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RNAseq of Mouse Embryonic Fibroblasts(MEFs) stimulated by IL-17

GSE263596 Mus musculus Expression profiling by high throughput sequencing 4 samples Submitted 2024/06/06 Platform GPL24247
Summary
The IL-17 receptor adaptor molecule Act1, an RNA binding protein, plays a critical role in IL-17-mediated cancer progression. Here we report a novel mechanism for how IL-17/Act1 induces chemoresistance by modulating redox homeostasis through epitranscriptomic regulation of antioxidant RNA metabolism. Transcriptome-wide mapping of direct Act1-RNA interactions revealed that Act1 binds to the 5'UTR of antioxidant mRNAs and Wilms' tumor 1-associating protein (WTAP), a key regulator in m6A methyltransferase complex. Strikingly, Act1's binding sites are located in proximity to m6A modification sites, which allows Act1 to promote the recruitment of elF3G for cap-independent translation. Loss of Act1’s RNA binding activity or Wtap knockdown abolished IL-17-induced m6A modification and translation of Wtap and antioxidant mRNAs, indicating a feedforward mechanism of Act1-WTAP loop. We then developed antisense oligonucleotides (Wtap ASO) that specifically disrupts Act1’s binding to Wtap mRNA, abolishing IL-17/Act1-WTAP-mediated antioxidant protein production during chemotherapy. Wtap ASO substantially increased the antitumor efficacy of cisplatin, demonstrating a potential therapeutic strategy for chemoresistance.
Published in
Act1 drives chemoresistance via regulation of antioxidant RNA metabolism and redox homeostasis
Hong L, Herjan T, Chen X et al. · The Journal of experimental medicine 2024 · PMID 38861022 · doi:10.1084/jem.20231442
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Also filed as BioProject PRJNA1098232 and SRA study SRP500599. Searching any of these in the dataset finder brings you back here.

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