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首页> 外文期刊>The Journal of Experimental Biology >Complete suppression of protein synthesis during anoxia with no post-anoxia protein synthesis debt in the red-eared slider turtle Trachemys scripta elegans
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Complete suppression of protein synthesis during anoxia with no post-anoxia protein synthesis debt in the red-eared slider turtle Trachemys scripta elegans

机译:红耳滑龟Trachemys scripta elegans完全抑制缺氧过程中的蛋白质合成,而没有缺氧后的蛋白质合成债务。

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摘要

Two previous studies of the effects of anoxia on protein synthesis in anoxia-tolerant turtles (Trachemys scripta elegans, Chrysemys picta bellii) have generated opposing results. Using the flooding-dose method, we measured the rate of protein synthesis following injection and incorporation of a large dose of radiolabelled phenylalanine to resolve the question of whether anoxia results in a downregulation of protein synthesis. After I h of anoxia, levels of protein-incorporated radiolabel indicated that protein synthesis rates in the intestine, heart, liver, brain, muscle and lungs were not significantly different from those of normoxic controls. However, from 1 to 6h of anoxia, quantities of protein-incorporated radiolabel did not increase, suggesting that protein synthesis had ceased or had decreased below a measurable level. There was also no significant post-anoxia increase in protein synthesis rates above normoxic control levels during 3h of recovery from anoxia. RNA-to-protein ratios did not change significantly in any tissue except the heart, in which RNA levels decreased below normoxic control levels after 6h of anoxia. Except in the heart, downregulation of protein synthesis during anoxia does not appear to be mediated by changes in tissue RNA concentration.
机译:先前的两项关于缺氧对耐缺氧龟(Trachemys scripta elegans,Chrysemys picta bellii)蛋白质合成影响的研究产生了相反的结果。使用淹没剂量方法,我们测量了注射和掺入大剂量放射性标记的苯丙氨酸后的蛋白质合成速率,以解决缺氧是否导致蛋白质合成下调的问题。缺氧1 h后,掺有蛋白质的放射性标记水平表明,肠,心脏,肝脏,脑,肌肉和肺中的蛋白质合成速率与正常氧对照组相比无显着差异。但是,从缺氧1到6小时,掺入蛋白质的放射性标记的数量没有增加,这表明蛋白质合成已停止或已降至可测量的水平以下。从缺氧恢复的3小时内,缺氧后蛋白质合成速率也没有明显高于常氧控制水平的显着增加。在缺氧6小时后,除心脏外,其他任何组织中的RNA蛋白质比率均无显着变化,在该组织中,RNA水平降至正常氧控制水平以下。除心脏外,缺氧过程中蛋白质合成的下调似乎不是由组织RNA浓度的变化介导的。

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