bioRxiv · 10.1101/2021.01.01.425030
RNA pull-down-Confocal Nanoscanning (RP-CONA) detects quercetin as pri-miR-7/HuR interaction inhibitor that decreases α-Synuclein levels
Abstract
RNA-protein interactions are central to all gene expression processes and contribute to variety of human diseases. Therapeutic approaches targeting RNA-protein interactions have shown promising effects on some diseases that are previously regarded as incurable. Here we developed a fluorescent on-bead screening platform: RNA pull-down-Confocal Nanoscanning (RP-CONA), to identify RNA-protein interaction modulators in eukaryotic cell extracts. Using RP-CONA, we identified small molecules that disrupt the interaction between HuR, an inhibitor of brain-enriched miR-7 biogenesis, and the conserved terminal loop of pri-miR-7-1. Importantly, miR-7s primary target is an mRNA of -Synuclein, which contributes to aetiology of Parkinsons disease. Our method identified a natural product quercetin as a molecule able to upregulate cellular miR-7 levels and downregulate the expression of -Synuclein. This opens up new therapeutic avenues towards treatment of Parkinsons disease as well as provides novel methodology to search for RNA-protein interaction modulators.
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Zhu, S., Rooney, S., Pham, N. T., Koszela, J., Kelly, D., Auer, M., Michlewski, G.. 2021-01-03. RNA pull-down-Confocal Nanoscanning (RP-CONA) detects quercetin as pri-miR-7/HuR interaction inhibitor that decreases α-Synuclein levels. https://doi.org/10.1101/2021.01.01.425030
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