首页> 外文期刊>The Journal of Experimental Biology >Protein synthesis is lowered while 20S proteasome activity is maintained following acclimation to low temperature in juvenile spotted wolffish (Anarhichas minor Olafsen)
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Protein synthesis is lowered while 20S proteasome activity is maintained following acclimation to low temperature in juvenile spotted wolffish (Anarhichas minor Olafsen)

机译:适应少年低温斑狼鱼后的蛋白质合成降低,同时维持20S蛋白酶体活性(Anarhichas minor Olafsen)

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The effects of temperature on protein metabolism have been studied mostly with respect to protein synthesis. Temperature generally has a parabolic effect on protein synthesis with a maximum rate being observed at optimal growth temperature. The effect of temperature on protein degradation is poorly understood. The 20S proteasome is mainly responsible for the degradation of short-lived and oxidatively modified proteins and has been recently identified as a potentially good proxy for protein degradation in fish. The aim of this experiment was to examine the relationships between the rate of protein synthesis, activity of the 20S proteasome, oxidative stress markers and antioxidant capacity in white muscle of juvenile spotted wolffish (Anarhichas minor) acclimated at three temperatures (4, 8 and 12 degrees C). The rate of protein synthesis was lower at 4 degrees C than at 8 degrees C while it was intermediate at 12 degrees C. Despite the decrease of protein synthesis at low temperature, the activity of 20S proteasome activity was maintained high in fish acclimated at lower temperature (4 degrees C), reaching levels 130% of that of fish acclimated at 8 degrees C when measured at a common temperature. The oxidative stress markers TBARS and protein-carbonyl content did not change among temperature groups, but reduced glutathione concentration was higher in cold-acclimated fish, suggesting a higher antioxidant capacity in this group. Our data suggest that lower growth rate in cold temperature results from both high 20S proteasome activity and a reduced rate of protein synthesis.
机译:温度对蛋白质代谢的影响主要是在蛋白质合成方面进行的。温度通常对蛋白质合成具有抛物线效应,在最佳生长温度下观察到最大速率。温度对蛋白质降解的影响知之甚少。 20S蛋白酶体主要负责短期和氧化修饰的蛋白质的降解,最近被确定为鱼类中蛋白质降解的潜在良好替代物。本实验的目的是研究在三种温度(4、8和12)适应的少年斑点狼鱼(Anarhichas minor)白肌中蛋白质合成速率,20S蛋白酶体活性,氧化应激标记和抗氧化能力之间的关系。摄氏度)。在4°C时,蛋白质的合成速率低于在8°C时的蛋白质合成速率,而在12°C时则处于中等水平。尽管低温下蛋白质的合成速率有所降低,但在较低温度下适应的鱼类中20 S蛋白酶体的活性仍保持较高水平(4摄氏度),达到常温下8摄氏度时鱼类适应水平的130%。氧化应激标志物TBARS和蛋白质羰基含量在温度组之间没有变化,但是冷驯化鱼中降低的谷胱甘肽浓度较高,表明该组中的抗氧化能力较高。我们的数据表明,低温下较低的生长速率是由于20S蛋白酶体的高活性和蛋白质合成速率的降低导致的。

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