RNA:RNA Interaction in Ternary Complexes Resolved by Chemical Probing
- Elnaz Banijamali1,
- Lorenzo Baronti2,
- Walter Becker1,
- Joanna J. Sajkowska-Kozielewicz1,
- Ting Huang1,
- Christina Palka3,
- David Kosek1,
- Lara Sweetapple4,
- Juliane Müller1,
- Michael Stone5,
- Emma R. Andersson1 and
- Katja Petzold1,6
- 1 Karolinska Institute;
- 2 Institute of Structural Biology;
- 3 Gladstone Institute;
- 4 Karoliska Institute;
- 5 University of California
- ↵* Corresponding author; email: katja.petzold{at}ki.se
Abstract
RNA regulation can be performed by a second targeting RNA molecule, such as in the microRNA regulation mechanism. Selective 2’-hydroxyl acylation analyzed by primer extension (SHAPE) probes structure of RNA molecules and can resolve RNA:protein interactions, but RNA:RNA interactions have not yet been addressed with this technique. Here, we apply SHAPE to investigate RNA-mediated binding processes in RNA:RNA and RNA:RNA-RBP complexes. We use RNA:RNA binding by SHAPE (abbreviated RABS) to investigate microRNA-34a (miR-34a) binding its mRNA target, the silent information regulator 1 (mSIRT1), both with and without the Argonaute protein, constituting the RNA-induced silencing complex (RISC). We show that the seed of the mRNA target must be bound to the microRNA-loaded into RISC to enable further binding of the compensatory region by RISC, while the naked miR-34a is able to bind the compensatory region without seed interaction. The method presented here provides complementary structural evidence for the commonly performed luciferase-assay-based evaluation of microRNA binding-site efficiency and specificity on the mRNA target site and could therefore be used in conjunction with it. The method can be applied to any nucleic acid-mediated RNA- or RBP-binding process, such as splicing, antisense RNA binding, or regulation by RISC, providing important insight into the targeted RNA structure.
Keywords
- Received March 30, 2022.
- Accepted November 25, 2022.
- Published by Cold Spring Harbor Laboratory Press for the RNA Society
This article, published in RNA, is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.










