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Nicorandil opens mitochondrial KATP channels not only directly but also through a NO-PKG-dependent pathway

机译:Nicorandil不仅直接打开线粒体KATP通道,而且还通过NO-PKG依赖性途径打开

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Nicorandil, a hybrid of nitrate generator and potassium channel opener, protects ischemic myocardium by opening mitochondrial ATP sensitive potassium (mitoKATP) channels. We recently found that nitric oxide (NO) opened KATP channels in rabbit hearts by a protein kinase G (PKG) mechanism. This study examined whether the NO-donor property of nicorandil also contributes to opening of mitoKATP channels through PKG. MitoKATP channel opening was monitored in adult rabbit cardiomyocytes by measuring reactive oxygen species (ROS) production, an established marker of channel opening. Nicorandil increased ROS production in a dose-dependent manner. The selective mitoKATP channel inhibitor 5-hydroxydecanoate (200 μM) completely blocked ROS production by nicorandil at all doses. The PKG inhibitor 8-bromoguanosine-3’,5’-cyclic monophosphorothioate, Rpisomer (Rp-8-Br-cGMPs, 50 μM) shifted the dose-ROS production curve to the right with an increase of the EC50 from 2.4 x 10–5 M to 6.9 x 10–5 M. Rp- 8-Br-cGMPs did not affect the increase in ROS production by the selective mitoKATP channel opener diazoxide while it completely blocked increased ROS production from the NO donor S-nitroso-N-acetylpenicillamine (1 μM). Furthermore ODQ, an antagonist of soluble guanylyl cyclase, blocked nicorandil’s ability to increase ROS generation. These results indicate that nicorandil, in addition to its direct effect on the channels, opens mitoKATP channels indirectly via a NO-PKG signaling pathway.
机译:硝酸盐生成器和钾通道开放剂的混合物Nicorandil通过打开线粒体ATP敏感性钾(mitoKATP )通道来保护缺血性心肌。我们最近发现一氧化氮(NO)是通过蛋白激酶G(PKG)机制在兔心脏中打开KATP 通道的。本研究探讨了尼可地尔的NO供体特性是否也通过PKG促进了mitoKATP 通道的开放。通过测量活性氧(ROS)的产生来监测成年兔心肌细胞中的MitoKATP 通道开放,这是确定的通道开放标记。 Nicorandil以剂量依赖性方式增加ROS的产生。选择性的mitoKATP 通道抑制剂5-羟基癸酸酯(200μM)在所有剂量下都能完全阻止尼可地尔产生ROS。 PKG抑制剂8-溴鸟苷-3',5'-环一硫代磷酸酯Rpisomer(Rp-8-Br-cGMPs,50μM)随着EC50的增加,剂量ROS产生曲线向右移动 2.4 x 10–5 M到6.9 x 10–5 M。Rp-8-Br-cGMPs不会影响选择性mitoKATP 通道开放剂重氮对ROS产量的增加。完全阻止了NO供体S-亚硝基-N-乙酰青霉胺(1μM)产生的ROS增加。此外,可溶性鸟嘌呤环化酶的拮抗剂ODQ阻止了尼古地尔增加ROS生成的能力。这些结果表明,尼可地尔除了直接作用于通道外,还通过NO-PKG信号通路间接打开mitoKATP 通道。

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