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Updated: Jul 13, 2026

Aptamer-Based Target Detection Facilitated by a 3-Stage G-Quadruplex Isothermal Exponential Amplification Reaction
Published on: October 6, 2022
Computational design and experimental validation of fast oligonucleotide-sensing allosteric ribozymes with predefined
Dimitrios Kaloudas1, Nikolet Pavlova1, Robert Penchovsky1
1Laboratory of Synthetic Biology and Bioinformatics, Faculty of Biology, Sofia University "Saint Kliment Ohridski", 8 Dragan Tzankov Blvd., Sofia, 1164, Bulgaria.
Abstract:
Ribozymes can be engineered to function as molecular switches that exhibit different Boolean logic functions. Here, we describe two novel algorithmic pipelines for the design of YES and NOT Boolean-function oligonucleotide-sensing allosteric ribozymes bearing a predefined oligonucleotide-binding site sequence, capable of targeting known sequence RNA molecules. The algorithms generate allosteric riboswitches based on the extended hammerhead ribozyme by computing RNA thermodynamic properties and using random search. A computationally designed YES Boolean logic allosteric ribozyme was synthesized and tested in vitro. The tested ribozyme exhibits at least 1000-fold activation, demonstrating high ligand specificity and function. These algorithmic approaches provide a rapid and inexpensive way to create allosteric ribozymes targeting a known RNA sequence for constructing gene control elements and nucleic acid detection systems.
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