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Targeted analysis of tyrosine phosphorylation by immuno-affinity enrichment of tyrosine phosphorylated peptides prior to mass spectrometric analysis.免疫亲和富集酪氨酸磷酸化肽后进行质谱分析,靶向分析酪氨酸磷酸化。
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Mass spectrometric-based quantitative proteomics using SILAC.使用稳定同位素标记氨基酸法(SILAC)的基于质谱的定量蛋白质组学。
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Distinct activation of epidermal growth factor receptor by UTP contributes to epithelial cell wound repair.UTP 通过激活表皮生长因子受体促进上皮细胞的伤口修复。
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Increasing phosphoproteome coverage and identification of phosphorylation motifs through combination of different HPLC fractionation methods.通过不同 HPLC 分级分离方法的组合提高磷酸化蛋白质组的覆盖率和鉴定磷酸化模体。
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Phosphotyrosine signaling analysis of site-specific mutations on EGFRvIII identifies determinants governing glioblastoma cell growth.对EGFRvIII上位点特异性突变的磷酸酪氨酸信号分析确定了控制胶质母细胞瘤细胞生长的决定因素。
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The P2Y2 receptor mediates the epithelial injury response and cell migration.P2Y2 受体介导上皮损伤反应和细胞迁移。
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P2Y2 nucleotide receptors mediate metalloprotease-dependent phosphorylation of epidermal growth factor receptor and ErbB3 in human salivary gland cells.P2Y2 核苷酸受体介导人唾液腺细胞中表皮生长因子受体和 ErbB3 的金属蛋白酶依赖性磷酸化。
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ATP modulates transcription factors through P2Y2 and P2Y4 receptors via PKC/MAPKs and PKC/Src pathways in MCF-7 cells.三磷酸腺苷通过 MCF-7 细胞中的 P2Y2 和 P2Y4 受体及其下游 PKC/MAPKs 和 PKC/Src 信号通路调节转录因子。
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上皮伤口诱导对嘌呤能和表皮生长因子受体激活的不同磷酸化变化。

Epithelial wounds induce differential phosphorylation changes in response to purinergic and EGF receptor activation.

机构信息

Department of Biochemistry, Boston University School of Medicine, Boston, Massachusetts; Center for Biomedical Mass Spectrometry, Boston University School of Medicine, Boston, Massachusetts.

Department of Biochemistry, Boston University School of Medicine, Boston, Massachusetts.

出版信息

Am J Pathol. 2013 Dec;183(6):1841-1852. doi: 10.1016/j.ajpath.2013.08.015. Epub 2013 Oct 1.

DOI:10.1016/j.ajpath.2013.08.015
PMID:24095926
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5745543/
Abstract

Protein phosphorylation is a dynamic post-translational modification. Mass spectrometry-based quantitation was performed to determine the phosphoproteome profile of epithelial cells in response to injury, nucleotide, or epidermal growth factor. Phosphotyrosine enrichment used immunoprecipitation and immobilized metal affinity chromatography. Nucleotides released after scratch wounding activate purinergic receptors, leading to a distinct phosphorylation profile on epidermal growth factor receptor (EGFR) compared with its natural ligand. ATP induced a 2- to 15-fold phosphorylation increase over control on EGFR Y974, Y1086, and Y1148, with minimal phosphorylation intensity on EGFR Y1173 compared with the level measured in response to epidermal growth factor. Differential phosphorylation induced by epidermal growth factor or ATP was site specific on Src, Shc, phospholipase Cγ, protein kinase C, focal adhesion kinase, paxillin, and mitogen-activated protein kinases 1, 12, and 13. After wounding, the P2Y2 receptor mRNA expression increased, and after knockdown, migration and Ca(2+) mobilization were impaired. To examine phosphorylation mediated by P2Y2, cells were cultured in media containing stable isotope-labeled amino acids, the receptor was knocked down, and the cells were stimulated. Mass spectrometry-based comparison of the phosphorylation profiles of control versus transfected cells revealed a 50-fold decrease in phosphorylation of EGFR Y974 and 1086, with no decrease in Y1173 phosphorylation. A similarfold decrease in Src Y421 and Y446 and paxillin Y118 was detected, indicating the far-reaching importance of the P2Y2 receptor in mediating migration.

摘要

蛋白质磷酸化是一种动态的翻译后修饰。采用基于质谱的定量方法来确定上皮细胞在受到损伤、核苷酸或表皮生长因子刺激时的磷酸蛋白质组图谱。通过免疫沉淀和固定金属亲和层析来富集磷酸酪氨酸。划痕损伤后释放的核苷酸会激活嘌呤能受体,导致表皮生长因子受体 (EGFR) 的磷酸化谱与天然配体明显不同。与表皮生长因子刺激相比,ATP 诱导 EGFR Y974、Y1086 和 Y1148 的磷酸化增加 2-15 倍,而 EGFR Y1173 的磷酸化强度则相对较低。表皮生长因子或 ATP 诱导的差异磷酸化在Src、Shc、磷脂酶 Cγ、蛋白激酶 C、黏着斑激酶、桩蛋白和丝裂原激活蛋白激酶 1、12 和 13 上具有特异性。损伤后,P2Y2 受体 mRNA 表达增加,敲低后迁移和 Ca(2+) 动员受损。为了研究 P2Y2 介导的磷酸化,将细胞在含有稳定同位素标记氨基酸的培养基中培养,敲低受体,并刺激细胞。通过比较对照细胞和转染细胞的磷酸化谱,发现 EGFR Y974 和 Y1086 的磷酸化减少了 50 倍,而 Y1173 的磷酸化没有减少。还检测到 Src Y421 和 Y446 以及桩蛋白 Y118 的磷酸化减少了类似的倍数,表明 P2Y2 受体在介导迁移方面具有重要意义。