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蛋白质合成在澳大利亚沙漠蛙新蟾属中央新蟾代谢抑制过程中的作用。

The role of protein synthesis during metabolic depression in the Australian desert frog Neobatrachus centralis.

作者信息

Fuery C J, Withers P C, Hobbs A A, Guppy M

机构信息

Biochemistry Department, Centre for Native Animal Research, University of Western Australia, Nedlands, Australia.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 1998 Feb;119(2):469-76. doi: 10.1016/s1095-6433(97)00453-4.

Abstract

Little is known about the role of energy consuming processes during metabolic depression. We have shown that aestivation in the Australian desert frog Neobatrachus centralis is accompanied by an in vivo metabolic depression of 77%. Using an in vitro liver slice preparation, we have measured an in vitro metabolic depression in liver of 55%, with a concomitant 67% decrease in the rate of protein synthesis. The decrease in protein synthesis accounts for 52% of the metabolic depression of the tissue, but only 4.9% of the metabolic depression of the whole animal. No in vitro metabolic depression or decrease in protein synthesis during aestivation was measured in muscle, but a decrease in the low rate of protein synthesis in muscle in vivo could not, in any case, account for more than 3% of the metabolic depression of the whole animal. The liver, although not a quantitatively important tissue in terms of metabolic depression in vivo, offers the opportunity to characterise the regulation of protein synthesis in a system in which metabolic depression is not confounded by changes in ambient temperature and PO2.

摘要

关于代谢抑制期间能量消耗过程的作用,人们了解甚少。我们已经表明,澳大利亚沙漠蛙中央新蛙的夏眠伴随着77%的体内代谢抑制。使用体外肝切片制备方法,我们测定了肝脏中55%的体外代谢抑制,同时蛋白质合成速率下降了67%。蛋白质合成的下降占组织代谢抑制的52%,但仅占整个动物代谢抑制的4.9%。在夏眠期间,肌肉中未检测到体外代谢抑制或蛋白质合成减少,但无论如何,体内肌肉中低水平的蛋白质合成下降最多只能占整个动物代谢抑制的3%。肝脏虽然在体内代谢抑制方面不是一个数量上重要的组织,但它提供了一个机会,在一个代谢抑制不受环境温度和PO2变化干扰的系统中,来表征蛋白质合成的调节。

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