ELF3 suppresses gallbladder cancer development through downregulation of the EREG/EGFR/mTOR complex 1 signalling pathway

Author:

Nakamura Takeharu1ORCID,Nishikawa Yoshihiro12ORCID,Shiokawa Masahiro1,Takeda Haruhiko1ORCID,Yokode Masataka1,Matsumoto Shimpei1,Muramoto Yuya1ORCID,Ota Sakiko1,Yoshida Hiroyuki1,Okada Hirokazu1,Kuwada Takeshi1,Marui Saiko1,Matsumori Tomoaki1,Maruno Takahisa1,Uza Norimitsu1ORCID,Kodama Yuzo2,Hatano Etsuro3ORCID,Seno Hiroshi1ORCID

Affiliation:

1. Department of Gastroenterology and Hepatology Kyoto University Graduate School of Medicine Kyoto Japan

2. Department of Gastroenterology Kobe University Graduate School of Medicine Kobe Japan

3. Division of Hepato‐Biliary‐Pancreatic Surgery and Transplantation, Department of Surgery Kyoto University Graduate School of Medicine Kyoto Japan

Abstract

AbstractThe prognosis of gallbladder cancer (GBC) remains poor, and a better understanding of GBC molecular mechanisms is important. Genome sequencing of human GBC has demonstrated that loss‐of‐function mutations of E74‐like ETS transcription factor 3 (ELF3) are frequently observed, with ELF3 considered to be a tumour suppressor in GBC. To clarify the underlying molecular mechanisms by which ELF3 suppresses GBC development, we performed in vivo analysis using a combination of autochthonous and allograft mouse models. We first evaluated the clinical significance of ELF3 expression in human GBC tissues and found that low ELF3 expression was associated with advanced clinical stage and deep tumour invasion. For in vivo analysis, we generated Pdx1‐Cre; KrasG12D; Trp53R172H; Elf3f/f (KPCE) mice and Pdx1‐Cre; KrasG12D; Trp53R172H; Elf3wt/wt (KPC) mice as a control and analysed their gallbladders histologically. KPCE mice developed larger papillary lesions in the gallbladder than those developed by KPC mice. Organoids established from the gallbladders of KPCE and KPC mice were analysed in vitro. RNA sequencing showed upregulated expression of epiregulin (Ereg) in KPCE organoids, and western blotting revealed that EGFR/mechanical targets of rapamycin complex 1 (mTORC1) were upregulated in KPCE organoids. In addition, ChIP assays on Elf3‐overexpressing KPCE organoids showed that ELF3 directly regulated Ereg. Ereg deletion in KPCE organoids (using CRISPR/Cas9) induced EGFR/mTORC1 downregulation, indicating that ELF3 controlled EGFR/mTORC1 activity through regulation of Ereg expression. We also generated allograft mouse models using KPCE and KPC organoids and found that KPCE organoid allograft tumours exhibited poorly differentiated structures with mTORC1 upregulation and mesenchymal phenotype, which were suppressed by Ereg deletion. Furthermore, EGFR/mTORC1 inhibition suppressed cell proliferation and epithelial–mesenchymal transition in KPCE organoids. Our results suggest that ELF3 suppresses GBC development via downregulation of EREG/EGFR/mTORC1 signalling. EGFR/mTORC1 inhibition is a potential therapeutic option for GBC with ELF3 mutation. © 2023 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.

Funder

Japan Agency for Medical Research and Development

Japan Science and Technology Agency

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

Pathology and Forensic Medicine

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