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首页> 外文期刊>Cellular Physiology and Biochemistry >Action of Protein Tyrosine Kinase Inhibitors on the Hypotonicity-Stimulated Trafficking Kinetics of Epithelial Na+ Channels (ENaC) in Renal Epithelial Cells: Analysis Using a Mathematical Model
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Action of Protein Tyrosine Kinase Inhibitors on the Hypotonicity-Stimulated Trafficking Kinetics of Epithelial Na+ Channels (ENaC) in Renal Epithelial Cells: Analysis Using a Mathematical Model

机译:蛋白酪氨酸激酶抑制剂对肾上皮细胞低渗刺激的上皮Na +通道(ENaC)的运输动力学的作用:使用数学模型的分析。

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Background/Aims Epithelial Na+ channels (ENaCs) play crucial roles in control of blood pressure by determining the total amount of renal Na+ reabsorption, which is regulated by various factors such as aldosterone, vasopressin, insulin and osmolality. The intracellular trafficking process of ENaCs regulates the amount of the ENaC-mediated Na+ reabsorption in the collecting duct of the kidney mainly by determining the number of ENaC expressed at the apical membrane of epithelial cells. Although we previously reported protein tyrosine kinases (PTKs) contributed to the ENaC-mediated epithelial Na+ reabsorption, we have no information on the role of PTKs in the intracellular ENaC trafficking. Methods Using the mathematical model recently established in our laboratory, we studied the effect of PTKs inhibitors (PTKIs), AG1296 (10 µM an inhibitor of the PDGF receptor (PDGFR)) and AG1478 (10 µM an inhibitor of the EGF receptor (EGFR)) on the rates of the intracellular ENaC trafficking in renal epithelial A6 cells endogenously expressing ENaCs. Results We found that application of PTKIs significantly reduced the insertion rate of ENaC to the apical membrane by 56%, the recycling rate of ENaC by 83%, the cumulative time of an individual ENaC staying in the apical membrane by 27%, the whole life-time after the first insertion of ENaC by 47%, and the cumulative Na+ absorption by 61%, while the degradation rate was increased to 3.8-fold by application of PTKIs. These observations indicate that PTKs contribute to the processes of insertion, recycling and degradation of ENaC in the intracellular trafficking process under a hypotonic condition. Conclusion The present study indicates that application of EGFR and PDGFR-inhibitable PTKIs reduced the insertion rate (kI), and the recycling rate (kR) of ENaCs, but increased degradation rate (kD) in renal A6 epithelial cells under a hypotonic condition. These observations indicate that hypotonicity increases the surface expression of ENaCs by increasing the insertion rate (kI) and the recycling rate (kR) of ENaCs associated with a decrease in the degradation rate but without any significant effects on the endocytotic rate (kE) in EGFR and PDGFR-related PTKs-mediated pathways.
机译:背景/目的上皮Na +通道(ENaCs)通过确定肾脏Na +重吸收的总量在控制血压中起关键作用,而肾脏Na +重吸收的总量受醛固酮,血管加压素,胰岛素和重量摩尔渗透压浓度等因素调节。 ENaCs的细胞内运输过程主要通过确定在上皮细胞顶膜表达的ENaC数量来调节肾脏收集管中ENaC介导的Na +重吸收的量。虽然我们以前曾报道蛋白质酪氨酸激酶(PTK)促成ENaC介导的上皮Na +重吸收,但我们尚无关于PTK在细胞内ENaC转运中的作用的信息。方法使用最近在我们实验室中建立的数学模型,我们研究了PTKs抑制剂(PTKIs),AG1296(10 µM PDGF受体抑制剂(PDGFR))和AG1478(10 µM EGF受体抑制剂(EGFR))的作用)关于内源性表达ENaCs的肾上皮A6细胞中细胞内ENaC转运的速率。结果我们发现,PTKIs的使用可将ENaC在根尖膜的插入率显着降低56%,将ENaC的回收率降低83%,单个ENaC在根尖膜中的累积时间减少27%,整个寿命首次插入ENaC后的时间为47%,累积的Na +吸收为61%,而使用PTKIs可使降解率提高到3.8倍。这些观察结果表明,在低渗条件下,PTK促进了细胞内运输过程中ENaC的插入,循环和降解过程。结论本研究表明,在低渗条件下,应用抑制EGFR和PDGFR的PTKI可以降低ENaCs的插入率(kI)和再循环率(kR),但可以提高肾A6上皮细胞的降解率(kD)。这些观察结果表明低渗性通过增加与降解率降低相关的ENaC的插入率(kI)和再循环率(kR)来增加ENaC的表面表达,但对EGFR的内吞率(kE)没有任何显着影响与PDGFR相关的PTK介导的途径。

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