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Argonaute 2 在胰腺癌发展中 EGFR-KRAS 信号通路中的重要作用。

An essential role for Argonaute 2 in EGFR-KRAS signaling in pancreatic cancer development.

机构信息

Michigan Center for Translational Pathology, University of Michigan, Ann Arbor, MI, 48109, USA.

Department of Pathology, University of Michigan, Ann Arbor, MI, 48109, USA.

出版信息

Nat Commun. 2020 Jun 4;11(1):2817. doi: 10.1038/s41467-020-16309-2.

Abstract

Both KRAS and EGFR are essential mediators of pancreatic cancer development and interact with Argonaute 2 (AGO2) to perturb its function. Here, in a mouse model of mutant KRAS-driven pancreatic cancer, loss of AGO2 allows precursor lesion (PanIN) formation yet prevents progression to pancreatic ductal adenocarcinoma (PDAC). Precursor lesions with AGO2 ablation undergo oncogene-induced senescence with altered microRNA expression and EGFR/RAS signaling, bypassed by loss of p53. In mouse and human pancreatic tissues, PDAC progression is associated with increased plasma membrane localization of RAS/AGO2. Furthermore, phosphorylation of AGO2 disrupts both the wild-type and oncogenic KRAS-AGO2 interaction, albeit under different conditions. ARS-1620 (G12C-specific inhibitor) disrupts the KRAS-AGO2 interaction, suggesting that the interaction is targetable. Altogether, our study supports a biphasic model of pancreatic cancer development: an AGO2-independent early phase of PanIN formation reliant on EGFR-RAS signaling, and an AGO2-dependent phase wherein the mutant KRAS-AGO2 interaction is critical for PDAC progression.

摘要

KRAS 和 EGFR 都是胰腺癌发展的重要介质,它们与 Argonaute 2(AGO2)相互作用,扰乱其功能。在这里,在突变 KRAS 驱动的胰腺癌小鼠模型中,AGO2 的缺失允许前体病变(PanIN)形成,但阻止了向胰腺导管腺癌(PDAC)的进展。AGO2 缺失的前体病变经历致癌基因诱导的衰老,伴随着 miRNA 表达和 EGFR/RAS 信号的改变,这被 p53 的缺失所绕过。在小鼠和人类胰腺组织中,PDAC 的进展与 RAS/AGO2 的质膜定位增加有关。此外,AGO2 的磷酸化破坏了野生型和致癌 KRAS-AGO2 相互作用,尽管在不同的条件下。ARS-1620(G12C 特异性抑制剂)破坏了 KRAS-AGO2 相互作用,表明该相互作用是可靶向的。总的来说,我们的研究支持胰腺癌发展的双相模型:依赖于 EGFR-RAS 信号的 AGO2 非依赖性 PanIN 形成的早期阶段,以及 AGO2 依赖性阶段,其中突变 KRAS-AGO2 相互作用对于 PDAC 进展至关重要。

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