氨对浸没应激空气呼吸鱼肝脏和心脏线粒体离子转运功能的影响

S. Narayan, V. S. Peter, M. Peter
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引用次数: 0

摘要

氨是蛋白质和氨基酸代谢过程中产生的一种内源性呼吸气体。过量氨的积累是有毒的,鱼类已经发展出抵御氨毒性的机制。在这里,我们测试了氨在呼吸空气的鱼体内的作用,以发现它如何调节鱼心脏和肝脏中的线粒体离子运输。因此,我们分析了浸泡缺氧胁迫下保存的呼吸鱼心脏和肝脏线粒体ca2 + atp酶、线粒体H + atp酶和线粒体f1 f0 atp酶等线粒体离子转运体的活性模式。此外,血浆代谢产物如葡萄糖和乳酸也被量化。氨溶液[(nh4) 2 so4]口服;50ng g -1]作用30min,心肌梗死增加。ca2 + atp酶在心脏中的活性,但降低其在肝脏线粒体中的活性。氨处理后,心肌h + atp酶活性降低,肝脏h + atp酶活性升高。f1f0 atp酶在心脏中显著升高,而在肝脏线粒体中活性降低。然而,在浸泡应激的鱼中施用氨,使浸泡应激鱼的心脏和肝脏线粒体的兴奋反应无效。综上所述,这些数据表明,氨在呼吸鱼适应缺氧应激过程中对肝脏和心脏线粒体离子稳态的调节中发挥了重要的生理作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In Vivo Action of Ammonia on Ion Transport Function in Liver and Heart Mitochondria of Immersion-Stressed Air-Breathing Fish ( Anabas testudineus Bloch)
Ammonia, as an endogenous respiratory gas, is produced during protein and amino acid metabolism. Accumulation of excess ammonia is toxic, and fishes have developed mechanisms to defend against ammonia toxicity. Here, we tested the in vivo  action of ammonia in an air-breathing fish to find how it modulates mitochondrial ion transport in fish heart and liver. We thus analysed the activity pattern of mitochondrial ion transporters such as mitochondrial Ca 2+ ATPase, mitochondrial H + ATPase and mitochondrial F 1 F 0  ATPase in heart and liver of air-breathing fish Anabas testudineus  which were kept for immersion-induced hypoxia stress. In addition, plasma metabolites such as glucose and lactate were also quantified. Oral administration of ammonia solution [(NH 4 ) 2 SO 4 ; 50ng g -1 ] for  30 min increased mit.Ca 2+ ATPase activity in heart but lowered its activity in liver mitochondria. A reduced mit.H + ATPase activity was found in heart but in liver its activity showed increase after ammonia treatment. F 1 F 0  ATPase increased significantly in heart but showed reduced activity in liver mitochondria. Administration of ammonia in immersion-stressed fish, however, nullified the excitatory response of heart and liver mitochondria in the immersion-stressed fish. Overall, the data indicate that ammonia can play a significant physiological role in the regulation of mitochondrial ion homeostasis in the liver and heart of air-breathing fish during their acclimation to hypoxia stress.
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