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KRASG12D- and BRAFV600E-induced Transformation of Murine Pancreatic Epithelial Cells Requires MEK/ERK-stimulated IGF1R Signaling

机译:KRasG12D-和鼠胰腺上皮细胞的BRaFV600E诱导的转化需要mEK / ERK刺激IGF1R信号

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摘要

Mutation of KRAS is a common initiating event in pancreatic ductal adenocarcinoma (PDAC). Yet, the specific roles of KRAS-stimulated signaling pathways in the transformation of pancreatic ductal epithelial cells (PDECs), putative cells of origin for PDAC, remain unclear. Here we demonstrate that KRASG12D and BRAFV600E enhance PDEC proliferation, and increase survival after exposure to apoptotic stimuli in a manner dependent on MEK/ERK and PI3K/AKT signaling. Interestingly, we find that activation of PI3K/AKT signaling occurs downstream of MEK, and is dependent on the autocrine activation of the insulin-like growth factor (IGF) receptor (IGF1R) by IGF2. Importantly, IGF1R inhibition impairs KRASG12D- and BRAFV600E-induced survival, whereas ectopic IGF2 expression rescues KRASG12D- and BRAFV600E-mediated survival downstream of MEK inhibition. Moreover, we demonstrate that KRASG12D- and BRAFV600E-induced tumor formation in an orthotopic model requires IGF1R. Interestingly, we show that while individual inhibition of MEK or IGF1R does not sensitize PDAC cells to apoptosis, their concomitant inhibition reduces survival. Our findings identify a novel mechanism of PI3K/AKT activation downstream of activated KRAS, illustrate the importance of MEK/ERK, PI3K/AKT, and IGF1R signaling in pancreatic tumor initiation, and suggest potential therapeutic strategies for this malignancy.
机译:KRAS突变是胰腺导管腺癌(PDAC)中的常见启动事件。然而,尚不清楚KRAS刺激的信号通路在胰腺导管上皮细胞(PDECs)(PDAC的推定细胞)转化中的具体作用。在这里,我们证明了KRAS G12D 和BRAF V600E 增强PDEC增殖,并以依赖MEK / ERK和PI3K / AKT信号转导的方式增加细胞凋亡刺激后的存活率。有趣的是,我们发现PI3K / AKT信号的激活发生在MEK的下游,并且依赖于IGF2对胰岛素样生长因子(IGF)受体(IGF1R)的自分泌激活。重要的是,IGF1R抑制会损害KRAS G12D -和BRAF V600E 诱导的存活,而异位IGF2表达可挽救KRAS G12D -和BRAF V600E 介导的MEK抑制下游生存。此外,我们证明,在原位模型中,KRAS G12D -和BRAF V600E 诱导的肿瘤形成需要IGF1R。有趣的是,我们表明,虽然对MEK或IGF1R的单独抑制不会使PDAC细胞对凋亡敏感,但它们的伴随抑制却降低了存活率。我们的发现确定了活化KRAS下游PI3K / AKT活化的新机制,说明了MEK / ERK,PI3K / AKT和IGF1R信号传导在胰腺肿瘤发生中的重要性,并提出了针对这种恶性肿瘤的潜在治疗策略。

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