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首页> 外文期刊>Respiration Physiology >Tissue oxygen sensor function of NADPH oxidase isoforms, an unusual cytochrome aa3 and reactive oxygen species.
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Tissue oxygen sensor function of NADPH oxidase isoforms, an unusual cytochrome aa3 and reactive oxygen species.

机译:NADPH氧化酶亚型,一种不常见的细胞色素aa3和活性氧物种的组织氧传感器功能。

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摘要

NADPH oxidase isoforms with different gp91phox subunits as well as an unusual cytochrome aa3 with a heme a/a3 relationship of 9:91 are discussed as putative oxygen sensor proteins influencing gene expression and ion channel conductivity. Reactive oxygen species (ROS) are important second messengers of the oxygen sensing signal cascade determining the stability of transcription factors or the gating of ion channels. The formation of ROS by a perinuclear Fenton reaction is imaged by 1 and 2 photon confocal microscopy revealing mitochondrial and non-mitochondrial generation.
机译:讨论了具有不同gp91phox亚基的NADPH氧化酶同工型以及血红素a / a3关系为9:91的异常细胞色素aa3,作为可能的氧传感器蛋白影响基因表达和离子通道电导率。活性氧(ROS)是氧传感信号级联的重要第二信使,它决定了转录因子或离子通道门控的稳定性。 1和2光子共聚焦显微镜对通过核周Fenton反应形成的ROS成像,揭示了线粒体和非线粒体的生成。

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