Survival of pancreatic cancer cells lacking KRAS function

Mandar D. Muzumdar(Harvard University), Pan-Yu Chen(Massachusetts Institute of Technology), Kimberly Judith Dorans(Massachusetts Institute of Technology), Katherine Chung(Massachusetts Institute of Technology), Arjun Bhutkar(Massachusetts Institute of Technology), Erin Hong(Massachusetts Institute of Technology), Elisa M. Noll(German Cancer Research Center), Martin R. Sprick(German Cancer Research Center), Andreas Trumpp(German Cancer Research Center), Tyler Jacks(Howard Hughes Medical Institute)
Nature Communications
October 17, 2017
Cited by 187Open Access
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Abstract

Activating mutations in the proto-oncogene KRAS are a hallmark of pancreatic ductal adenocarcinoma (PDAC), an aggressive malignancy with few effective therapeutic options. Despite efforts to develop KRAS-targeted drugs, the absolute dependence of PDAC cells on KRAS remains incompletely understood. Here we model complete KRAS inhibition using CRISPR/Cas-mediated genome editing and demonstrate that KRAS is dispensable in a subset of human and mouse PDAC cells. Remarkably, nearly all KRAS deficient cells exhibit phosphoinositide 3-kinase (PI3K)-dependent mitogen-activated protein kinase (MAPK) signaling and induced sensitivity to PI3K inhibitors. Furthermore, comparison of gene expression profiles of PDAC cells retaining or lacking KRAS reveal a role of KRAS in the suppression of metastasis-related genes. Collectively, these data underscore the potential for PDAC resistance to even the very best KRAS inhibitors and provide insights into mechanisms of response and resistance to KRAS inhibition.


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