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A novel small-molecule inhibitor of trefoil factor 3 (TFF3) potentiates MEK1/2 inhibition in lung adenocarcinoma

机译:一种新的小分子抑制剂抑制剂抑制剂3(TFF3)肺腺癌中具有凸起的MEK1 / 2抑制作用

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TFF3 has been identified as a novel biomarker to distinguish between lung adenocarcinoma (ADC) and lung squamous-cell carcinoma (SCC). Herein, we determined the oncogenic functions of TFF3 and demonstrated the potential of pharmacological inhibition of TFF3 in lung ADC using a novel small-molecule inhibitor of TFF3 dimerization (AMPC). Forced expression of TFF3 in lung ADC cells enhanced cell proliferation and survival, increased anchorage-independent growth, cancer stem cell behavior, growth in 3D Matrigel, and cell migration and invasion. In contrast, depleted expression of TFF3 suppressed these cellular functions. Mechanistically, TFF3 exerted its oncogenic function through upregulation of ARAF and hence enhanced downstream activation of MEK1/2 and ERK1/2. Pharmacological inhibition of TFF3 by AMPC, resulted in markedly decreased cell survival, proliferation, 3D growth and foci formation, and impaired tumor growth in a xenograft mouse model. Moreover, the combination of various MEK1/2 inhibitors with AMPC exhibited synergistic inhibitory effects on lung ADC cell growth. In conclusion, this study provides the first evidence that TFF3 is a potent promoter of lung ADC progression. Targeting TFF3 with a novel small-molecule inhibitor alone or in combination with conventional MEK1/2 inhibitors are potential strategies to improve the outcome of lung ADC.
机译:TFF3已被识别为新型生物标志物,以区分肺腺癌(ADC)和肺鳞状细胞癌(SCC)。在此,我们确定了TFF3的致癌功能,并使用TFF3二聚化(AMPC)的新小分子抑制剂证明了TFF3在肺ADC中的药理抑制的可能性。 TFF3在肺癌细胞中的强迫表达增强了细胞增殖和存活,增加了锚定无关的生长,癌症干细胞行为,3D matrigel生长,以及细胞迁移和侵袭。相反,TFF3的耗尽表达抑制了这些蜂窝功能。机械上,TFF3通过ARAF的上调来施加致癌功能,因此增强了MEK1 / 2和ERK1 / 2的下游活化。通过AMPC的TFF3对TFF3的药理抑制导致细胞存活率显着降低,增殖,3D生长和焦点形成,并且肿瘤移植小鼠模型中的肿瘤生长受损。此外,各种MEK1 / 2抑制剂的组合具有安瓿对肺ADC细胞生长的协同抑制作用。总之,本研究提供了第一种证据,即TFF3是肺ADC进展的有效启动子。将TFF3用单独的小型分子抑制剂或与常规MEK1 / 2抑制剂组合靶向TFF3是改善肺ADC结果的潜在策略。

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