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January 17, 2026Nucleic Acids Research1 citationsOpen Access

Multilayered regulation by RNA thermometers enables precise control of Cas9 expression in E. coli

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EKElise K KammerdienerSGSarah K GarciaMBMargaret K Bales

Key Points

  • To explore the use of RNA thermometers for controlling Cas9 expression and reducing unintended cell death in E. coli.
  • Utilized temperature-sensitive RNA elements for post-transcriptional regulation of cas9 expression.
  • Conducted experiments to measure cell survival rates at different temperatures with various RNA thermometers.
  • Tested the effect of the hsp17rep RNA thermometer upstream of the cas9 coding sequence on population skew.
  • Observed significant increases in cell survival at specific temperatures when using RNA thermometers.
  • Demonstrated that hsp17rep reduces population skew in mutant libraries compared to traditional methods.
  • Showed that the strategy can enhance the applicability of Cas9-based methods across bacterial systems.

Abstract

Abstract Cas9-based genome editing technologies can rapidly generate mutations to probe a diverse array of mutant genotypes. However, aberrant Cas9 nuclease translation and activity can occur despite the use of inducible promoters to control expression, leading to extensive cell death. This background killing caused by promoter leakiness severely limits the application of Cas9 for generating mutant libraries because of the potential for population skew. We demonstrate the utility of temperature sensitive RNA elements as a layer of post-transcriptional regulation to reduce the impact of promoter leak. We observe significant temperature-dependent increases in cell survival when certain RNA thermometers (RNATs) are placed upstream of the cas9 coding sequence. We also show that the most highly repressing RNAT, hsp17rep, significantly reduces population skew with a library of characterized guide RNAs in Escherichia coli. This strategy should be applicable to all bacterial Cas9-based methods and technologies.

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Cite This Study

Kammerdiener et al. (2025) studied this question.

synapsesocial.com/papers/696b2655d2a12237a93498d3https://doi.org/10.1093/nar/gkaf1495
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