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Sequence Design for RNA-RNA Interactions

Publications: Contribution to bookChapterPeer Reviewed

Abstract

The design of RNA sequences with desired structural properties presents a challenging computational problem with promising applications in biotechnology and biomedicine. Most regulatory RNAs function by forming RNA-RNA interactions, e.g., in order to regulate mRNA expression. It is therefore natural to consider problems where a sequence is designed to form a desired RNA-RNA interaction and switch between structures upon binding. This contribution demonstrates the use of the Infrared framework to design interacting sequences. Specifically, we consider the regulation of the rpoS mRNA by the sRNA DsrA and design artificial 5′UTRs that place a downstream protein coding gene under control of DsrA. The design process is explained step by step in a Jupyter notebook, accompanied by Python code. The text discusses setting up design constraints for sampling sequences in Infrared, computing quality measures, constructing a suitable cost function, as well as the optimization procedure. We show that not only thermodynamic but also kinetic folding features can be relevant. Kinetics of interaction formation can be estimated efficiently using the RRIkinDP tool, and the chapter explains how to include kinetic folding features from RRIkinDP directly in the cost function. The protocol implemented in our Jupyter notebook can easily be extended to consider additional requirements or adapted to novel design scenarios.

Original languageEnglish
Title of host publicationRNA Design
Subtitle of host publicationMethods and Protocols
EditorsAlexander Churkin, Danny Barash
PublisherSpringer Nature
Pages1-16
Number of pages16
DOIs
Publication statusPublished - Jul 2024

Publication series

SeriesMethods in Molecular Biology
Volume2847
ISSN1064-3745

Austrian Fields of Science 2012

  • 106005 Bioinformatics

Keywords

  • RNA folding kinetics
  • RNA sequence design
  • RNA structure
  • RNA-RNA interactions

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