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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Understanding glucose uptake during methionine deprivation in incubated rainbow trout (Oncorhynchus mykiss) hepatocytes using a non-radioactive method
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Understanding glucose uptake during methionine deprivation in incubated rainbow trout (Oncorhynchus mykiss) hepatocytes using a non-radioactive method

机译:理解在蛋氨酸葡萄糖吸收剥夺在孵化彩虹鳟鱼雄鱼mykiss)肝细胞使用非放射性方法

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摘要

The role of methionine supplementation in fish metabolism remains largely unexplored. This study investigates the effects of methionine deprivation (MD) on glucose uptake in rainbow trout (Oncorhynchus mykiss) hepatocytes. To this end, primary hepatocytes were incubated in the presence (+. M) or the absence (-. M) of methionine for 48. h and glucose uptake was assessed using a novel non-radioactive, fluorescent-linked enzymatic assay. Evidence indicated that glucose uptake increased under methionine deprivation, primarily due to the increased abundance of membrane bound sodium-glucose transporter 2 (SGLT2), which was likely facilitated by the cellular reduction in [ATP] resulting from increased mitochondrial uncoupling, as supported by elevated transcript levels of uncoupling protein 2a (UCP2a). This study is the first to suggest that the mechanisms responsible for the rapid glucose uptake associated with MR are facilitated by the greater abundance of SGLT2 glucose transporter and mitochondrial uncoupling.
机译:补充蛋氨酸在鱼类的作用新陈代谢基本上仍是无人涉足。探讨蛋氨酸的影响剥夺(MD)葡萄糖吸收的彩虹鳟鱼雄mykiss)肝细胞。最后,主要的肝细胞中孵化(+。蛋氨酸为48。使用一种新颖的非放射性评估,fluorescent-linked酶试验。表明,葡萄糖摄取增加蛋氨酸不足,主要是由于增加大量的膜结合sodium-glucose转运蛋白2 (SGLT2)可能通过细胞减少(ATP)造成增加线粒体解偶联,如由高架成绩单水平的解偶联蛋白2 (UCP2a)。研究首次表明,机制负责快速葡萄糖吸收先生与促进的大丰富的SGLT2葡萄糖转运体和线粒体解偶联。

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