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Oncogenic KRAS-Driven Metabolic Reprogramming in Pancreatic Cancer Cells Utilizes Cytokines from the Tumor Microenvironment

Authors :
Pingna Deng
Federica Carbone
Anders Ström
Y. Alan Wang
Wen Ting Liao
Prateek Gulhati
Huamin Wang
Parker Denz
Jun Li
Anirban Maitra
Tingxin Zhang
Er Yen Yen
Qing Chang
Denise J. Spring
Surendra Chaurasiya
Deepavali Chakravarti
Ronald A. DePinho
Nagireddy Putluri
Giannicola Genovese
Vincent Bernard
Haoqiang Ying
Bidyut Ghosh
Xiaoying Shang
Prasenjit Dey
Jianhua Zhang
Jielin Liu
Frederick Cavallaro
Source :
Cancer Discov
Publication Year :
2019

Abstract

A hallmark of pancreatic ductal adenocarcinoma (PDAC) is an exuberant stroma comprised of diverse cell types that enable or suppress tumor progression. Here, we explored the role of oncogenic KRAS in protumorigenic signaling interactions between cancer cells and host cells. We show that KRAS mutation (KRAS*) drives cell-autonomous expression of type I cytokine receptor complexes (IL2rγ–IL4rα and IL2rγ–IL13rα1) in cancer cells that in turn are capable of receiving cytokine growth signals (IL4 or IL13) provided by invading Th2 cells in the microenvironment. Early neoplastic lesions show close proximity of cancer cells harboring KRAS* and Th2 cells producing IL4 and IL13. Activated IL2rγ–IL4rα and IL2rγ–IL13rα1 receptors signal primarily via JAK1–STAT6. Integrated transcriptomic, chromatin occupancy, and metabolomic studies identified MYC as a direct target of activated STAT6 and that MYC drives glycolysis. Thus, paracrine signaling in the tumor microenvironment plays a key role in the KRAS*-driven metabolic reprogramming of PDAC. Significance: Type II cytokines, secreted by Th2 cells in the tumor microenvironment, can stimulate cancer cell–intrinsic MYC transcriptional upregulation to drive glycolysis. This KRAS*-driven heterotypic signaling circuit in the early and advanced tumor microenvironment enables cooperative protumorigenic interactions, providing candidate therapeutic targets in the KRAS* pathway for this intractable disease.

Details

ISSN :
21598290
Volume :
10
Issue :
4
Database :
OpenAIRE
Journal :
Cancer discovery
Accession number :
edsair.doi.dedup.....c1a1cd28fc69e877e6bd4202636e9e51