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ERBB3/ERBB4信号通路的定量磷酸化蛋白质组学分析

Quantitative Phosphoproteomics Analysis of ERBB3/ERBB4 Signaling.

作者信息

Wandinger Sebastian K, Lahortiga Idoya, Jacobs Kris, Klammer Martin, Jordan Nicole, Elschenbroich Sarah, Parade Marc, Jacoby Edgar, Linders Joannes T M, Brehmer Dirk, Cools Jan, Daub Henrik

机构信息

Evotec (München) GmbH, Martinsried, Germany.

VIB Center for the Biology of Disease, Leuven, Belgium.

出版信息

PLoS One. 2016 Jan 8;11(1):e0146100. doi: 10.1371/journal.pone.0146100. eCollection 2016.

Abstract

The four members of the epidermal growth factor receptor (EGFR/ERBB) family form homo- and heterodimers which mediate ligand-specific regulation of many key cellular processes in normal and cancer tissues. While signaling through the EGFR has been extensively studied on the molecular level, signal transduction through ERBB3/ERBB4 heterodimers is less well understood. Here, we generated isogenic mouse Ba/F3 cells that express full-length and functional membrane-integrated ERBB3 and ERBB4 or ERBB4 alone, to serve as a defined cellular model for biological and phosphoproteomics analysis of ERBB3/ERBB4 signaling. ERBB3 co-expression significantly enhanced Ba/F3 cell proliferation upon neuregulin-1 (NRG1) treatment. For comprehensive signaling studies we performed quantitative mass spectrometry (MS) experiments to compare the basal ERBB3/ERBB4 cell phosphoproteome to NRG1 treatment of ERBB3/ERBB4 and ERBB4 cells. We employed a workflow comprising differential isotope labeling with mTRAQ reagents followed by chromatographic peptide separation and final phosphopeptide enrichment prior to MS analysis. Overall, we identified 9686 phosphorylation sites which could be confidently localized to specific residues. Statistical analysis of three replicate experiments revealed 492 phosphorylation sites which were significantly changed in NRG1-treated ERBB3/ERBB4 cells. Bioinformatics data analysis recapitulated regulation of mitogen-activated protein kinase and Akt pathways, but also indicated signaling links to cytoskeletal functions and nuclear biology. Comparative assessment of NRG1-stimulated ERBB4 Ba/F3 cells revealed that ERBB3 did not trigger defined signaling pathways but more broadly enhanced phosphoproteome regulation in cells expressing both receptors. In conclusion, our data provide the first global picture of ERBB3/ERBB4 signaling and provide numerous potential starting points for further mechanistic studies.

摘要

表皮生长因子受体(EGFR/ERBB)家族的四个成员可形成同二聚体和异二聚体,介导正常组织和癌组织中许多关键细胞过程的配体特异性调节。虽然通过EGFR的信号传导已在分子水平上得到广泛研究,但通过ERBB3/ERBB4异二聚体的信号转导了解较少。在此,我们构建了同基因小鼠Ba/F3细胞,其表达全长且功能性的膜整合型ERBB3和ERBB4或单独的ERBB4,作为用于ERBB3/ERBB4信号传导生物学和磷酸化蛋白质组学分析的明确细胞模型。在神经调节蛋白-1(NRG1)处理后,ERBB3共表达显著增强了Ba/F3细胞增殖。为进行全面的信号传导研究,我们进行了定量质谱(MS)实验,以比较基础ERBB3/ERBB4细胞磷酸化蛋白质组与NRG1处理后的ERBB3/ERBB4和ERBB4细胞。我们采用了一种工作流程,包括用mTRAQ试剂进行差异同位素标记,随后进行色谱肽分离,最后在MS分析之前进行磷酸肽富集。总体而言,我们鉴定出9686个磷酸化位点,这些位点可明确定位于特定残基。对三个重复实验的统计分析显示,在NRG1处理的ERBB3/ERBB4细胞中有492个磷酸化位点发生了显著变化。生物信息学数据分析概括了丝裂原活化蛋白激酶和Akt途径的调节,但也表明了与细胞骨架功能和核生物学的信号联系。对NRG1刺激的ERBB4 Ba/F3细胞的比较评估显示,ERBB3并未触发特定的信号通路,而是更广泛地增强了表达两种受体的细胞中的磷酸化蛋白质组调节。总之,我们的数据提供了ERBB3/ERBB4信号传导的首张全局图,并为进一步的机制研究提供了众多潜在的切入点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7572/4706443/0d7321de8756/pone.0146100.g001.jpg

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