Phosphoproteomic response to epidermal growth factor in native rat inner medullary collecting duct.

Chung-Lin Chou, Nipun U Jayatissa, Elena T Kichula, Shuo-Ming Ou, Kavee Limbutara, Mark A Knepper
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Abstract

Epidermal growth factor (EGF) has important effects in the renal collecting duct to regulate salt and water transport. To identify elements of EGF-mediated signaling in the rat renal inner medullary collecting duct (IMCD), we carried out phosphoproteomic analysis. Biochemically isolated rat IMCD suspensions were treated with 1 µM of EGF or vehicle for 30 min. We performed comprehensive quantitative phosphoproteomics using tandem mass tag (TMT)-labeling of tryptic peptides followed by protein mass spectrometry. We present a data resource reporting all detected phosphorylation sites and their changes in response to EGF. For a total of 29,881 unique phosphorylation sites, 135 sites were increased and 119 sites were decreased based on stringent statistical analysis. The data are provided to users at https://esbl.nhlbi.nih.gov/Databases/EGF-phospho/. The analysis demonstrated that EGF signals through canonical EGF pathways in the renal IMCD. Analysis of Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways in which EGF-regulated phosphoproteins are over-represented in native rat IMCD cells confirmed mapping to RAF-MEK-extracellular signal-regulated kinase (ERK) signaling but also pointed to a role for EGF in the regulation of protein translation. A large number of phosphoproteins regulated by EGF contained PDZ domains that are key elements of epithelial polarity determination. We also provide a collecting duct EGF-network map as a user-accessible web resource at https://esbl.nhlbi.nih.gov/Databases/EGF-network/. Overall, the phosphoproteomic data presented provide a useful resource for experimental design and modeling of signaling in the renal collecting duct.NEW & NOTEWORTHY EGF negatively regulates transepithelial water and salt transport across the kidney collecting duct. This study identified phosphoproteins affected by EGF stimulation in normal rat collecting ducts, providing insights into global cell signaling mechanisms. Bioinformatic analyses highlighted enhanced canonical ERK signaling alongside a diminished activity in the PI3K-Akt pathway, which is crucial for cell proliferation and survival. This EGF response differs somewhat from prior studies where both pathways were prominently activated.

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原生大鼠内髓集水管对表皮生长因子的磷酸蛋白组反应
表皮生长因子(EGF)在肾集合管中具有调节盐和水运输的重要作用。为了确定大鼠肾内髓质集合管(IMCD)中表皮生长因子介导的信号转导元素,我们进行了磷酸化蛋白质组学分析。将生化分离的大鼠 IMCD 悬浮液用 1 μM 的 EGF 或载体处理 30 分钟。我们使用 TMT 标记胰蛋白酶肽,然后用蛋白质质谱法进行了全面的定量磷酸化蛋白质组学分析。我们提供的数据资源报告了所有检测到的磷酸化位点及其对 EGF 的反应变化。在总共 29,881 个独特的磷酸化位点中,根据严格的统计分析,增加了 135 个位点,减少了 119 个位点。这些数据通过 https://esbl.nhlbi.nih.gov/Databases/EGF-phospho/ 提供给用户。分析表明,EGF 在肾脏 IMCD 中通过典型的 EGF 通路发出信号。对大鼠原生IMCD细胞中EGF调控的磷酸化蛋白比例较高的KEGG通路的分析证实了RAF-MEK-ERK信号的映射,同时也指出了EGF在调节蛋白质翻译中的作用。大量受 EGF 调节的磷酸化蛋白含有 PDZ 结构域,这些结构域是决定上皮极性的关键因素。我们还提供了一个收集管道 EGF 网络图,作为用户可访问的网络资源,网址是 https://esbl.nhlbi.nih.gov/Databases/EGF-network/。总之,所提供的磷酸蛋白组数据为肾集合管信号传导的实验设计和建模提供了有用的资源。
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