Oncogenic KRAS-Dependent Stromal Interleukin-33 Directs the Pancreatic Microenvironment to Promote Tumor Growth

Katelyn L. Donahue(University of Michigan), Hannah R. Watkoske(University of Michigan), Padma Kadiyala(University of Michigan), Wenting Du(University of Michigan), Kristee Brown(University of Michigan), Michael K. Scales(University of Michigan), Ahmed M. Elhossiny(University of Michigan), Carlos E. Espinoza(University of Michigan), Emily L. Lasse Opsahl(University of Michigan), Brian D. Griffith(University of Michigan), Yukang Wen(University of Michigan), Lei Sun(University of Michigan), Ashley Velez-Delgado(University of Michigan), Nur M. Renollet(University of Michigan), Jacqueline Morales(University of Michigan), Nicholas M. Nedzesky(University of Michigan), Rachael K. Baliira(University of Michigan), Rosa E. Menjivar(University of Michigan), Paola I. Medina-Cabrera(University of Michigan), Arvind Rao(University of Michigan), Benjamin L. Allen(University of Michigan), Jiaqi Shi(University of Michigan), Timothy L. Frankel(University of Michigan), Eileen S. Carpenter(University of Michigan), Filip Bednar(University of Michigan), Yaqing Zhang(University of Michigan), Marina Pasca di Magliano(University of Michigan)
Cancer Discovery
July 3, 2024
Cited by 49Open Access
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Abstract

Pancreatic cancer is characterized by an extensive fibroinflammatory microenvironment. During carcinogenesis, normal stromal cells are converted to cytokine-high cancer-associated fibroblasts (CAF). The mechanisms underlying this conversion, including the regulation and function of fibroblast-derived cytokines, are poorly understood. Thus, efforts to therapeutically target CAFs have so far failed. Herein, we show that signals from epithelial cells expressing oncogenic KRAS-a hallmark pancreatic cancer mutation-activate fibroblast autocrine signaling, which drives the expression of the cytokine IL33. Stromal IL33 expression remains high and dependent on epithelial KRAS throughout carcinogenesis; in turn, environmental stress induces interleukin-33 (IL33) secretion. Using compartment-specific IL33 knockout mice, we observed that lack of stromal IL33 leads to profound reprogramming of multiple components of the pancreatic tumor microenvironment, including CAFs, myeloid cells, and lymphocytes. Notably, loss of stromal IL33 leads to an increase in CD8+ T-cell infiltration and activation and, ultimately, reduced tumor growth. Significance: This study provides new insights into the mechanisms underlying the programming of CAFs and shows that during this process, expression of the cytokine IL33 is induced. CAF-derived IL33 has pleiotropic effects on the tumor microenvironment, supporting its potential as a therapeutic target.


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