首页> 美国卫生研究院文献>American Journal of Physiology - Cell Physiology >Proteomic and Metabolomic Approaches to Cell Physiology and Pathophysiology: Quantitative phosphoproteomics in nuclei of vasopressin-sensitive renal collecting duct cells
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Proteomic and Metabolomic Approaches to Cell Physiology and Pathophysiology: Quantitative phosphoproteomics in nuclei of vasopressin-sensitive renal collecting duct cells

机译:蛋白质组学和代谢组学方法研究细胞生理学和病理生理学:血管加压素敏感的肾脏收集导管细胞核中的定量磷酸化蛋白质组学

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摘要

Vasopressin regulates transport across the collecting duct epithelium in part via effects on gene transcription. Transcriptional regulation occurs partially via changes in phosphorylation of transcription factors, transcriptional coactivators, and protein kinases in the nucleus. To test whether vasopressin alters the nuclear phosphoproteome of vasopressin-sensitive cultured mouse mpkCCD cells, we used stable isotope labeling and mass spectrometry to quantify thousands of phosphorylation sites in nuclear extracts and nuclear pellet fractions. Measurements were made in the presence and absence of the vasopressin analog dDAVP. Of the 1,251 sites quantified, 39 changed significantly in response to dDAVP. Network analysis of the regulated proteins revealed two major clusters (“cell-cell adhesion” and “transcriptional regulation”) that were connected to known elements of the vasopressin signaling pathway. The hub proteins for these two clusters were the transcriptional coactivator β-catenin and the transcription factor c-Jun. Phosphorylation of β-catenin at Ser552 was increased by dDAVP [log2(dDAVP/vehicle) = 1.79], and phosphorylation of c-Jun at Ser73 was decreased [log2(dDAVP/vehicle) = −0.53]. The β-catenin site is known to be targeted by either protein kinase A or Akt, both of which are activated in response to vasopressin. The c-Jun site is a canonical target for the MAP kinase Jnk2, which is downregulated in response to vasopressin in the collecting duct. The data support the idea that vasopressin-mediated control of transcription in collecting duct cells involves selective changes in the nuclear phosphoproteome. All data are available to users at .
机译:加压素部分通过对基因转录的影响来调节跨收集管上皮的运输。转录调节部分通过细胞核中转录因子,转录共激活因子和蛋白激酶的磷酸化改变而发生。为了测试血管加压素是否改变了对血管加压素敏感的培养的小鼠mpkCCD细胞的核磷酸化蛋白质组,我们使用了稳定的同位素标记和质谱法来定量核提取物和核沉淀成分中的数千个磷酸化位点。在存在和不存在加压素类似物dDAVP的情况下进行测量。在量化的1,251个位点中,有39个位点响应dDAVP发生了显着变化。对调节蛋白的网络分析显示了两个主要簇(“细胞-细胞粘附”和“转录调节”),它们与血管加压素信号通路的已知元件有关。这两个簇的中枢蛋白是转录共激活因子β-连环蛋白和转录因子c-Jun。 dDAVP [β2(dDAVP /媒介)= 1.79]增加了β-catenin在Ser552的磷酸化,而Ser73上c-Jun的磷酸化减少[log2(dDAVP /媒介)= -0.53]。已知β-catenin位点被蛋白激酶A或Akt靶向,这两种蛋白激酶均响应血管加压素而被激活。 c-Jun位点是MAP激酶Jnk2的典型靶标,它会响应收集管中的加压素而下调。数据支持血管加压素介导的收集导管细胞转录控制涉及核磷酸化蛋白质组选择性变化的想法。用户可以通过访问所有数据。

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