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Transcriptional Inhibitors Identified in a 160,000-Compound Small-Molecule DUX4 Viability Screen
Si Ho Choi1, Darko Bosnakovski2, Jessica M Strasser3
1Lillehei Heart Institute, University of Minnesota, Minneapolis, MN, USA Department of Pediatrics, University of Minnesota, Minneapolis, MN, USA Research Center, Dongnam Institute of Radiological & Medical Sciences (DIRAMS), Busan, South Korea.
Abstract:
Facioscapulohumeral muscular dystrophy is a genetically dominant, currently untreatable muscular dystrophy. It is caused by mutations that enable expression of the normally silent DUX4 gene, which encodes a pathogenic transcription factor. A screen based on Tet-on DUX4-induced mouse myoblast death previously uncovered compounds from a 44,000-compound library that protect against DUX4 toxicity. Many of those compounds acted downstream of DUX4 in an oxidative stress pathway. Here, we extend this screen to an additional 160,000 compounds and, using greater stringency, identify a new set of DUX4-protective compounds. From 640 hits, we performed secondary screens, repurchased 46 of the most desirable, confirmed activity, and tested each for activity against other cell death-inducing insults. The majority of these compounds also protected against oxidative stress. Of the 100 repurchased compounds identified through both screens, only SHC40, 75, and 98 inhibited DUX4 target genes, but they also inhibited dox-mediated DUX4 expression. Using a target gene readout on the 640-compound hit set, we discovered three overlooked compounds, SHC351, 540, and 572, that inhibit DUX4 target gene upregulation without nonspecific effects on the Tet-on system. These novel inhibitors of DUX4 transcriptional activity may thus act on pathways or cofactors needed by DUX4 for transcriptional activation in these cells.
Insights
Researchers screened over 200,000 compounds to find new treatments for facioscapulohumeral muscular dystrophy (FSHD). They identified novel compounds that inhibit the toxic DUX4 gene, offering potential therapeutic strategies for FSHD.
Area of Science:
- Genetics
- Molecular Biology
- Pharmacology
Background:
- Facioscapulohumeral muscular dystrophy (FSHD) is a dominant genetic disorder.
- FSHD is caused by the expression of the DUX4 gene, which encodes a pathogenic transcription factor.
- Current treatments for FSHD are unavailable.
Purpose of the Study:
- To identify novel compounds that protect against DUX4 toxicity.
- To discover inhibitors of DUX4 transcriptional activity for potential FSHD therapies.
Main Methods:
- High-throughput screening of over 200,000 compounds.
- Secondary screening and confirmation of DUX4-protective compounds.
- Assays to evaluate compound activity against DUX4 target genes and other cell death insults.
Main Results:
- A large-scale screen identified new compounds protecting against DUX4 toxicity.
- The majority of identified compounds also protected against oxidative stress.
- Three novel compounds (SHC351, 540, 572) were found to inhibit DUX4 target gene upregulation without affecting the DUX4 induction system.
Conclusions:
- Novel compounds inhibiting DUX4 transcriptional activity were discovered.
- These compounds may target pathways or cofactors essential for DUX4 activation.
- This research offers potential therapeutic avenues for facioscapulohumeral muscular dystrophy.
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