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在急性缺氧和低温暴露下,黑线鳕(Tautogolabrus adspersus)的鳃线粒体部分而不是心脏部分防御蛋白质合成。

Protein synthesis is defended in the mitochondrial fraction of gill but not heart in cunner (Tautogolabrus adspersus) exposed to acute hypoxia and hypothermia.

机构信息

Ocean Sciences Centre, Memorial University of Newfoundland, St. John's, A1C 5S7, NL, Canada.

出版信息

J Comp Physiol B. 2010 Feb;180(2):179-88. doi: 10.1007/s00360-009-0396-7. Epub 2009 Aug 22.

Abstract

The cunner, Tautogolabrus adspersus, is a north-temperate teleost which relies upon metabolic depression to survive the extreme low water temperatures of its habitat during the winter. Previous study has demonstrated a decrease in protein synthesis accompanies the metabolic depression observed at the whole animal level during seasonal low temperature exposure. As such, the objective of the current study was to determine: (i) if the response of decreased protein synthesis is conserved across environmental stressors and (ii) if the response of metabolic depression is conserved across levels of cellular organization. This was accomplished through the measurement of in vivo protein synthesis rates in the whole tissue, cytosolic and mitochondrial protein pools (reflective of nuclear encoded proteins imported into mitochondria) of heart and gill in cunner exposed to either acute low temperature (8-4 degrees C) or acute hypoxia (10% O(2) saturation). In both heart and gill, rates of protein synthesis in the whole tissue and cytosolic protein pools were substantially depressed by 80% in response to acute hypothermia. In hypoxic heart, protein synthesis was significantly decreased by 50-60% in the whole tissue, cytosolic and mitochondrial pools; however, in gill there was no significant difference in rates of protein synthesis in any cellular fraction between normoxic and hypoxic groups. Most strikingly the rate of new protein accumulation in the mitochondrial fraction of gill did not change in response to either a decrease in temperature or hypoxia. The defense of protein synthesis in the gill is most likely associated with the importance of maintaining ionic regulation and the oxidative capacity in this front line organ for gas and ion exchange.

摘要

拟黑线鳕鱼是一种分布于北温带的硬骨鱼,依靠代谢抑制来适应冬季栖息地极低的水温。先前的研究表明,在季节性低温暴露下,整体动物水平观察到的代谢抑制伴随着蛋白质合成的减少。因此,本研究的目的是确定:(i)蛋白质合成减少的反应是否在环境胁迫下具有保守性;(ii)代谢抑制的反应是否在细胞组织水平上具有保守性。这是通过测量暴露于急性低温(8-4°C)或急性低氧(10%O₂饱和度)的拟黑线鳕鱼心脏和鳃组织的整体组织、胞质和线粒体蛋白库(反映导入线粒体的核编码蛋白)中的体内蛋白质合成率来实现的。在心脏和鳃中,整体组织和胞质蛋白库的蛋白质合成率在急性低温下均显著降低了 80%。在缺氧的心脏中,整体组织、胞质和线粒体蛋白库中的蛋白质合成率分别显著降低了 50-60%;然而,在鳃中,正常氧和低氧组之间任何细胞部分的蛋白质合成率均无显著差异。最引人注目的是,鳃中线粒体部分的新蛋白质积累率在温度降低或缺氧时均没有变化。鳃中蛋白质合成的防御可能与维持离子调节和氧化能力的重要性有关,因为鳃是气体和离子交换的前线器官。

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