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Molecular and functional characterization of the endothelial ATP-sensitive potassium channel

机译:内皮ATP敏感性钾通道的分子和功能表征

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摘要

ATP-sensitive potassium (KATP) channels are widely expressed in the cardiovascular system, where they regulate a range of biological activities by linking cellular metabolism with membrane excitability. KATP channels in vascular smooth muscle have a well-defined role in regulating vascular tone. KATP channels are also thought to be expressed in vascular endothelial cells, but their presence and function in this context are less clear. As a result, we aimed to investigate the molecular composition and physiological role of endothelial KATP channels. We first generated mice with an endothelial specific deletion of the channel subunit Kir6.1 (eKO) using cre-loxP technology. Data from qRT-PCR, patch clamp, ex vivo coronary perfusion Langendorff heart experiments, and endothelial cell Ca2+ imaging comparing eKO and wild-type mice show that Kir6.1-containing KATP channels are indeed present in vascular endothelium. An increase in intracellular [Ca2+], which is central to changes in endothelial function such as mediator release, at least partly contributes to the endothelium-dependent vasorelaxation induced by the KATP channel opener pinacidil. The absence of Kir6.1 did not elevate basal coronary perfusion pressure in eKO mice. However, vasorelaxation was impaired during hypoxia in the coronary circulation, and this resulted in greater cardiac injury during ischemia–reperfusion. The response to adenosine receptor stimulation was impaired in eKO mice in single cells in patch clamp recordings and in the intact coronary circulation. Our data support the existence of an endothelial KATP channel that contains Kir6.1, is involved in vascular reactivity in the coronary circulation, and has a protective role in ischemia reperfusion.
机译:ATP敏感性钾(KATP)通道在心血管系统中广泛表达,通过将细胞代谢与膜兴奋性联系起来,它们调节一系列生物活性。血管平滑肌中的KATP通道在调节血管张力方面具有明确的作用。还认为KATP通道在血管内皮细胞中表达,但在这种情况下它们的存在和功能尚不清楚。因此,我们旨在研究内皮KATP通道的分子组成和生理作用。我们首先使用cre-loxP技术生成了具有通道亚基Kir6.1(eKO)内皮特异性缺失的小鼠。来自qRT-PCR,膜片钳,离体冠状动脉Langendorff心脏实验以及内皮细胞Ca 2 + 成像的数据比较了eKO和野生型小鼠,结果表明确实存在含Kir6.1的KATP通道在血管内皮中。细胞内[Ca 2 + ]的增加是内皮功能变化(例如介体释放)的关键,至少部分是由KATP通道开放剂Pinacidil诱导的内皮依赖性血管舒张作用。 Kir6.1的缺失不会提高eKO小鼠的基础冠状动脉灌注压力。但是,在冠状动脉循环中的缺氧过程中血管舒张受损,这导致了缺血再灌注过程中更大的心脏损伤。 eKO小鼠的膜片钳记录和完整的冠状动脉循环中的单细胞中对腺苷受体刺激的反应受到损害。我们的数据支持存在包含Kir6.1的内皮KATP通道,该通道参与冠状动脉循环中的血管反应,并且在缺血再灌注中具有保护作用。

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