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首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Ral-GTPase interacts with the beta1 subunit of Na+/K+-ATPase and is activated upon inhibition of the Na+/K+ pump.
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Ral-GTPase interacts with the beta1 subunit of Na+/K+-ATPase and is activated upon inhibition of the Na+/K+ pump.

机译:Ral-GTPase与Na + / K + -ATPase的beta1亚基相互作用,并在抑制Na + / K +泵时被激活。

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摘要

Na+/K+-ATPase functions as both an ion pump and a signal transducer. Cardiac glycosides partially inhibit Na+/K+-ATPase, causing activation of multiple interrelated growth pathways via the Na+/K+-ATPase/c-Src/epidermal growth factor receptor complex. Such pathways include Ras/MEK/ERK and Ral/RalGDS cascades, which can lead to cardiac hypertrophy. In search of novel Ral-GTPase binding proteins, we used RalB as the bait to screen a human testes cDNA expression library using the yeast 2-hybrid system. The results demonstrated that 1 of the RalB interacting clones represented the C-terminal region of the beta1 subunit of Na+/K+-ATPase. Further analysis using the yeast 2-hybrid system and full-length beta1 subunit of Na+/K+-ATPase confirmed the interaction with RalA and RalB. In vitro binding and pull-down assays demonstrated that the beta1 subunit of Na+/K+-ATPase interacts directly with RalA and RalB. Ral-GTP pull-down assays demonstrated that short-term ouabain treatment of A7r5 cells, a rat aorta smoothmuscle cell line, caused activation of Ral GTPase. Maximal activation was observed 10 min after ouabain treatment. Ouabain-mediated Ral activation was inhibited upon the stimulation of Na+/K+-ATPase activity by Ang II. We propose that Ral GTPase is involved in the signal transducing function of Na+/K+-ATPase and provides a possible molecular mechanism connecting Ral to cardiac hypertrophy during diseased conditions.
机译:Na + / K + -ATPase既充当离子泵又充当信号传感器。心脏苷部分抑制Na + / K + -ATPase,从而通过Na + / K + -ATPase / c-Src /表皮生长因子受体复合物激活多个相关的生长途径。此类途径包括Ras / MEK / ERK和Ral / RalGDS级联反应,可导致心脏肥大。为了寻找新的Ral-GTPase结合蛋白,我们使用RalB作为诱饵,使用酵母2-杂交系统筛选人睾丸cDNA表达文库。结果表明,RalB相互作用的克隆中有1个代表Na + / K + -ATPase beta1亚基的C端区域。使用酵母2杂交系统和Na + / K + -ATPase的全长beta1亚基进行的进一步分析证实了与RalA和RalB的相互作用。体外结合和下拉实验表明,Na + / K + -ATPase的beta1亚基直接与RalA和RalB相互作用。 Ral-GTP下拉测定法表明,大鼠大动脉平滑肌细胞系A7r5细胞的哇巴因短期处理可引起Ral GTPase活化。哇巴因处理10分钟后观察到最大活化。 Ang II刺激Na + / K + -ATPase活性后,抑制了哇巴因介导的Ral激活。我们建议Ral GTPase参与Na + / K + -ATPase的信号转导功能,并提供在疾病状态下将Ral与心脏肥大连接的可能的分子机制。

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