Publication | Open Access
Identification of Small-Molecule Inhibitors of the HuR/RNA Interaction Using a Fluorescence Polarization Screening Assay Followed by NMR Validation
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Citations
47
References
2015
Year
Nmr-based High ThroughputMolecular BiologySmall-molecule InhibitorsNucleic Acid BiomarkersMolecular CharacterizationAntisense TherapyHuman Antigen RHur OligomerBiochemistryGene ExpressionFunctional GenomicsStructural BiologyNmr ValidationNatural SciencesDrug DiscoveryProtein NmrSystems BiologyMedicineSmall MoleculesHur/rna InteractionHigh-throughput Screening
The human antigen R (HuR) stabilizes many mRNAs of proto-oncogene, transcription factors, cytokines and growth factors by recognizing AU-rich elements (AREs) presented in their 3' or 5' untranslated region (UTR). Multiple lines of experimental evidence suggest that this process plays a key role in cancer development. Thus, destabilizing HuR/RNA interaction by small molecules presents an opportunity for cancer treatment/prevention. Here we present an integrated approach to identify inhibitors of HuR/RNA interaction using a combination of fluorescence-based and NMR-based high throughput screening (HTS). The HTS assay with fluorescence polarization readout and Z'-score of 0.8 was used to perform a screen of the NCI diversity set V library in a 384 well plate format. An NMR-based assay with saturation transfer difference (STD) detection was used for hits validation. Protein NMR spectroscopy was used to demonstrate that some hit compounds disrupt formation of HuR oligomer, whereas others block RNA binding. Thus, our integrated high throughput approach provides a new avenue for identification of small molecules targeting HuR/RNA interaction.
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