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Proteome-wide analysis of protein abundance and turnover remodelling during oncogenic transformation of human breast epithelial cells

机译:人乳腺上皮细胞致癌转化过程中蛋白质丰富和周转改造的蛋白质全组分析

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摘要

Background: Viral oncogenes and mutated proto-oncogenes are potent drivers of cancer malignancy. Downstream of the oncogenic trigger are alterations in protein properties that give rise to cellular transformation and the acquisition of malignant cellular phenotypes. Developments in mass spectrometry enable large-scale, multidimensional characterisation of proteomes. Such techniques could provide an unprecedented, unbiased view of how oncogene activation remodels a human cell proteome. Methods: Using quantitative MS-based proteomics and cellular assays, we analysed how transformation induced by activating v-Src kinase remodels the proteome and cellular phenotypes of breast epithelial (MCF10A) cells. SILAC MS was used to comprehensively characterise the MCF10A proteome and to measure v-Src-induced changes in protein abundance across seven time-points (1-72 hrs). We used pulse-SILAC MS (Boisvert et al., 2012), to compare protein synthesis and turnover in control and transformed cells. Follow-on experiments employed a combination of cellular and functional assays to characterise the roles of selected Src-responsive proteins. Results: Src-induced transformation changed the expression and/or turnover levels of ~3% of proteins, affecting ~1.5% of the total protein molecules in the cell. Transformation increased the average rate of proteome turnover and disrupted protein homeostasis. We identify distinct classes of protein kinetics in response to Src activation. We demonstrate that members of the polycomb repressive complex 1 (PRC1) are important regulators of invasion and migration in MCF10A cells. Many Src-regulated proteins are present in low abundance and some are regulated post-transcriptionally. The signature of Src-responsive proteins is highly predictive of poor patient survival across multiple cancer types. Open access to search and interactively explore all these proteomic data is provided via the EPD database (www.peptracker.com/epd). Conclusions: We present the first comprehensive analysis measuring how protein expression and protein turnover is affected by cell transformation, providing a detailed picture at the protein level of the consequences of activation of an oncogene.
机译:背景:病毒癌癌和突变的原型癌症是癌症恶性肿瘤的有效驱动因素。致癌触发的下游是蛋白质特性的改变,其产生细胞转化和捕获恶性细胞表型。质谱的发展能够大规模,蛋白质素的多维特征。这些技术可以提供前所未有的,无偏见的观点,对单烯激活如何重塑人细胞蛋白质组。方法:采用基于定量的MS的蛋白质组学和细胞测定,我们分析了通过激活V-SRC激酶引起的转化如何重塑乳腺上皮(MCF10A)细胞的蛋白质组和细胞表型。 Silac MS用于全面地表征MCF10A蛋白质组,并测量七个时间点(1-72小时)蛋白质丰度的V-SRC诱导的变化。我们使用了Pulse-Silac MS(Boisvert等,2012),比较了对照和转化细胞中的蛋白质合成和替换。后续实验采用细胞和功能测定的组合,以表征选定的SRC响应蛋白的作用。结果:SRC诱导的转化改变了〜3%的蛋白质的表达和/或周转水平,影响细胞中总蛋白质分子的〜1.5%。转化增加了蛋白质组营业额的平均速率和破坏蛋白质稳态。响应SRC活化,我们识别不同类别的蛋白质动力学类别。我们证明了Polycomb压抑复合体1(PRC1)的成员是MCF10A细胞中的侵袭和迁移的重要调节因素。许多SRC调节蛋白质存在于低丰度中,并且有些是在转录后调节。 SRC响应蛋白的签名高度预测多种癌症类型的患者存活率差。通过EPD数据库(www.peptracker.com/epd),开放访问搜索和交互式探索所有这些蛋白质组学数据。结论:我们提出了一种综合分析,测量蛋白质表达和蛋白质转化的影响如何受细胞转化的影响,为癌基因激活后果的蛋白质水平提供详细的图像。

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