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首页> 外文期刊>American Journal of Physiology >From blood typing to a transport metabolon at a crossroad. Focus on Ammonium-dependent sodium uptake in mitochondrion-rich cells of medaka (Oryzias latipes) larvae'.
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From blood typing to a transport metabolon at a crossroad. Focus on Ammonium-dependent sodium uptake in mitochondrion-rich cells of medaka (Oryzias latipes) larvae'.

机译:从血液键入到十字路口的运输代谢物中。 重点关注Medaka(Oryzias Lipipes)幼虫线粒体富含细胞的铵依赖性摄取。

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摘要

the rh blood group-related proteins have recently been recognized as ammonia transporters acting in erythrocyte and nonerythrocyte membranes. They play an important role in excretion of nitrogenous waste formed mainly from amino acid metabolism. Because of a restricted availability of water, most terrestrial animals detoxify ammonia into urea or uric acid before removal from the body. However, aquatic animals, living in an abundant supply of water, can directly excrete ammonia into the environment immediately as it is produced. This method of ammonia elimination is strategic in avoiding urea synthesis, an anabolic process requiring ATP. In this issue of American Journal of Physiology-Cell Physiology, Wu et al. (28) add a further twist to this adaptive strategy by providing evidence for a coupling of the ammonia excretion with a sodium uptake process, which is essential for living in freshwater conditions.
机译:Rh血液组相关蛋白最近被认为是作用于红细胞和非合适细胞膜的氨转运蛋白。 它们在主要来自氨基酸代谢的含氮废物排泄中发挥着重要作用。 由于水的可用性限制,大多数陆地动物在从体内移除之前将氨毒物排放到尿素或尿酸中。 然而,水生动物,生活在丰富的水供水中,可以直接排出氨进入环境中的产生。 这种氨的消除方法是避免尿素合成的战略性,是需要ATP的合成原因。 在这个美国生理学 - 细胞生理学杂志中,Wu等人。 (28)通过提供氨排泄与钠摄取过程的偶联的依据来增加这种自适应策略的进一步扭曲,这对于生活在淡水条件下至关重要。

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