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Updated: Dec 11, 2025

Chemical Triphosphorylation of Oligonucleotides
Published on: June 2, 2022
RNA-Catalyzed Cross-Chiral Polymerization of RNA
Katrina F Tjhung1, Jonathan T Sczepanski2, Eric R Murtfeldt1
1The Salk Institute, 10010 North Torrey Pines Road, La Jolla, California 92037, United States.
Abstract:
Biology relies almost exclusively on homochiral building blocks to drive the processes of life. Yet cross-chiral interactions can occur between macromolecules of the opposite handedness, including a previously described polymerase ribozyme that catalyzes the template-directed synthesis of enantio-RNA. The present study sought to optimize and generalize this activity, employing in vitro evolution to select cross-chiral polymerases that use either mono- or trinucleotide substrates that are activated as the 5'-triphosphate. There was only modest improvement of the former activity, but dramatic improvement of the latter, which enables the trinucleotide polymerase to react 102-103-fold faster than its ancestor and to accept substrates with all possible sequence combinations. The evolved ribozyme can assemble long RNAs from a mixture of trinucleotide building blocks, including a two-fragment form of the ancestral polymerase ribozyme. Further improvement of this activity could enable the generalized cross-chiral replication of RNA, which would establish a new paradigm for the chemical basis of Darwinian evolution.
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