Inflammation-Induced NFATc1–STAT3 Transcription Complex Promotes Pancreatic Cancer Initiation by Kras G12D
Author(s) -
Sandra Baumgart,
Nai-Ming Chen,
Jens T. Siveke,
Alexander König,
JinSan Zhang,
Shiv K. Singh,
Elmar Wolf,
Marek Bartkuhn,
Iréne Esposito,
Elisabeth Heßmann,
Johanna Reinecke,
Julius Nikorowitsch,
Marius Brunner,
Garima Singh,
Martín E. Fernández-Zapico,
Thomas C. Smyrk,
William R. Bamlet,
Martin Eilers,
Albrecht Neeße,
Thomas M. Gress,
Daniel D. Billadeau,
David A. Tuveson,
Raúl Urrutia,
Volker Ellenrieder
Publication year - 2014
Publication title -
cancer discovery
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 6.795
H-Index - 163
eISSN - 2159-8290
pISSN - 2159-8274
DOI - 10.1158/2159-8290.cd-13-0593
Subject(s) - kras , stat3 , pancreatic cancer , cancer research , inflammation , transcription factor , transcription (linguistics) , cancer , biology , signal transduction , microbiology and biotechnology , immunology , gene , genetics , colorectal cancer , philosophy , linguistics
Cancer-associated inflammation is a molecular key feature in pancreatic ductal adenocarcinoma. Oncogenic KRAS in conjunction with persistent inflammation is known to accelerate carcinogenesis, although the underlying mechanisms remain poorly understood. Here, we outline a novel pathway whereby the transcription factors NFATc1 and STAT3 cooperate in pancreatic epithelial cells to promote Kras(G12D)-driven carcinogenesis. NFATc1 activation is induced by inflammation and itself accelerates inflammation-induced carcinogenesis in Kras(G12D) mice, whereas genetic or pharmacologic ablation of NFATc1 attenuates this effect. Mechanistically, NFATc1 complexes with STAT3 for enhancer-promoter communications at jointly regulated genes involved in oncogenesis, for example, Cyclin, EGFR and WNT family members. The NFATc1-STAT3 cooperativity is operative in pancreatitis-mediated carcinogenesis as well as in established human pancreatic cancer. Together, these studies unravel new mechanisms of inflammatory-driven pancreatic carcinogenesis and suggest beneficial effects of chemopreventive strategies using drugs that are currently available for targeting these factors in clinical trials.
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