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ELF3 通过下调 ERG/EGFR/mTOR 复合物 1 信号通路抑制胆囊癌的发展。

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

机构信息

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

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

出版信息

J Pathol. 2023 Sep;261(1):28-42. doi: 10.1002/path.6144. Epub 2023 Jun 22.

Abstract

The 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; Kras ; Trp53 ; Elf3 (KPCE) mice and Pdx1-Cre; Kras ; Trp53 ; Elf3 (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.

摘要

胆囊癌(GBC)的预后仍然很差,因此深入了解 GBC 的分子机制非常重要。人类 GBC 的基因组测序表明,E74 样 ETS 转录因子 3(ELF3)的功能丧失性突变经常发生,ELF3 被认为是 GBC 的肿瘤抑制因子。为了阐明 ELF3 抑制 GBC 发展的潜在分子机制,我们使用同源和同种异体小鼠模型进行了体内分析。我们首先评估了 ELF3 表达在人类 GBC 组织中的临床意义,发现低 ELF3 表达与晚期临床阶段和肿瘤深部浸润有关。为了进行体内分析,我们生成了 Pdx1-Cre; Kras ; Trp53 ; Elf3 (KPCE) 小鼠和 Pdx1-Cre; Kras ; Trp53 ; Elf3 (KPC) 小鼠作为对照,并对其胆囊进行了组织学分析。与 KPC 小鼠相比,KPCE 小鼠的胆囊中形成了更大的乳头状病变。从 KPCE 和 KPC 小鼠的胆囊中建立的类器官在体外进行了分析。RNA 测序显示 KPCE 类器官中 Ereg 的表达上调,Western blot 显示 KPCE 类器官中 EGFR/机械雷帕霉素靶蛋白复合物 1 (mTORC1) 上调。此外,在过表达 ELF3 的 KPCE 类器官上进行的 ChIP 测定表明,ELF3 可直接调节 Ereg。在 KPCE 类器官中(使用 CRISPR/Cas9)删除 Ereg 可诱导 EGFR/mTORC1 下调,表明 ELF3 通过调节 Ereg 表达来控制 EGFR/mTORC1 活性。我们还使用 KPCE 和 KPC 类器官生成了同种异体移植小鼠模型,发现 KPCE 类器官同种异体移植肿瘤表现出分化不良的结构,mTORC1 上调和间充质表型,而 Ereg 删除可抑制这些结构。此外,EGFR/mTORC1 抑制可抑制 KPCE 类器官的细胞增殖和上皮-间充质转化。我们的结果表明,ELF3 通过下调 EREG/EGFR/mTORC1 信号通路抑制 GBC 的发展。EGFR/mTORC1 抑制可能是 ELF3 突变的 GBC 的一种潜在治疗选择。

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