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Combined Phosphoproteomics and Bioinformatics Strategy in Deciphering Drug Resistant Related Pathways in Triple Negative Breast Cancer

机译:结合蛋白质组学和生物信息学策略探讨三阴性乳腺癌的耐药相关途径

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摘要

Because of the absence of a clear therapeutic target for triple negative breast cancer (TNBC), conventional chemotherapy is the only available systemic treatment option for these patients. Despite chemotherapy treatment, TNBC patients still have worse prognosis when compared with other breast cancer patients. The study is to investigate unique phosphorylated proteins expressed in chemoresistant TNBC cell lines. In the current study, twelve TNBC cell lines were subjected to drug sensitivity assays against chemotherapy drugs docetaxel, doxorubicin, gemcitabine, and cisplatin. Based on their half maximal inhibitory concentrations, four resistant and two sensitive cell lines were selected for further analysis. The phosphopeptides from these cells were enriched with TiO2 beads and fractionated using strong cation exchange. 1,645 phosphoprotein groups and 9,585 unique phosphopeptides were identified by a high throughput LC-MS/MS system LTQ-Orbitrap. The phosphopeptides were further filtered with Ascore system and 1,340 phosphoprotein groups, 2,760 unique phosphopeptides, and 4,549 unique phosphosites were identified. Our study suggested that differentially phosphorylated Cdk5, PML, AP-1, and HSF-1 might work together to promote vimentin induced epithelial to mesenchymal transition (EMT) in the drug resistant cells. EGFR and HGF were also shown to be involved in this process.
机译:由于缺乏明确的三阴性乳腺癌(TNBC)治疗目标,常规化疗是这些患者唯一可用的全身治疗选择。尽管进行了化疗,但与其他乳腺癌患者相比,TNBC患者的预后仍然较差。该研究旨在研究在化学耐药性TNBC细胞系中表达的独特磷酸化蛋白。在本研究中,对十二种TNBC细胞系进行了针对化疗药物多西紫杉醇,阿霉素,吉西他滨和顺铂的药敏试验。根据它们的半数最大抑制浓度,选择了四个耐药细胞系和两个敏感细胞系进行进一步分析。来自这些细胞的磷酸肽富含TiO2珠,并使用强阳离子交换进行分级分离。通过高通量LC-MS / MS系统LTQ-Orbitrap鉴定出1,645个磷蛋白基团和9,585个独特的磷肽。用Ascore系统进一步过滤磷酸肽,鉴定出1,340个磷蛋白基团,2,760个独特的磷酸肽和4,549个独特的磷酸位。我们的研究表明,差异磷酸化的Cdk5,PML,AP-1和HSF-1可能共同促进波形蛋白诱导的耐药细胞中的上皮细胞向间质转化(EMT)。 EGFR和HGF也显示参与此过程。

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