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首页> 外文期刊>American Journal of Physiology >Tissue-specific changes in protein synthesis associated with seasonal metabolic depression and recovery in the north temperate labrid, Tautogolabrus adspersus.
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Tissue-specific changes in protein synthesis associated with seasonal metabolic depression and recovery in the north temperate labrid, Tautogolabrus adspersus.

机译:组织特异性变化与北方温带平原互叶螨的季节性代谢抑制和恢复相关的蛋白质合成。

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摘要

The tissue-specific changes in protein synthesis were tracked in relation to the seasonal metabolic depression in cunner (Tautogolabrus adsperus). In vivo protein synthesis rate and total RNA content were determined in liver, white muscle, brain, heart, and gill during periods of normal activity before metabolic depression, entrance into and during winter dormancy, and during the recovery period. The decrease in water temperature from 8 degrees C to 4 degrees C was accompanied by a 55% depression of protein synthesis in liver, brain, and heart and a 66% depression in gill. Protein synthesis in white muscle fell below detectable levels at this temperature. The depression of protein synthesis is an active process (Q(10) = 6-21 between 8 degrees C and 4 degrees C) that occurs in advance of the behavioral and physiological depression at the whole animal level. Protein synthesis was maintained at these depressed levels in white muscle, brain, heart, and gill until water temperature returned to 4 degrees C in the spring. Liver underwent a hyperactivation in the synthesis of proteins at 0 degrees C, which may be linked to antifreeze production. During the recovery period, a hyperactivation of protein synthesis occurred in white muscle, which is suggestive of compensatory growth, as well as in heart and liver, which is considered to be linked to increased activity and feeding. Seasonal changes in total RNA content demonstrate the depression of protein synthesis with decreasing temperature to be closely associated with translational capacity, but the stimulation of protein synthesis during recovery appears to be associated with increased translational efficiency.
机译:追踪了蛋白质在组织中的特定组织变化,该变化与cunner(Tautogolabrus adsperus)的季节性代谢抑制有关。在代谢抑制之前,进入冬季休眠期间和冬季休眠期间以及恢复期间,在正常活动期间测定肝脏,白肌肉,脑,心脏和g中的体内蛋白质合成速率和总RNA含量。水温从8摄氏度下降到4摄氏度,伴随着肝脏,大脑和心脏的蛋白质合成降低了55%,而ill则降低了66%。在此温度下,白肌肉中的蛋白质合成下降到可检测的水平以下。蛋白质合成的抑制是一个活跃的过程(在8摄氏度至4摄氏度之间,Q(10)= 6-21),发生在整个动物水平上的行为和生理抑制之前。蛋白质合成维持在白色肌肉,大脑,心脏和腮的这些低水平,直到春季水温回到4摄氏度为止。肝在0摄氏度下蛋白质合成过程中发生过度活化,这可能与抗冻剂的产生有关。在恢复期间,蛋白质合成的过度活化发生在白肌肉中,这提示代偿性生长,以及在心脏和肝脏中,这被认为与活动和进食增加有关。总RNA含量的季节性变化表明,蛋白质合成的降低与温度的降低密切相关,与翻译能力密切相关,但是在恢复过程中刺激蛋白质合成似乎与翻译效率的提高有关。

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