Publication | Open Access
Crowdsourced RNA design discovers diverse, reversible, efficient, self-contained molecular switches
29
Citations
24
References
2022
Year
EngineeringMolecular BiologyInternet-based Scientific CommunitiesBiological ComputingNucleic Acid BiomarkersData ScienceMolecular DiagnosticsBiological DataMolecular SciencesBiomedicineRna Structure PredictionDirected EvolutionRna BiologyBiomedical AnalysisSelf-contained Molecular SwitchesFunctional GenomicsBioinformaticsComputational BiologyNucleic Acid BiochemistrySynthetic BiologyRna Sensor DesignSystems BiologyMedicineNucleic AcidsGenome Editing
Internet-based scientific communities promise a means to apply distributed, diverse human intelligence toward previously intractable scientific problems. However, current implementations have not allowed communities to propose experiments to test all emerging hypotheses at scale or to modify hypotheses in response to experiments. We report high-throughput methods for molecular characterization of nucleic acids that enable the large-scale video game–based crowdsourcing of RNA sensor design, followed by high-throughput functional characterization. Iterative design testing of thousands of crowdsourced RNA sensor designs produced near–thermodynamically optimal and reversible RNA switches that act as self-contained molecular sensors and couple five distinct small molecule inputs to three distinct protein binding and fluorogenic outputs. This work suggests a paradigm for widely distributed experimental bioscience.
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