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Ischemia/reperfusion?¢????induced alterations of enzymatic and signaling functions of the rat cardiac Na + /K + ?¢????ATPase: protection by ouabain preconditioning

机译:缺血/再灌注诱导大鼠心脏Na + / K + ATP酶的酶促和信号传导功能改变:哇巴因预处理的保护

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Cardiac glycosides (CG) are traditionally known as positive cardiac inotropes that inhibit Na + /K + ?¢????ATPase?¢????dependent ion transport. CG also trigger?¢????specific signaling pathways through the cardiac Na + /K + ?¢????ATPase, with beneficial effects in ischemia/reperfusion (I/R) injury (e.g., ouabain preconditioning, known as OPC) and hypertrophy. Our current understanding of hypersensitivity to CG and subsequent toxicity in the ischemic heart is mostly based on specific I/R?¢????induced alterations of the Na + /K + ?¢????ATPase enzymatic function and has remained incomplete. The primary goal of this study was to investigate and compare the impact of I/R on Na + /K + ?¢????ATPase enzymatic and signaling functions. Second, we assessed the impact of OPC on both functions. Langendorff?¢????perfused rat hearts were exposed to 30????min of ischemia and 30????min of reperfusion. At the inotropic concentration of 50????????mol/L, ouabain increased ERK and Akt phosphorylation in control hearts. In I/R hearts, this concentration did not induced positive inotropy and failed to induce Akt or ERK phosphorylation. The inotropic response to dobutamine as well as insulin signaling persisted, suggesting specific alterations of Na + /K + ?¢????ATPase. Indeed, Na + /K + ?¢????ATPase protein expression was intact, but the enzyme activity was decreased by 60% and the enzymatic function of the isoform with high affinity for ouabain was abolished following I/R. Strikingly, OPC prevented all I/R?¢????induced alterations of the receptor. Further studies are needed to reveal the respective roles of I/R?¢????induced modulations of Na + /K + ?¢????ATPase enzymatic and signaling functions in cardiomyocyte death.
机译:传统上,强心苷(CG)被称为抑制Na + / K + ATP酶依赖的离子转运的阳性心脏正性肌力药。 CG还通过心脏Na + / K + ATP酶触发特定信号通路,对缺血/再灌注(I / R)损伤具有有益作用(例如,哇巴因预处理,称为OPC) )和肥大。我们目前对缺血性心脏对CG的超敏反应和随后的毒性的了解主要基于特定的I / R诱导的Na + / K + ATP酶功能的改变,至今仍不完全。这项研究的主要目的是研究和比较I / R对Na + / K + ATP酶的酶和信号功能的影响。其次,我们评估了OPC对这两种功能的影响。 Langendorff灌流的大鼠心脏暴露于30分钟的缺血和30分钟的再灌注。在50mg / L的正性肌力浓度下,哇巴因增加了对照心脏中的ERK和Akt磷酸化。在I / R心脏中,该浓度未诱导正性肌力,也未能诱导Akt或ERK磷酸化。对多巴酚丁胺的肌力反应以及胰岛素信号持续存在,表明Na + / K +ΔATP酶的特定改变。确实,Na + / K +ΔATP酶蛋白表达完整,但是酶活性降低了60%,并且在I / R后消除了与哇巴因具有高亲和力的同工型的酶功能。令人惊讶的是,OPC阻止了所有I /Rβ诱导的受体改变。需要进一步的研究来揭示I /Rα-β诱导的Na + / K +β-β-ATP酶的酶和信号传导调节在心肌细胞死亡中的作用。

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