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In-vivo External Sensor for Mitochondrial Injury: Circulating Cytochrome c

机译:用于线粒体损伤的体内外部传感器:循环细胞色素C.

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摘要

Low-abundance, low-molecular-weight serum proteins are useful in diagnosing the change in expression of some serum proteins which may indicate an altered physiology and serve as biomarkers of the respective disease. Recent studies suggest the molecular mechanism responsible for the translocation of cytochrome c from mitochondria to the cytosol during apoptosis. We hypothesize that mitochondrial injury causes the final release of cytochrome c from cytosol to the bloodstream, which acts as a mitochondrial injury external sensor. Serum cytochrome c was dissociated from large, abundant proteins by acetonitrile precipitation pretreatment and then measured using reverse-phase high performance liquid chromatography (HPLC). For quantification of serum cytochrome c levels, internal standard curves (0.2 to 20 μg/ml) were prepared using rat heart cytochrome c dissolved in serum obtained from healthy pentobarbital-anesthetized rats. Serum samples taken from severe mitochondrial injury animals (heart attack rats and diabetes mice) were measured and shown a dramatic increase in cytochrome c levels compared to healthy animals. Irreversible mitochondrial injury (death) occurred once serum cytochrome c level exceeded 2.0 μg/ml as the average cytochrome c level for healthy animals is reported less than 0.2 μg/ml. We conclude that serum cytochrome c may represent a novel in-vivo external sensor of mitochondrial injury.
机译:低丰度,低分子量血清蛋白可用于诊断某些血清蛋白表达的变化,其可能表明改变的生理学并用作各种疾病的生物标志物。最近的研究表明,在凋亡期间,负责从线粒体转移到细胞色素C细胞色素C到胞嘧啶的分子机制。我们假设线粒体损伤导致来自细胞色素C的细胞色素损伤到血液中的细胞色素释放,其充当线粒体损伤外部传感器。通过乙腈沉淀预处理从大,丰富的蛋白质中解离大型丰富的蛋白质,然后使用反相高效液相色谱(HPLC)测量。为了定量血清细胞色素C水平,使用溶解在由健康戊巴比妥的大鼠获得的血清中的大鼠心脏细胞色素C制备内部标准曲线(0.2至20μg/ mL)。与健康动物相比,测量了从严重线粒体损伤动物(心脏病发作大鼠和糖尿病小鼠)的血清样品进行测量并显示细胞色素C水平的显着增加。发生不可逆转的线粒体损伤(死亡)次数血清细胞色素C水平超过2.0μg/ ml,因为报告了少于0.2μg/ ml的健康动物的平均细胞色素C水平。我们得出结论,血清细胞色素C可以代表线粒体损伤的新型外部传感器。

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