虹鱼等北方鱼类中氧化三甲胺和尿素的合成。

J A Raymond
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引用次数: 33

摘要

彩虹嗅鱼(Osmerus mordax)血液中的氧化三甲胺(TMAO)和尿素水平在冬季急剧上升,但这些渗透物是如何获得的仍不清楚。在这项研究中,我表明,熔体可以通过肝脏三甲胺氧化酶活性合成氧化三甲胺,因此不完全依赖于饲料来源的氧化三甲胺。研究还发现,适应寒冷环境的太平洋鲱鱼(Clupea harengus)血液中的氧化三甲胺含量也很高,而生活在温带水域的鲱鱼则没有。鲱鱼还具有肝脏TMA氧化酶活性,这似乎是由于含有黄素的单加氧酶。在这两个物种中,TMA氧化酶活性似乎不受温度的强烈影响。我们还获得了另外三种北方物种(美洲巨鳄、细叶Eleginus gracilis和青鱼)的氧化三甲胺数据,这些结果与之前报道的数据一起表明,氧化三甲胺氧化酶活性是血液中高水平氧化三甲胺的必要条件。在熔体中,尿素似乎是通过尿液溶解和精氨酸酶对饲料精氨酸的作用合成的,而鸟氨酸尿素循环似乎没有功能。几种北方鱼类血液中尿素水平与尿酸酶或精氨酸酶活性水平之间没有相关性。总之,这些结果进一步证明了氧化三甲胺和尿素在一些冷水鱼类中的重要性,证明了这些渗透物的合成机制存在于肝脏中,并表明对寒冷反应的升高水平可能是由于保护而不是产量增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trimethylamine oxide and urea synthesis in rainbow smelt and some other northern fishes.

Trimethylamine oxide (TMAO) and urea levels in the blood of rainbow smelt, Osmerus mordax, were previously shown to increase dramatically in winter, but the means by which these osmolytes are acquired has remained unclear. In this study, I show that the smelt can synthesize TMAO via liver trimethylamine oxidase activity and thus are not completely dependent on a dietary source of TMAO. Cold-acclimatized Pacific herring, Clupea harengus, were also found to have high levels of TMAO in the blood, while individuals from a temperate-water population of herring did not. Herring also had liver TMA oxidase activity, which appeared to be due to a flavin-containing monooxygenase. In both species, TMA oxidase activity did not appear to be strongly affected by temperature. TMAO data were obtained for three other northern species (Macrozoarces americanus, Eleginus gracilis, and Platichthys stellatus), and these results, together with previously reported data, suggest that TMA oxidase activity is a necessary condition for high levels of TMAO in the blood. In the smelt, urea appears to be synthesized via uricolysis and also through the action of arginase on dietary arginine, while the ornithine urea cycle appears to be nonfunctional. There was no relation among several species of northern fishes between levels of urea in the blood and levels of uricase or arginase activity. Together, these results provide further evidence of the importance of TMAO and urea in some cold water fishes, demonstrate that the synthetic machinery for these osmolytes is present in the liver, and suggest that the elevated levels in response to cold may be due to conservation rather than to increased production.

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