首页> 外文期刊>The biochemical journal >Concurrent overexpression of ornithine decarboxylase and spermidine/spermine N1-acetyltransferase further accelerates the catabolism of hepatic polyamines in transgenic mice
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Concurrent overexpression of ornithine decarboxylase and spermidine/spermine N1-acetyltransferase further accelerates the catabolism of hepatic polyamines in transgenic mice

机译:鸟氨酸脱羧酶和亚精胺/亚精胺N1-乙酰基转移酶的同时过表达进一步加速了转基因小鼠肝多胺的分解代谢

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pWe have generated a hybrid transgenic mouse line overexpressing both ornithine decarboxylase (ODC) and spermidine/spermine Nsup1/sup-acetyltransferase (SSAT) under the control of the mouse metallothionein (MT) I promoter. In comparison with singly transgenic animals overexpressing SSAT, the doubly transgenic mice unexpectedly displayed much more striking signs of activated polyamine catabolism, as exemplified by a massive putrescine accumulation and an extreme reduction of hepatic spermidine and spermine pools. Interestingly, the profound depletion of the higher polyamines in the hybrid animals occurred in the presence of strikingly high ODC activity and tremendous putrescine accumulation. Polyamine catabolism in the doubly transgenic mice could be enhanced further by administration of zinc or the polyamine analogue iN/isup1/sup,iN/isup11/sup-diethylnorspermine. In tracer experiments with [sup14/supC]spermidine we found that, in comparison with syngenic animals, both MT-ODC and MT-SSAT mice possessed an enhanced efflux mechanism for hepatic spermidine. In the MT-ODC animals this mechanism apparently operated in the absence of measurable SSAT activity. In the hybrid animals, spermidine efflux was stimulated further in comparison with the singly transgenic animals. In spite of a dramatic accumulation of putrescine and a profound reduction of the spermidine and spermine pools, only marginal changes were seen in the level of ODC antizyme. Even though the hybrid animals showed no liver or other organ-specific overt toxicity, except an early and permanent loss of hair, their life span was greatly reduced. These results can be understood from the perspective that catabolism is the overriding regulatory mechanism in the metabolism of the polyamines and that, even under conditions of severe depletion of spermidine and spermine, extremely high tissue pools of putrescine are not driven further to replenish the pools of the higher polyamines./p
机译:>我们已经产生了在小鼠金属硫蛋白(MT)I启动子控制下过表达鸟氨酸脱羧酶(ODC)和亚精胺/精胺N 1 -乙酰基转移酶(SSAT)的杂交转基因小鼠品系。与过表达SSAT的单转基因动物相比,双转基因小鼠出乎意料地表现出更多的活化多胺分解代谢迹象,例如大量的腐胺积累和肝亚精胺和精胺池的极度减少。有趣的是,在杂种动物中高级多胺的大量消耗发生在显着高的ODC活性和巨大的腐胺积累的情况下。施用锌或多胺类似物 N 1 , N 11 可以进一步增强转基因小鼠的多胺分解代谢。 sup>-二乙基去甲精胺。在用[ 14 C]亚精胺进行的示踪实验中,我们发现,与同基因动物相比,MT-ODC和MT-SSAT小鼠均具有增强的肝亚精胺外排机制。在MT-ODC动物中,这种机制显然在没有可测量的SSAT活性的情况下起作用。在杂种动物中,与单转基因动物相比,亚精胺外排被进一步刺激。尽管腐胺大量积累并且亚精胺和精胺库大大减少,但ODC酶的水平只有很小的变化。即使杂种动物没有表现出肝脏或其他器官特异性的明显毒性,除了早期和永久性脱发外,它们的寿命也大大缩短了。从分解代谢是多胺代谢中最重要的调节机制的角度可以理解这些结果,并且即使在亚精胺和亚精胺的严重消耗的条件下,腐胺的极高组织库也不会被进一步驱使补充。较高的多胺。

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