首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Targeting Discoidin Domain Receptor 1 (DDR1) Signaling and Its Crosstalk with β1-Integrin Emerges as a Key Factor for Breast Cancer Chemosensitization upon Collagen Type 1 Binding
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Targeting Discoidin Domain Receptor 1 (DDR1) Signaling and Its Crosstalk with β1-Integrin Emerges as a Key Factor for Breast Cancer Chemosensitization upon Collagen Type 1 Binding

机译:靶向盘状蛋白域受体1(DDR1)信号传导及其与β1-整联蛋白的串扰作为胶原蛋白化学浓汤的关键因素1型结合

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摘要

Collagen type 1 (COL1) is a ubiquitously existing extracellular matrix protein whose high density in breast tissue favors metastasis and chemoresistance. COL1-binding of MDA-MB-231 and MCF-7 breast cancer cells is mainly dependent on β -integrins (ITGB1). Here, we elucidate the signaling of chemoresistance in both cell lines and their ITGB1-knockdown mutants and elucidated MAPK pathway to be strongly upregulated upon COL1 binding. Notably, Discoidin Domain Receptor 1 (DDR1) was identified as another important COL1-sensor, which is permanently active but takes over the role of COL1-receptor maintaining MAPK activation in ITGB1-knockdown cells. Consequently, inhibition of DDR1 and ERK1/2 act synergistically, and sensitize the cells for cytostatic treatments using mitoxantrone, or doxorubicin, which was associated with an impaired ABCG2 drug efflux transporter activity. These data favor DDR1 as a promising target for cancer cell sensitization, most likely in combination with MAPK pathway inhibitors to circumvent COL1 induced transporter resistance axis. Since ITGB1-knockdown also induces upregulation of pEGFR in MDA-MB-231 cells, inhibitory approaches including EGFR inhibitors, such as gefitinib appear promising for pharmacological interference. These findings provide evidence for the highly dynamic adaptation of breast cancer cells in maintaining matrix binding to circumvent cytotoxicity and highlight DDR1 signaling as a target for sensitization approaches.
机译:胶原蛋白1(COL1)是一种普遍存在的现有细胞外基质蛋白,其高密度在乳腺组织中有利于转移和化学抑制。 MDA-MB-231和MCF-7乳腺癌细胞的COL1结合主要依赖于β-环菌素(ITGB1)。这里,我们阐明在细胞系和ITGB1敲低突变体中的化学渗透度的信号传导,并在COL1结合时阐明MAPK途径被强烈上调。值得注意的是,盘状蛋白域受体1(DDR1)被鉴定为另一个重要的COL1传感器,其是永久性活性的,但接管COL1受体在ITGB1敲低细胞中维持MAPK活化的作用。因此,DDR1和ERK1 / 2对DDR1和ERK1 / 2的抑制协同作用,并使细胞敏感使用含有尿催化剂的细胞抑制治疗方法,或者具有含有损伤的ABCG2药物流出转运蛋白活性的细胞毒素。这些数据最有利于DDR1作为癌细胞致敏的有希望的靶标,最可能与MAPK途径抑制剂组合,以规避COL1诱导的转运轴。由于ITGB1-kearkdown还诱导MDA-MB-231细胞中PEGFR的上调,因此包括EGFR抑制剂(例如Gefitinib)的抑制方法对于药理学干扰似乎有望。这些发现提供了乳腺癌细胞高度动态适应在维持基质结合到旨在规避细胞毒性的证据,并突出显示DDR1信号传导作为敏化方法的靶标。

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