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A super-enhancer-regulated RNA-binding protein cascade drives pancreatic cancer.

Authors :
Luo, En-Ching
Luo, En-Ching
Yee, Brian
Campos, Tania
Tiriac, Hervé
Rothamel, Katherine
Cheng, Zhang
Jiao, Henry
Wang, Allen
Hah, Nasun
Lenkiewicz, Elizabeth
Lumibao, Jan
Truitt, Morgan
Estepa, Gabriela
Banayo, Ester
Bashi, Senada
Esparza, Edgar
Munoz, Ruben
Diedrich, Jolene
Sodir, Nicole
Mueller, Jasmine
Fraser, Cory
Borazanci, Erkut
Propper, David
Von Hoff, Daniel
Liddle, Christopher
Yu, Ruth
Atkins, Annette
Han, Haiyong
Lowy, Andrew
Barrett, Michael
Engle, Dannielle
Evan, Gerard
Yeo, Gene
Downes, Michael
Evans, Ronald
Antal, Corina
Oh, Tae
Aigner, Stefan
Luo, En-Ching
Luo, En-Ching
Yee, Brian
Campos, Tania
Tiriac, Hervé
Rothamel, Katherine
Cheng, Zhang
Jiao, Henry
Wang, Allen
Hah, Nasun
Lenkiewicz, Elizabeth
Lumibao, Jan
Truitt, Morgan
Estepa, Gabriela
Banayo, Ester
Bashi, Senada
Esparza, Edgar
Munoz, Ruben
Diedrich, Jolene
Sodir, Nicole
Mueller, Jasmine
Fraser, Cory
Borazanci, Erkut
Propper, David
Von Hoff, Daniel
Liddle, Christopher
Yu, Ruth
Atkins, Annette
Han, Haiyong
Lowy, Andrew
Barrett, Michael
Engle, Dannielle
Evan, Gerard
Yeo, Gene
Downes, Michael
Evans, Ronald
Antal, Corina
Oh, Tae
Aigner, Stefan
Source :
Nature Communications; vol 14, iss 1
Publication Year :
2023

Abstract

Pancreatic ductal adenocarcinoma (PDAC) is a lethal malignancy in need of new therapeutic options. Using unbiased analyses of super-enhancers (SEs) as sentinels of core genes involved in cell-specific function, here we uncover a druggable SE-mediated RNA-binding protein (RBP) cascade that supports PDAC growth through enhanced mRNA translation. This cascade is driven by a SE associated with the RBP heterogeneous nuclear ribonucleoprotein F, which stabilizes protein arginine methyltransferase 1 (PRMT1) to, in turn, control the translational mediator ubiquitin-associated protein 2-like. All three of these genes and the regulatory SE are essential for PDAC growth and coordinately regulated by the Myc oncogene. In line with this, modulation of the RBP network by PRMT1 inhibition reveals a unique vulnerability in Myc-high PDAC patient organoids and markedly reduces tumor growth in male mice. Our study highlights a functional link between epigenetic regulation and mRNA translation and identifies components that comprise unexpected therapeutic targets for PDAC.

Details

Database :
OAIster
Journal :
Nature Communications; vol 14, iss 1
Notes :
application/pdf, Nature Communications vol 14, iss 1
Publication Type :
Electronic Resource
Accession number :
edsoai.on1401031924
Document Type :
Electronic Resource