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首页> 外文期刊>The Journal of Experimental Biology >Responses to hypoxia and recovery: repayment of oxygen debt is not associated with compensatory protein synthesis in the Amazonian cichlid, Astronotus ocellatus
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Responses to hypoxia and recovery: repayment of oxygen debt is not associated with compensatory protein synthesis in the Amazonian cichlid, Astronotus ocellatus

机译:对缺氧和恢复的反应:亚马逊丽鱼科鱼慈鲷Astronotus ocellatus中氧债务的偿还与补偿性蛋白质合成无关

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摘要

Oxygen consumption, as an indicator of routine metabolic rate (RoMR), and tissue-specific changes in protein synthesis, as measured by H-3-labelled phenylalanine incorporation rates, were determined in Astronotus ocellatus to investigate the cellular mechanisms behind hypoxia-induced metabolic depression and recovery. RoMR was significantly depressed, by approximately 50%, when dissolved oxygen levels reached 10% saturation (0.67 +/- 0.01 mg l(-1) at 28 +/- 1 degrees C). This depression in RoMR was accompanied by a 50-60% decrease in liver, heart and gill protein synthesis, but only a 30% decrease in brain protein synthesis. During recovery from hypoxia, an overshoot in RoMR to 270% of the normoxic rate was observed, indicating the accumulation of an oxygen debt during hypoxia. This conclusion was consistent with significant increase in plasma lactate levels during the hypoxic exposure, and the fact that lactate levels rapidly returned to pre-hypoxic levels. In contrast, a hyperactivation of protein synthesis did not occur, suggesting the overshoot in oxygen consumption during recovery is attributed to an increase in cellular processes other than protein synthesis.
机译:确定了耗氧量作为常规代谢率(RoMR)的指标,并通过Astronotus ocellatus测定了H-3标记的苯丙氨酸掺入率来衡量蛋白质合成的组织特异性变化,以研究缺氧诱导的代谢背后的细胞机制抑郁和康复。当溶解氧水平达到10%饱和度(在28 +/- 1摄氏度下为0.67 +/- 0.01 mg l(-1)时),RoMR显着降低约50%。 RoMR的这种降低伴随着肝脏,心脏和and蛋白质合成的减少50-60%,而脑蛋白质合成的减少仅30%。在从低氧状态恢复期间,观察到RoMR超过正常氧水平的270%,这表明在低氧状态下氧债务的积累。该结论与低氧暴露期间血浆乳酸水平的显着增加以及乳酸水平迅速回到缺氧前水平的事实相符。相反,没有发生蛋白质合成的过度活化,这表明恢复过程中耗氧量的过高归因于除了蛋白质合成以外的细胞过程的增加。

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