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Characterization of an HNA aptamer suggests a non-canonical G-quadruplex motif

Nucleic Acids Res. 2023-08; 
Peter Schofield, Alexander I Taylor, Jérôme Rihon, Cristian D Peña Martinez, Sacha Zinn, Charles-Alexandre Mattelaer, Jennifer Jackson, Gurpreet Dhaliwal, Guy Schepers, Piet Herdewijn, Eveline Lescrinier, Daniel Christ, Philipp Holliger
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Gene Synthesis … Alanine substitution mutant variants of Hen Egg Lysozyme were generated by de novo gene synthesis (Genscript) then expressed using the Expi-293 expression system and purified by … Get A Quote

摘要

Nucleic acids not only form the basis of heredity, but are increasingly a source of novel nano-structures, -devices and drugs. This has spurred the development of chemically modified alternatives (xeno nucleic acids (XNAs)) comprising chemical configurations not found in nature to extend their chemical and functional scope. XNAs can be evolved into ligands (XNA aptamers) that bind their targets with high affinity and specificity. However, detailed investigations into structural and functional aspects of XNA aptamers have been limited. Here we describe a detailed structure-function analysis of LYS-S8-19, a 1',5'-anhydrohexitol nucleic acid (HNA) aptamer to hen egg-white lysozyme (HEL). Mapping of the aptamer int... More

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