textjournal article
Rational and Modular Design of Potent Ligands Targeting the RNA That Causes Myotonic Dystrophy 2
Abstract
Most ligands targeting RNA are identified through screening a therapeutic target for binding members of a ligand library. A potential alternative way to construct RNA binders is through rational design using information about the RNA motifs ligands prefer to bind. Herein, we describe such an approach to design modularly assembled ligands targeting the RNA that causes myotonic dystrophy type 2 (DM2), a currently untreatable disease. A previous study identified that 6′-N-5-hexynoate kanamycin A (1) prefers to bind 2×2 nucleotide, pyrimidine-rich RNA internal loops. Multiple copies of such loops are found in the RNA hairpin that causes DM2. The 1 ligand was then modularly displayed on a peptoid scaffold with varied number and spacing to target several internal loops simultaneously. Modularly assembled ligands were tested for binding to a series of RNAs and for inhibiting the formation of the toxic DM2 RNA-muscleblind protein (MBNL-1) interaction. The most potent ligand displays three 1 modules, each separated by four spacing submonomers, and inhibits the formation of the RNA-protein complex with an IC50 of 25 nM. This ligand has higher affinity and is more specific for binding the DM2 RNA than MBNL-1. It binds the DM2 RNA at least 30 times more tightly than related RNAs and 15-fold more tightly than MBNL-1. A related control peptoid displaying 6′-N-5-hexynoate neamine (2) is >100-fold less potent at inhibiting the RNA-protein interaction and binds to DM2 RNA >125-fold more weakly. Uptake studies into a mouse myoblast cell line also show that the most potent ligand is cell permeable- Text
- Journal contribution
- Biophysics
- Biochemistry
- Cell Biology
- Molecular Biology
- Pharmacology
- Immunology
- Cancer
- Space Science
- Biological Sciences not elsewhere classified
- Chemical Sciences not elsewhere classified
- alternative way
- 1 ligand
- DM 2 RNA
- binding members
- Uptake studies
- 25 nM
- ligand library
- causes myotonic dystrophy type 2
- control peptoid
- Modular Design
- causes DM 2.
- ligand displays
- Multiple copies
- RNA binders
- 1 modules
- RNA hairpin
- Potent Ligands Targeting
- untreatable disease
- MBNL
- mouse myoblast cell line
- Causes Myotonic Dystrophy 2
- IC 50
- RNA motifs ligands
- spacing submonomers
- 30 times
- design modularly
- peptoid scaffold