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首页> 外文期刊>Biochemical and Biophysical Research Communications >Phosphorylation of Na-Cl cotransporter by OSR1 and SPAK kinases regulates its ubiquitination
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Phosphorylation of Na-Cl cotransporter by OSR1 and SPAK kinases regulates its ubiquitination

机译:NaCl转运蛋白被OSR1和SPAK激酶磷酸化调节其泛素化

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摘要

Na-Cl cotransporter (NCC) is phosphorylated in its amino terminus based on salt intake under the regulation of the WNK-OSR1/SPAK kinase cascade. We have observed that total protein abundance of NCC and its apical membrane expression varies in the kidney based on the phosphorylation status. To clarify the mechanism, we examined NCC ubiquitination status in mice fed low, normal and high salt diets, as well as in a model mouse of pseudohypoaldosteronism type II (PHAII) where NCC phosphorylation is constitutively elevated. Low-salt diet decreased NCC ubiquitination, while high-salt diet increased NCC ubiquitination in the kidney, and this was inversely correlated with total and phosphorylated NCC abundance. In the PHAII model, the ubiquitination of NCC in kidney was also lower when compared to that in wild-type littermates. To evaluate the relationship between phosphorylation and ubiquitination of NCC, we expressed wild-type, phospho-deficient and -mimicking NCC in COS7 cells, and the ubiquitination of immunoprecipitated total and biotinylated surface NCC was evaluated. NCC ubiquitination was increased in the phospho-deficient NCC and decreased in phospho-mimicking NCC in both total and surface NCC. Thus, we demonstrated that NCC phosphorylation decreased NCC ubiquitination, which may contribute to the increase of NCC abundance mostly on plasma membranes.
机译:在WNK-OSR1 / SPAK激酶级联反应的调控下,基于盐的摄入量,Na-Cl协同转运蛋白(NCC)在其氨基末端被磷酸化。我们已经观察到,肾脏中NCC的总蛋白丰度及其顶膜表达根据磷酸化状态而变化。为了阐明该机制,我们检查了低,正常和高盐饮食喂养的小鼠以及其中NCC磷酸化水平显着升高的II型假性低醛固酮症模型小鼠(PHAII)的NCC泛素化状态。低盐饮食会降低NCC泛素化,而高盐饮食会增加NCC在肾脏中的泛素化,这与总NCC和磷酸化NCC的含量成反比。在PHAII模型中,与野生型同窝仔相比,肾脏NCC的泛素化程度也较低。为了评估NCC的磷酸化与泛素化之间的关系,我们在COS7细胞中表达了野生型,磷酸缺失和模拟的NCC,并评估了免疫沉淀的总和生物素化表面NCC的泛素化。 NCC泛素化在缺磷的NCC中增加,而在模拟磷的NCC中,总NCC和表面NCC均降低。因此,我们证明了NCC磷酸化减少了NCC泛素化,这可能有助于增加NCC的丰度,主要是在质膜上。

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