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首页> 外文期刊>The Journal of biological chemistry >Integrated Quantitative Analysis of the Phosphoproteome and Transcriptome in Tamoxifen-resistant Breast Cancer
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Integrated Quantitative Analysis of the Phosphoproteome and Transcriptome in Tamoxifen-resistant Breast Cancer

机译:抗氧氧致乳腺癌中磷脂体和转录组的综合定量分析

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Quantitative phosphoproteome and transcriptome analysis of ligand-stimulated MCF-7 human breast cancer cells was performed to understand the mechanisms of tamoxifen resistance at a system level. Phosphoproteome data revealed that WT cells were more enriched with phospho-proteins than tamoxifen-resistant cells after stimulation with ligands. Surprisingly, decreased phosphorylation after ligand perturbation was more common than increased phosphorylation. In particular, 17β-estradiol induced down-regulation in WT cells at a very high rate. 17β-Estradiol and the ErbB ligand heregulin induced almost equal numbers of up-regulated phospho-proteins in WT cells. Pathway and motif activity analyses using transcriptome data additionally suggested that deregulated activation of GSK3β (glycogen-synthase kinase 3β) and MAPK1/3 signaling might be associated with altered activation of cAMP-responsive element-binding protein and AP-1 transcription factors in tamoxifen-resistant cells, and this hypothesis was validated by reporter assays. An examination of clinical samples revealed that inhibitory phosphorylation of GSK3β at serine 9 was significantly lower in tamoxifen-treated breast cancer patients that eventually had relapses, implying that activation of GSK3β may be associated with the tamoxifen-resistant phenotype. Thus, the combined phosphoproteome and transcriptome data set analyses revealed distinct signal transcription programs in tumor cells and provided a novel molecular target to understand tamoxifen resistance.
机译:进行定量磷脂蛋白酶组和配体刺激的MCF-7人乳腺癌细胞的转录组分析,以了解在系统水平下他莫氧基抗性的机制。磷蛋白酶组数据显示,在用配体刺激后,磷蛋白更富含磷蛋白的磷蛋白。令人惊讶的是,在配体扰动后的磷酸化比增加的磷酸化更常见。特别是,17β-雌二醇以非常高的速率在WT细胞中诱导下调。 17β-雌二醇和ERBB配体在这里诱导在WT细胞中几乎相等的上调磷蛋白。使用转录组数据的途径和基序活性分析另外提出了GSK3β(糖原 - 合酶激酶3β)和MAPK1 / 3信号传导的解除沉积活化可能与Tamoxifen中的CAMP响应元件结合蛋白和AP-1转录因子的改变激活相关。通过报告分析验证了细胞,并且通过报告分析验证了该假设。对临床样品的检查表明,在最终已经复发的三氧肟治疗的乳腺癌患者中,丝氨酸9的GSK3β的抑制磷酸化显着降低,这意味着GSK3β的激活可以与他氧基抗性表型相关联。因此,组合的磷酸溶解组和转录组数据集分析揭示了肿瘤细胞中的不同信号转录程序,并提供了一种了解他莫氧基抗性的新的分子靶标。

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