Targeting riboswitches with beta-axial substituted cobalamins
Lennon, S. R.; Wierzba, A. J.; Siwik, S. H.; Gryko, D.; Palmer, A. E.; Batey, R. T.
Show abstract
RNA-targeting small molecule therapeutics an emerging field hindered by an incomplete understanding of the basic principles governing RNA-ligand interactions. One way to advance our knowledge in this area is to study model systems where these interactions are better understood, such as riboswitches. Riboswitches bind a wide array of small molecules with high affinity and selectivity, providing a wealth of information on how RNA recognizes ligands through diverse structures. The cobalamin-sensing riboswitch is a particularly useful model system as similar sequences show highly specialized binding preferences for different biological forms of cobalamin. This riboswitch is also widely dispersed across bacteria and therefore holds strong potential as an antibiotic target. Many synthetic cobalamin forms have been developed for various purposes including therapeutics, but their interaction with cobalamin riboswitches is yet to be explored. In this study, we characterize the interactions of eleven cobalamin derivatives with three representative cobalamin riboswitches using in vitro binding experiments (both chemical footprinting and a fluorescence-based assay) and a cell-based reporter assay. The derivatives show productive interactions with two of the three riboswitches, demonstrating simultaneously plasticity and selectivity within these RNAs. The observed plasticity is partially achieved through a novel structural rearrangement within the ligand binding pocket, providing insight into how similar RNA structures can be targeted in the future. As the derivatives also show in vivo functionality, they serve as several potential lead compounds for further drug development.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Design of an orally bioavailable small molecule that modulates the microtubule-associated protein tau's pre-mRNA splicing 95%
- R-BIND 2.0: An Updated Database of Bioactive RNA-Targeting Small Molecules and Associated RNA Secondary Structures 95%
- Analogs of the Dopamine Metabolite 5,6-Dihydroxyindole Bind Directly to and Activate the Nuclear Receptor Nurr1 (NR4A2) 95%
Similar papers in this journal
Similar papers in this journal
- RT-qPCR as a screening platform for mutational and small molecule impacts on structural stability of RNA tertiary structures 94%
- Stitched peptides as potential cell permeable inhibitors of oncogenic DAXX protein 93%
- Insight into the structures of unusual base pairs in RNA complexes containing primer/template/adenosine ligand 93%
Similar papers in this journal
- Ligand binding characteristics of an NAD+ riboswitch revealed by FRET and biolayer interferometry 93%
- Bio-Orthogonal Chemistry Enables Solid Phase Synthesis of Long RNA Oligonucleotides 92%
- Harnessing the Intrinsic Photochemistry of Isoxazoles for the Development of Chemoproteomic Crosslinking Methods 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.