Stromal-derived NRG1 enables oncogenic KRAS bypass in pancreas cancer

Author:

Han JinchengORCID,Xu Jiaqian,Liu Yonghong,Liang Shaoheng,LaBella Kyle A.ORCID,Chakravarti Deepavali,Spring Denise J.ORCID,Xia Yan,DePinho Ronald A.ORCID

Abstract

Activating KRAS mutations (KRAS*) in pancreatic ductal adenocarcinoma (PDAC) drive anabolic metabolism and support tumor maintenance. KRAS* inhibitors show initial antitumor activity followed by recurrence due to cancer cell-intrinsic and immune-mediated paracrine mechanisms. Here, we explored the potential role of cancer-associated fibroblasts (CAFs) in enabling KRAS* bypass and identified CAF-derived NRG1 activation of cancer cell ERBB2 and ERBB3 receptor tyrosine kinases as a mechanism by which KRAS*-independent growth is supported. Genetic extinction or pharmacological inhibition of KRAS* resulted in up-regulation of ERBB2 and ERBB3 expression in human and murine models, which prompted cancer cell utilization of CAF-derived NRG1 as a survival factor. Genetic depletion or pharmacological inhibition of ERBB2/3 or NRG1 abolished KRAS* bypass and synergized with KRASG12Dinhibitors in combination treatments in mouse and human PDAC models. Thus, we found that CAFs can contribute to KRAS* inhibitor therapy resistance via paracrine mechanisms, providing an actionable therapeutic strategy to improve the effectiveness of KRAS* inhibitors in PDAC patients.

Funder

Andrew Sowell-Wade Huggins Scholarship in Cancer Research

Cancer Prevention and Research Institute of Texas

National Institutes of Health

Publisher

Cold Spring Harbor Laboratory

Subject

Developmental Biology,Genetics

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