An artificial riboswitch for controlling pre-mRNA splicing

73Citations
Citations of this article
105Readers
Mendeley users who have this article in their library.

Abstract

Riboswitches, as previously reported, are natural RNA aptamers that regulate the expression of numerous bacterial metabolic genes in response to small molecule ligands. It has recently been shown that these RNA genetic elements are also present near the splice site junctions of plant and fungal introns, thus raising the possibility of their involvement in regulating mRNA splicing. Here it is shown for the first time that a riboswitch can be engineered to regulate pre-mRNA splicing in vitro. We show that insertion of a high-affinity theophylline binding aptamer into the 3′ splice site (3′ ss) region of a model pre-mRNA (AdMLTheo29AG) enables its splicing to be repressed by the addition theophylline. Our results indicate that the location of 3′ ss AG within the aptamer plays a crucial role in conferring theophylline-dependent control of pre-mRNA splicing. We also show that theophylline-mediated control of pre-mRNA splicing is highly specific by first demonstrating that a small molecule ligand similar in shape and size to theophylline had no effect on the splicing of AdML-Theo29AG pre-mRNA. Second, theophylline failed to exert any influence on the splicing of a pre-mRNA that does not contain its binding site. Third, theophylline specifically blocks the step II of the splicing reaction. Finally, we provide evidence that theophylline-dependent control of pre-mRNA splicing is functionally relevant. Published by Cold Spring Harbor Laboratory Press. Copyright © 2005 RNA Society.

Cite

CITATION STYLE

APA

Kim, D. S., Gusti, V., Pillai, S. G., & Gaur, R. K. (2005). An artificial riboswitch for controlling pre-mRNA splicing. RNA, 11(11), 1667–1677. https://doi.org/10.1261/rna.2162205

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free