首页> 外文期刊>Journal of proteome research >Quantitative phosphotyrosine proteomics of EphB2 signaling by stable isotope labeling with amino acids in cell culture (SILAC)
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Quantitative phosphotyrosine proteomics of EphB2 signaling by stable isotope labeling with amino acids in cell culture (SILAC)

机译:通过细胞培养物中的氨基酸稳定同位素标记对EphB2信号进行定量的磷酸酪氨酸蛋白质组学(SILAC)

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摘要

Eph-related receptor tyrosine kinases (RTK) have been implicated in several biological functions including synaptic plasticity, axon guidance, and morphogenesis, yet the details of the signal transduction pathways that produce these specific biological functions after ligand-receptor interaction remain unclear. We used Stable Isotope Labeling by Amino Acids in Cell Culture (SILAC) in combination with LC-MS/MS to characterize cellular signaling following stimulation by ephrinB1-Fc of NG-108 cells that overexpress EphB2 receptors. Because tyrosine phosphorylation functions as a key regulatory event in RTK signaling, we used anti-phosphotyrosine immunoprecipitation (pY IP) of cell lysates to isolate potential participants in the EphB2 pathway. Our SILAC experiments identified 127 unique proteins, 40 of which demonstrated increased abundance in pY lPs from ephrinBl-Fc stimulated cells as compared with unstimulated cells. Six proteins demonstrated decreased abundance, and 81 did not change significantly in relative abundance. Western blotting analysis of five proteins after pY IP verified their SILAC results. On the basis of previously published work and use of PathwayAssist software, we proposed an interaction network downstream of EphB2 for the proteins with changed ratios.
机译:Eph相关受体酪氨酸激酶(RTK)已牵涉到几种生物学功能,包括突触可塑性,轴突引导和形态发生,但是在配体-受体相互作用后产生这些特定生物学功能的信号转导途径的细节仍不清楚。我们通过细胞培养中的氨基酸(SILAC)与LC-MS / MS结合使用了稳定同位素标记,以表征在ephrinB1-Fc刺激过表达EphB2受体的NG-108细胞后的细胞信号传导。因为酪氨酸磷酸化是RTK信号传导中的关键调控事件,所以我们使用了细胞裂解物的抗磷酸酪氨酸免疫沉淀(pY IP)来分离EphB2途径中的潜在参与者。我们的SILAC实验鉴定了127种独特的蛋白质,与未经刺激的细胞相比,其中的40种蛋白质在ephrinB1-Fc刺激的细胞中的pY lPs含量增加。六种蛋白质显示出降低的丰度,而81种相对丰度没有明显变化。 pY IP验证了其SILAC结果后,对5种蛋白质进行了蛋白质印迹分析。在先前发表的成果和PathwayAssist软件的使用的基础上,我们提出了EphB2下游的相互作用网络,用于改变比例的蛋白质。

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