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首页> 外文期刊>The Journal of Experimental Biology >Glycerol production in rainbow smelt (Osmerus mordax) may be triggered by low temperature alone and is associated with the activation of glycerol-3-phosphate dehydrogenase and glycerol-3-phosphatase
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Glycerol production in rainbow smelt (Osmerus mordax) may be triggered by low temperature alone and is associated with the activation of glycerol-3-phosphate dehydrogenase and glycerol-3-phosphatase

机译:彩虹熔炼中的甘油生产(Osmerus mordax)可能仅由低温触发,并且与甘油3-磷酸脱氢酶和甘油-3-磷酸酶的活化有关

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Rainbow smelt ( Osmerus mordax) accumulate high levels of glycerol in winter that serves as an antifreeze. Fish were subjected to controlled decreases in water temperature and levels of plasma glycerol, liver metabolites and liver enzymes were determined in order to identify control mechanisms for the initiation of glycerol synthesis. In two separate experiments, decreases in temperature from 8 degrees C to 0 degrees C over a period of 10 - 11 days resulted in increases in plasma glycerol from levels of less than 4 mmol l(-1) to approximate mean levels of 40 ( first experiment) and 150 mmol l(-1) ( second experiment). In a third experiment, decreases in temperature to - 1 degrees C resulted in plasma glycerol levels approaching 500 mmol l(-1). The accumulation of glycerol could be driven in either December or March, thus eliminating decreasing photoperiod as a necessary cue for glycerol accumulation. Glycerol accumulation in plasma was associated with changes in metabolites in liver leading to increases in the mass action ratio across the reactions catalyzed by glycerol- 3- phosphate dehydrogenase ( GPDH) and glycerol- 3- phosphatase ( G3Pase). The maximal, in vitro activity of GPDH, increased twofold in association with a sharp increase in plasma glycerol level. The metabolite levels and enzyme activities provide complementary evidence that GPDH is a regulatory site in the low temperature triggered synthesis of glycerol. Indirect evidence, based on calculated rates of in vivo glycerol production by liver, suggests that G3Pase is a potential rate- limiting step. As well, transient increases in glyceraldehyde- 3- phosphate dehydrogenase and alanine aminotransferase suggest that these sites are components of a suite of responses, in rainbow smelt liver, induced by low temperature.
机译:彩虹熔炼物(Osmerus mordax)在冬季积聚了大量的甘油,可作为防冻剂。对鱼进行水温控制下的降低,并测定血浆甘油,肝脏代谢产物和肝酶的水平,以便确定引发甘油合成的控制机制。在两个单独的实验中,在10到11天的时间内温度从8摄氏度降低到0摄氏度,导致血浆甘油从低于4 mmol l(-1)的水平增加到大约40的平均水平(首先实验)和150 mmol l(-1)(第二个实验)。在第三个实验中,温度降低到-1摄氏度导致血浆甘油水平接近500 mmol l(-1)。甘油的积累可以在12月或3月开始,从而消除了降低光周期作为甘油积累的必要提示的情况。血浆中甘油的积累与肝脏中代谢物的变化有关,导致甘油3-磷酸脱氢酶(GPDH)和甘油3-磷酸酶(G3Pase)催化的反应中的质量作用比增加。 GPDH的最大体外活性增加了两倍,同时血浆甘油水平急剧上升。代谢物水平和酶活性提供了补充证据,表明GPDH是低温触发甘油合成的调控位点。基于肝脏体内体内甘油生成率的计算得出的间接证据表明,G3Pase是潜在的速率限制步骤。同样,甘油醛3-磷酸脱氢酶和丙氨酸氨基转移酶的瞬时增加表明,这些位点是彩虹冶炼肝中由低温引起的一系列反应的组成部分。

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