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Updated: Apr 24, 2026

Sequence-specific and Selective Recognition of Double-stranded RNAs over Single-stranded RNAs by Chemically Modified Peptide Nucleic Acids
Published on: September 21, 2017
Toward peptide nucleic acid (PNA) directed peptide translation using ester based aminoacyl transfer
Abhishek Singhal1, Valentina Bagnacani, Roberto Corradini
1Department of Cellular and Molecular Medicine and ‡Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen , The Panum Institute, Blegdamsvej 3c, DK-2200 Copenhagen, Denmark.
Abstract:
Peptide synthesis is a fundamental feature of life. However, it still remains unclear how the contemporary translation apparatus evolved from primitive prebiotic systems and at which stage of the evolution peptide synthesis emerged. Using simple molecular architectures, in which aminoacyl transfer of phenylalanine occurs either between two ends of a PNA stem loop structure, between two PNAs in a duplex, or between two PNAs assembled on a PNA template, we show that bona fide template instructed phenylalanine transfer can take place. Thus, we have identified conditions which allow template assisted intermolecular aminoacyl transfer using simple ester aminolysis chemistry primitively analogous to the ribosomal peptidyl transferase reaction in the absence of anchimeric assistance from ribose and ribosome catalysis. These results help define the minimum chemical boundary conditions for the translation process and also give insight into the possibilities for the prebiotic emergence of RNA-independent translation.
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