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Oncogenic KRAS/ERK/JUNB signaling suppresses differentiation regulator GATA6 in pancreatic cancer
Zheng Zhong, Xinang Cao, Pei-Ju Liao, Raman Sethi, Jeffrey A. Klomp, Clint A. Stalnecker, Jinmiao Chen, Yue Wan, Channing J. Der, David M. Virshup
Zheng Zhong, Xinang Cao, Pei-Ju Liao, Raman Sethi, Jeffrey A. Klomp, Clint A. Stalnecker, Jinmiao Chen, Yue Wan, Channing J. Der, David M. Virshup
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Research Article Cell biology Oncology

Oncogenic KRAS/ERK/JUNB signaling suppresses differentiation regulator GATA6 in pancreatic cancer

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Abstract

GATA6 is a master regulator of differentiation in the pancreas, and its expression levels determine the 2 main molecular subtypes of pancreatic cancer. High GATA6 levels contribute to the classical pancreatic cancer subtype, which is associated with a higher degree of tumor differentiation and better disease prognosis. However, why GATA6 expression varies across pancreatic cancers and what regulates GATA6 expression remain elusive. Here, we report that oncogenic KRAS-activated ERK signaling suppresses GATA6 transcription in pancreatic cancers. GATA6 mRNA levels inversely correlated with KRAS/ERK activity in pancreatic tumors. A genome-wide CRISPR screen in a GATA6-EGFP reporter knockin cell line identified JUNB as the ERK-regulated transcriptional repressor for GATA6. Active ERK stabilized JUNB protein, while KRAS/ERK inhibition led to ubiquitin-independent proteasomal degradation of JUNB and increased transcription of GATA6. Upregulation of GATA6 enhanced chemosensitivity of pancreatic cancer cells, and KRAS/ERK inhibitors synergized with chemotherapy in a GATA6-dependent manner. Our study identifies how oncogenic KRAS/ERK signaling suppresses GATA6 to cause dedifferentiation in pancreatic cancer. Combining KRAS/ERK inhibitors with standard-of-care chemotherapies could be a promising therapeutic strategy for treating pancreatic cancers.

Authors

Zheng Zhong, Xinang Cao, Pei-Ju Liao, Raman Sethi, Jeffrey A. Klomp, Clint A. Stalnecker, Jinmiao Chen, Yue Wan, Channing J. Der, David M. Virshup

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Figure 8

ERK inhibition promotes ubiquitin-independent proteasomal degradation of JUNB.

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ERK inhibition promotes ubiquitin-independent proteasomal degradation of...
(A) Inhibition of the proteasome, rather than ubiquitylation or neddylation, stabilized JUNB. HPAF-II and Panc08.13 cells were treated with DMSO or inhibitors of the proteasome (1 μM bortezomib or 10 μM MG132), ubiquitylation (1 μM MLN7243), or neddylation (1 μM MLN4924) for 7 h, followed by Western blot analysis. (B) JUNB was not ubiquitylated during degradation. HPAF-II cells were treated with 10 μM MG132 with or without 2 μM ERK inhibitor SCH772984 for 6 h. Cell lysates were pulled down using TUBE2-conjugated beads that captured polyubiquitylated proteins. Control (Ctrl) beads refers to beads without TUBE2 conjugation. (C and D) Inhibition of proteasome, rather than ubiquitylation, blocked JUNB degradation induced by MEK/ERK inhibition. (C) HPAF-II and Panc08.13 cells were treated with 40 μg/mL CHX and 100 nM trametinib for the indicated time, in the presence of DMSO or inhibitors of the proteasome (1 μM bortezomib) or ubiquitination (1 μM MLN7243), followed by Western blot analysis. (D) Quantification of JUNB bands. n = 2 biological replicates/condition.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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