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Targeting Met and Notch in the Lfng-deficient, Met-amplified triple-negative breast cancer

机译:针对Lfng缺陷,Met扩增的三阴性乳腺癌中的Met和Notch

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Triple negative breast cancer (TNBC) accounts for 15-20% of breast carcinomas and represents one of the most aggressive forms of this disease. Basal and claudin-low are the two main molecular subtypes among TNBCs. We previously reported that deletion of Lfng in mouse mammary gland caused deregulated Notch activation and induced basallike and claudin-low tumors with co-selection for Met amplification. In human breast cancers, the vast majority of basal tumors and a subset of claudin-low tumors show reduced Lfng expression. Elevated Met expression and activation is associated with basal as well as claudin-low subtypes. To examine roles of Met and Notch in TNBC cells, we established two cell lines that harbor Met amplification as well as Lfng deletion, and possess features of basal and claudin-low breast cancer subtypes. Pharmacological inhibition of Met not only suppressed cell growth, tumorsphere and colony formation, but also reversed epithelial-to-mesenchymal transition and inhibited cell migration in both cell lines. In contrast, inhibition of Notch signaling using a γ-secretase inhibitor (GSI) only suppressed colony formation. Interestingly, GSI had no effect as single agent, but exerted a synergistic effect with Met inhibitor, on cell growth in 2D culture. We found that inhibition of Met resulted in downregulation of Dll ligands and upregulation of Jagged ligands, leading to differential modulation of Notch signaling. Our results suggest that combination targeting of Met and Notch may prove beneficial for TNBC patients with Met overexpression and Notch hyperactivation.
机译:三阴性乳腺癌(TNBC)占乳腺癌的15-20%,是该疾病最具侵略性的形式之一。基底细胞和claudin-low是TNBC中的两个主要分子亚型。我们以前曾报道过,小鼠乳腺中Lfng的缺失会导致Notch激活失控,并伴随共选择Met扩增而诱导基底样和claudin低的肿瘤。在人类乳腺癌中,绝大多数基底肿瘤和低claudin肿瘤的子集显示Lfng表达降低。 Met的表达和激活升高与基础以及克劳丁低型亚型有关。为了检查Met和Notch在TNBC细胞中的作用,我们建立了两个具有Met扩增和Lfng缺失的细胞系,并具有基底型和claudin低型乳腺癌亚型的特征。 Met的药理学抑制作用不仅抑制细胞生长,肿瘤球和集落形成,而且还逆转了上皮到间充质的转变并抑制了两种细胞系中的细胞迁移。相反,使用γ-分泌酶抑制剂(GSI)抑制Notch信号传导仅抑制菌落形成。有趣的是,GSI作为单一试剂没有作用,但是与Met抑制剂对2D培养中的细胞生长产生了协同作用。我们发现抑制Met导致Dll配体的下调和锯齿状配体的上调,从而导致Notch信号的差异调节。我们的结果表明,Met和Notch的联合靶向可能证明对Met过表达和Notch过度活化的TNBC患者有益。

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