining such 5-substituted hexitol nucleosides and nucleotides is described. The incorporation profile of the nucleotide analogues into a DNA duplex overhang using recently evolved XNA polymerases is compared. Long, mixed HNA sequences featuring the base modifications are generated. The apparent binding affinity of four of the nucleotides to the enzyme, the rate of the chemical step and of product release, plus the specificity constant for the incorporation of these modified nucleotides into a DNA duplex overhang using the HNA polymerase T6G12_I521L are determined via pre-steady-state kinetics. HNA polymers displaying aromatic functional groups could have significant impact on the isolation of stable and high-affinity binders and catalysts, or on the design of nanomaterials.Entities:
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Year: 2019 PMID: 30698800 PMCID: PMC6412122 DOI: 10.1093/nar/gkz008
Source DB: PubMed Journal: Nucleic Acids Res ISSN: 0305-1048 Impact factor: 16.971