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首页> 外文期刊>Cellular Physiology and Biochemistry >NOX2, p22~(phox) and p47~(phox) are targeted to the nuclear pore complex in ischemic cardiomyocytes colocalizing with local reactive oxygen species
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NOX2, p22~(phox) and p47~(phox) are targeted to the nuclear pore complex in ischemic cardiomyocytes colocalizing with local reactive oxygen species

机译:NOX2,p22〜(phox)和p47〜(phox)靶向与局部活性氧共定位的局部缺血心肌细胞的核孔复合物

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NADPH oxidases play an essential role in reactive oxygen species (ROS)-based signaling in the heart. Previously, we have demonstrated that (peri)nuclear expression of the catalytic NADPH oxidase subunit NOX2 in stressed cardiomyocytes, e.g. under ischemia or high concentrations of homocysteine, is an important step in the induction of apoptosis in these cells. Here this ischemia-induced nuclear targeting and activation of NOX2 was specified in cardiomyocytes. Methods: The effect of ischemia, mimicked by metabolic inhibition, on nuclear localization of NOX2 and the NADPH oxidase subunits p22~(phox) and p47~(phox), was analyzed in rat neonatal cardiomyoblasts (H9c2 cells) using Western blot, immuno-electron microscopy and digital-imaging microscopy. Results: NOX2 expression significantly increased in nuclear fractions of ischemic H9c2 cells. In addition, in these cells NOX2 was found to colocalize in the nuclear envelope with nuclear pore complexes, p22~(phox), p47~(phox) and nitrotyrosine residues, a marker for the generation of ROS. Inhibition of NADPH oxidase activity, with apocynin and DPI, significantly reduced (peri)nuclear expression of nitrotyrosine. Conclusion: We for the first time show that NOX2, p22~(phox) and p47~(phox) are targeted to and produce ROS at the nuclear pore complex in ischemic cardiomyocytes.
机译:NADPH氧化酶在心脏中基于活性氧(ROS)的信号传导中起重要作用。先前,我们已经证明了在应激的心肌细胞中,例如催化的NADPH氧化酶亚基NOX2的(周)核表达。在缺血或高半胱氨酸的高浓度下,是诱导这些细胞凋亡的重要步骤。在此,在心肌细胞中确定了这种缺血诱导的核靶向和NOX2的激活。方法:采用蛋白质印迹法,免疫印迹法和免疫印迹法分析大鼠新生心肌细胞(H9c2)中通过代谢抑制模拟的缺血对NOX2和NADPH氧化酶亚基p22〜(phox)和p47〜(phox)核定位的影响。电子显微镜和数字成像显微镜。结果:在缺血H9c2细胞的核级分中,NOX2表达显着增加。此外,在这些细胞中,发现NOX2与核孔复合物p22〜(phox),p47〜(phox)和硝基酪氨酸残基共定位在核被膜中,后者是产生ROS的标记。载有Apocynin和DPI抑制NADPH氧化酶活性,显着降低了硝基酪氨酸的(核)核表达。结论:我们首次表明,NOX2,p22〜(phox)和p47〜(phox)被靶向并在缺血性心肌细胞的核孔复合物中产生ROS。

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