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Mitochondrial reduction of metmyoglobin: Dependence on the electron transport chain

机译:线粒体还原性肌红蛋白的减少:对电子传输链的依赖。

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Reduction of ferric myoglobin (metmyoglobin, MetMb) to its ferrous form is important for maintaining fresh meat color because only reduced myoglobin can bind oxygen to form the consumer-preferred cherry red color in fresh meat. The objective of this study was to characterize an apparent mitochondria electron transport chain (ETC)-linked pathway for MetMb reduction in vitro. MetMb was reduced in the presence of mitochondria and succinate (p < 0.05); mitochondria or succinate alone did not facilitate MetMb reduction relative to controls (p > 0.05). Flushing samples with oxygen greatly decreased MetMb reduction, while flushing with argon increased MetMb reduction when compared with controls (p < 0.05). ETC inhibitors were used to localize the site where electrons became available for MetMb reduction. MetMb reduction was increased by rotenone addition and decreased by malonic acid (p < 0.05); the reduction was completely abolished by additions of antimycin A or myxothiazol when compared with controls (p < 0.05). These results suggest that electrons become available for MetMb reduction at a site(s) between complex III and IV. Mitochondrial ETC-linked MetMb reduction increased with increased mitochondrial density and succinate concentration (p < 0.05); the greatest MetMb reduction was observed at pH 7.2 and 37 degrees C, and ETC-linked MetMb reducing activity decreased with time postmortem (p < 0.05). These results indicate that ETC-linked MetMb reduction exists but would be minimally active in postmortem muscles.
机译:将铁肌红蛋白(肌红蛋白,MetMb)还原为亚铁形式对于维持鲜肉的颜色很重要,因为只有还原的肌红蛋白才能与氧气结合,从而在鲜肉中形成消费者偏爱的樱桃红色。这项研究的目的是表征明显的线粒体电子传输链(ETC)链接的MetMb体外还原途径。在线粒体和琥珀酸盐存在下,MetMb降低(p <0.05);相对于对照,单独的线粒体或琥珀酸盐不能促进MetMb的降低(p> 0.05)。与对照相比,用氧气冲洗样品大大降低了MetMb的减少,而用氩气冲洗增加了MetMb的减少(p <0.05)。 ETC抑制剂用于定位电子可用于MetMb还原的位点。添加鱼藤酮可增加MetMb的减少,而丙二酸则可减少MetMb(p <0.05);与对照组相比,通过添加抗霉素A或甲噻唑可以完全消除这种减少(p <0.05)。这些结果表明,在络合物III和IV之间的位点,电子可用于MetMb还原。线粒体ETC连锁的MetMb的减少随着线粒体密度和琥珀酸盐浓度的增加而增加(p <0.05);在pH 7.2和37摄氏度下观察到最大的MetMb还原,并且ETC连接的MetMb还原活性随死后时间而降低(p <0.05)。这些结果表明存在与ETC相关的MetMb减少,但在死后肌肉中的活性最小。

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