Cell Signaling Group, Department of Molecular Biology, Max Planck Institute of Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.
Mol Cell Proteomics. 2010 Jun;9(6):1047-62. doi: 10.1074/mcp.M900486-MCP200. Epub 2010 Jan 12.
Lysophosphatidic acid (LPA) induces a variety of cellular signaling pathways through the activation of its cognate G protein-coupled receptors. To investigate early LPA responses and assess the contribution of epidermal growth factor (EGF) receptor transactivation in LPA signaling, we performed phosphoproteomics analyses of both total cell lysate and protein kinase-enriched fractions as complementary strategies to monitor phosphorylation changes in A498 kidney carcinoma cells. Our integrated work flow enabled the identification and quantification of more than 5,300 phosphorylation sites of which 224 were consistently regulated by LPA. In addition to induced phosphorylation events, we also obtained evidence for early dephosphorylation reactions due to rapid phosphatase regulation upon LPA treatment. Phosphorylation changes induced by direct heparin-binding EGF-like growth factor-mediated EGF receptor activation were typically weaker and only detected on a subset of LPA-regulated sites, indicating signal integration among EGF receptor transactivation and other LPA-triggered pathways. Our results reveal rapid phosphoregulation of many proteins not yet implicated in G protein-coupled receptor signaling and point to various additional mechanisms by which LPA might regulate cell survival and migration as well as gene transcription on the molecular level. Moreover, our phosphoproteomics analysis of both total lysate and kinase-enriched fractions provided highly complementary parts of the LPA-regulated signaling network and thus represents a useful and generic strategy toward comprehensive signaling studies on a system-wide level.
溶血磷脂酸 (LPA) 通过激活其同源 G 蛋白偶联受体诱导多种细胞信号通路。为了研究早期 LPA 反应并评估表皮生长因子 (EGF) 受体反式激活在 LPA 信号转导中的作用,我们对 A498 肾癌细胞的总细胞裂解物和蛋白激酶富集部分进行了磷酸蛋白质组学分析,作为互补策略来监测磷酸化变化。我们的综合工作流程使我们能够识别和定量 5300 多个以上的磷酸化位点,其中 224 个磷酸化位点受到 LPA 的一致调节。除了诱导的磷酸化事件外,我们还获得了证据表明,由于 LPA 处理时快速的磷酸酶调节,会发生早期去磷酸化反应。直接肝素结合 EGF 样生长因子介导的 EGF 受体激活引起的磷酸化变化通常较弱,并且仅在 LPA 调节的位点的一部分上检测到,这表明 EGF 受体反式激活和其他 LPA 触发途径之间的信号整合。我们的结果揭示了许多尚未涉及 G 蛋白偶联受体信号转导的蛋白质的快速磷酸化调节,并指出了 LPA 可能在分子水平上调节细胞存活、迁移以及基因转录的各种其他机制。此外,我们对总裂解物和激酶富集部分的磷酸蛋白质组学分析提供了 LPA 调节的信号网络的高度互补部分,因此代表了在系统范围内进行全面信号研究的有用且通用的策略。