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Full-Text Articles in Medicine and Health Sciences
Master Transcription Factor Reprogramming Unleashes Selective Translation Promoting Castration Resistance And Immune Evasion In Lethal Prostate Cancer, Sandra Santasusagna, Shijia Zhu, Vijayakumar Jawalagatti, Marc Carceles-Cordon, Adam Ertel, Saioa Garcia-Longarte, Won-Min Song, Naoto Fujiwara, Peiyao Li, Isabel Mendizabal, Daniel P. Petrylak, William Kevin Kelly, E. Premkumar Reddy, Liguo Wang, Matthew J. Schiewer, Amaia Lujambio, Jeffrey Karnes, Karen E. Knudsen, Carlos Cordon-Cardo, Haidong Dong, Haojie Huang, Arkaitz Carracedo, Yujin Hoshida, Veronica Rodriguez-Bravo, Josep Domingo-Domenech
Master Transcription Factor Reprogramming Unleashes Selective Translation Promoting Castration Resistance And Immune Evasion In Lethal Prostate Cancer, Sandra Santasusagna, Shijia Zhu, Vijayakumar Jawalagatti, Marc Carceles-Cordon, Adam Ertel, Saioa Garcia-Longarte, Won-Min Song, Naoto Fujiwara, Peiyao Li, Isabel Mendizabal, Daniel P. Petrylak, William Kevin Kelly, E. Premkumar Reddy, Liguo Wang, Matthew J. Schiewer, Amaia Lujambio, Jeffrey Karnes, Karen E. Knudsen, Carlos Cordon-Cardo, Haidong Dong, Haojie Huang, Arkaitz Carracedo, Yujin Hoshida, Veronica Rodriguez-Bravo, Josep Domingo-Domenech
Department of Medical Oncology Faculty Papers
Signaling rewiring allows tumors to survive therapy. Here we show that the decrease of the master regulator microphthalmia transcription factor (MITF) in lethal prostate cancer unleashes eukaryotic initiation factor 3B (eIF3B)-dependent translation reprogramming of key mRNAs conferring resistance to androgen deprivation therapy (ADT) and promoting immune evasion. Mechanistically, MITF represses through direct promoter binding eIF3B, which in turn regulates the translation of specific mRNAs. Genome-wide eIF3B enhanced cross-linking immunoprecipitation sequencing (eCLIP-seq) showed specialized binding to a UC-rich motif present in subsets of 5' untranslated regions. Indeed, translation of the androgen receptor and major histocompatibility complex I (MHC-I) through this motif …