Target-Directed Approaches for Screening Small Molecules against RNA Targets
Author(s) -
Hafeez S. Haniff,
Laurent Knerr,
Jonathan L. Chen,
Matthew D. Disney,
Helen L. Lightfoot
Publication year - 2020
Publication title -
slas discovery
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.907
H-Index - 75
eISSN - 2472-5560
pISSN - 2472-5552
DOI - 10.1177/2472555220922802
Subject(s) - druggability , small molecule , rna , computational biology , rna splicing , chemical biology , drug discovery , biomolecule , drug development , biology , riboswitch , chemistry , non coding rna , nanotechnology , drug , bioinformatics , biochemistry , gene , pharmacology , materials science
RNA molecules have a variety of cellular functions that can drive disease pathologies. They are without a doubt one of the most intriguing yet controversial small-molecule drug targets. The ability to widely target RNA with small molecules could be revolutionary, once the right tools, assays, and targets are selected, thereby defining which biomolecules are targetable and what constitutes drug-like small molecules. Indeed, approaches developed over the past 5-10 years have changed the face of small molecule-RNA targeting by addressing historic concerns regarding affinity, selectivity, and structural dynamics. Presently, selective RNA-protein complex stabilizing drugs such as branaplam and risdiplam are in clinical trials for the modulation of SMN2 splicing, compounds identified from phenotypic screens with serendipitous outcomes. Fully developing RNA as a druggable target will require a target engagement-driven approach, and evolving chemical collections will be important for the industrial development of this class of target. In this review we discuss target-directed approaches that can be used to identify RNA-binding compounds and the chemical knowledge we have today of small-molecule RNA binders.
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