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弹涂鱼(大弹涂鱼)中导致丙氨酸形成的部分氨基酸分解代谢:一种有助于在陆地移动活动期间将氨基酸用作能量来源的策略。

Partial amino acid catabolism leading to the formation of alanine in Periophthalmodon schlosseri (mudskipper): a strategy that facilitates the use of amino acids as an energy source during locomotory activity on land.

作者信息

Ip Y K, Lem C B, Chew S F, Wilson J M, Randall D J

机构信息

Department of Biological Science, National University of Singapore, Kent Ridge, Singapore 117543, Republic of Singapore.

出版信息

J Exp Biol. 2001 May;204(Pt 9):1615-24. doi: 10.1242/jeb.204.9.1615.

Abstract

When the mudskipper Periophthalmodon schlosseri was exposed to terrestrial conditions under a 12h:12h dark:light regime the fish could be very active, and levels of total free amino acids increased significantly in the muscle and plasma. Alanine levels increased threefold in the muscle, fourfold in the liver and twofold in the plasma. Similar phenomena were not observed in the more aquatic mudskipper, Boleophthalmus boddaerti. From these results, we concluded that P. schlosseri was capable of partial catabolism of certain amino acids to support activity on land. The amino groups of these amino acids were transferred directly or indirectly to pyruvate to form alanine. The resulting carbon chain was fed into the Krebs cycle and partially oxidized to malate, which could replenish pyruvate through the function of malic enzyme. This favourable ATP yield from partial amino acid catabolism was not accompanied by a net release of ammonia. Such an adaptation would be advantageous to P. schlosseri confronted with the problem of ammonia excretion during aerial exposure. Indeed, when P. schlosseri were forced to exercise on land after 24 h of aerial exposure, the alanine level in the muscles increased significantly, with no apparent change in glycogen content. In addition, there was no significant change in the ATP level and energy charge of the muscle. In contrast, when B. boddaerti were exercised on land, glycogen levels in the muscles decreased significantly and lactate levels increased. In addition, muscle energy charge was not maintained and the ATP level decreased significantly. Hence, it was concluded that when P. schlosseri were active on land, they were capable of using certain amino acids as a metabolic fuel, and avoided ammonia toxicity through partial amino acid catabolism. Such a strategy is the most cost-effective way of slowing down internal ammonia build-up without involving energy-expensive ammonia detoxification pathways. Furthermore, an examination of the balance between nitrogenous excretion and accumulation in a 70 g P. schlosseri revealed that degradation of amino acids in general was likely to be suppressed to slow down the build-up of ammonia internally. It is possible that such a strategy may be widely adopted, especially by obligatory air-breathing fishes, to avoid ammonia intoxication during aerial exposure.

摘要

当弹涂鱼(Periophthalmodon schlosseri)在12小时光照:12小时黑暗的光暗周期下暴露于陆地环境时,这种鱼会非常活跃,其肌肉和血浆中的总游离氨基酸水平显著增加。肌肉中的丙氨酸水平增加了三倍,肝脏中增加了四倍,血浆中增加了两倍。在更水生的弹涂鱼(Boleophthalmus boddaerti)中未观察到类似现象。从这些结果中,我们得出结论,P. schlosseri能够对某些氨基酸进行部分分解代谢,以支持其在陆地上的活动。这些氨基酸的氨基直接或间接转移到丙酮酸上形成丙氨酸。产生的碳链进入三羧酸循环并部分氧化为苹果酸,苹果酸可通过苹果酸酶的作用补充丙酮酸。部分氨基酸分解代谢产生的这种有利的ATP产量并未伴随着氨的净释放。这种适应性对于面临在空气中暴露时氨排泄问题的P. schlosseri将是有利的。事实上,当P. schlosseri在空气中暴露24小时后被迫在陆地上运动时,肌肉中的丙氨酸水平显著增加,糖原含量没有明显变化。此外,肌肉中的ATP水平和能荷没有显著变化。相比之下,当B. boddaerti在陆地上运动时,肌肉中的糖原水平显著下降,乳酸水平增加。此外,肌肉能荷无法维持,ATP水平显著下降。因此,得出结论,当P. schlosseri在陆地上活跃时,它们能够利用某些氨基酸作为代谢燃料,并通过部分氨基酸分解代谢避免氨中毒。这种策略是减缓体内氨积累的最具成本效益的方式,而无需涉及耗能的氨解毒途径。此外,对一条70克重的P. schlosseri的含氮排泄和积累之间的平衡进行检查发现,一般来说氨基酸降解可能会受到抑制,以减缓体内氨的积累。这种策略有可能被广泛采用,特别是被 obligatory air-breathing fishes,以避免在空气中暴露时氨中毒。

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