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Oncogenic Wnt/STOP signaling regulates ribosome biogenesis in vivo

Publication ,  Journal Article
Madan, B; Harmston, N; Nallan, G; Montoya, A; Faull, P; Petretto, E; Virshup, D
2018

Activating mutations in the Wnt pathway drive a variety of cancers, but the specific targets and pathways activated by Wnt ligands are not fully understood. To bridge this knowledge gap, we performed a comprehensive time-course analysis of Wnt-dependent signaling pathways in an orthotopic model of Wnt-addicted pancreatic cancer, using a PORCN inhibitor currently in clinical trials, and validated key results in additional Wnt-addicted models. The analysis of temporal changes following Wnt withdrawal demonstrated direct and indirect regulation of >3,500 Wnt activated genes (23% of the transcriptome). Regulation was both transcriptional via Wnt/β-catenin, and through the modulation of protein abundance of important transcription factors including MYC via Wnt/STOP. Our study identifies a central role of Wnt /β-catenin and Wnt/STOP signaling in controlling ribosomal biogenesis, a key driver of cancer proliferation.

Duke Scholars

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Publication Date

2018
 

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Madan, B., Harmston, N., Nallan, G., Montoya, A., Faull, P., Petretto, E., & Virshup, D. (2018). Oncogenic Wnt/STOP signaling regulates ribosome biogenesis in vivo. https://doi.org/10.1101/326819
Madan, Babita, Nathan Harmston, Gahyathiri Nallan, Alex Montoya, Peter Faull, Enrico Petretto, and David Virshup. “Oncogenic Wnt/STOP signaling regulates ribosome biogenesis in vivo,” 2018. https://doi.org/10.1101/326819.
Madan B, Harmston N, Nallan G, Montoya A, Faull P, Petretto E, et al. Oncogenic Wnt/STOP signaling regulates ribosome biogenesis in vivo. 2018;
Madan, Babita, et al. Oncogenic Wnt/STOP signaling regulates ribosome biogenesis in vivo. 2018. Epmc, doi:10.1101/326819.
Madan B, Harmston N, Nallan G, Montoya A, Faull P, Petretto E, Virshup D. Oncogenic Wnt/STOP signaling regulates ribosome biogenesis in vivo. 2018;

DOI

Publication Date

2018