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Irreversible JNK1-JUN inhibition by JNK-IN-8 sensitizes pancreatic cancer to 5-FU/FOLFOX chemotherapy
Matthew B. Lipner, Xianlu L. Peng, Chong Jin, Yi Xu, Yanzhe Gao, Michael P. East, Naim U. Rashid, Richard A. Moffitt, Silvia G. Herrera Loeza, Ashley B. Morrison, Brian T. Golitz, Cyrus Vaziri, Lee M. Graves, Gary L. Johnson, Jen Jen Yeh
Matthew B. Lipner, Xianlu L. Peng, Chong Jin, Yi Xu, Yanzhe Gao, Michael P. East, Naim U. Rashid, Richard A. Moffitt, Silvia G. Herrera Loeza, Ashley B. Morrison, Brian T. Golitz, Cyrus Vaziri, Lee M. Graves, Gary L. Johnson, Jen Jen Yeh
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Research Article Oncology Therapeutics

Irreversible JNK1-JUN inhibition by JNK-IN-8 sensitizes pancreatic cancer to 5-FU/FOLFOX chemotherapy

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Abstract

Over 55,000 people in the United States are diagnosed with pancreatic ductal adenocarcinoma (PDAC) yearly, and fewer than 20% of these patients survive a year beyond diagnosis. Chemotherapies are considered or used in nearly every PDAC case, but there is limited understanding of the complex signaling responses underlying resistance to these common treatments. Here, we take an unbiased approach to study protein kinase network changes following chemotherapies in patient-derived xenograft (PDX) models of PDAC to facilitate design of rational drug combinations. Proteomics profiling following chemotherapy regimens reveals that activation of JNK-JUN signaling occurs after 5-fluorouracil plus leucovorin (5-FU + LEU) and FOLFOX (5-FU + LEU plus oxaliplatin [OX]), but not after OX alone or gemcitabine. Cell and tumor growth assays with the irreversible inhibitor JNK-IN-8 and genetic manipulations demonstrate that JNK and JUN each contribute to chemoresistance and cancer cell survival after FOLFOX. Active JNK1 and JUN are specifically implicated in these effects, and synergy with JNK-IN-8 is linked to FOLFOX-mediated JUN activation, cell cycle dysregulation, and DNA damage response. This study highlights the potential for JNK-IN-8 as a biological tool and potential combination therapy with FOLFOX in PDAC and reinforces the need to tailor treatment to functional characteristics of individual tumors.

Authors

Matthew B. Lipner, Xianlu L. Peng, Chong Jin, Yi Xu, Yanzhe Gao, Michael P. East, Naim U. Rashid, Richard A. Moffitt, Silvia G. Herrera Loeza, Ashley B. Morrison, Brian T. Golitz, Cyrus Vaziri, Lee M. Graves, Gary L. Johnson, Jen Jen Yeh

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Figure 2

JNK-JUN inhibition with the highly specific irreversible inhibitor JNK-IN-8 is an attractive therapeutic strategy in PDAC.

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JNK-JUN inhibition with the highly specific irreversible inhibitor JNK-I...
(A) Kaplan-Meier plots comparing survival of patients with resected PDAC from the TCGA RNA-seq data set after splitting the cohort by expression of JNK1 or JNK2, or by the mean of rankings of 257 predicted JUN transcriptional targets (MSigDB: CREBP1CJUN_01). Significance determined by log-rank test shown with P values and hazard ratios (HR) determined by Cox proportional-hazards model. (B) Representative immunoblot after 12-hour treatment with DMSO or the covalent JNK inhibitor JNK-IN-8 in a P411-T1 PDX–derived cell line. KU80 used as loading control (n = 2). (C) MIB-MS analysis 1 hour after 1 μM JNK-IN-8 treatment in CFPAC-1 cells relative to DMSO-treated controls. JNK1 and JNK2 are highlighted in red. A total of 218 kinases were detected in both treatment and control; only kinases with |fold change| > 1.5 are shown. (D) Invasion through Matrigel transwells with representative images (original magnification ×20 [1 × 20]) and quantified growth analyzed by 1-way ANOVA with Holm-Sidak’s multiple comparisons test (n = 2–3). *P < 0.05; **P < 0.01, ***P < 0.001.

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