首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Studies on the regulation of ornithine decarboxylase in yeast: Effect of deletion in the MEU1 gene.
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Studies on the regulation of ornithine decarboxylase in yeast: Effect of deletion in the MEU1 gene.

机译:酵母中鸟氨酸脱羧酶调控的研究:MEU1基因缺失的影响。

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Methylthioadenosine is formed during the biosynthesis of spermidine and of spermine and is metabolized by methylthioadenosine phosphorylase, an enzyme missing in several tumor cell lines. In Saccharomyces cerevisiae, this enzyme is coded by the MEU1 gene. We have now studied the effect of the meu1 deletion on polyamine metabolism in yeast. We found that the effects of the meu1Delta mutation mostly depend on the stage of cell growth. As the cell density increases, there is a marked fall in the level of ornithine decarboxylase (ODC) in the MEU1(+) cells, which we show is caused by an antizyme-requiring degradation system. In contrast, there is only a small decrease in the ODC level in the meu1Delta cells. The meu1Delta cells have a higher putrescine and a lower spermidine level than MEU1(+) cells, suggesting that the decreased spermidine level in the meu1Delta cultures is responsible for the greater apparent stability of ODC in the meu1Delta cells. The lower spermidine level in the meu1Delta cells probably results from an inhibition of spermidine synthase by the methylthioadenosine that presumably accumulates in these mutants. In both MEU1(+) and the meu1Delta cultures, the ODC levels were markedly decreased by the addition of spermidine to the media, and thus our results contradict the postulation of Subhi et al. [Subhi, A. L., et al. (2003) J. Biol. Chem. 278, 49868-49873] of a novel regulatory pathway in meu1Delta cells in which ODC is not responsive to spermidine.
机译:甲基硫代腺苷是在亚精胺和精胺的生物合成过程中形成的,并被甲基硫代腺苷磷酸化酶(一种在几种肿瘤细胞系中缺失的酶)代谢。在酿酒酵母中,该酶由MEU1基因编码。现在,我们已经研究了meu1缺失对酵母中多胺代谢的影响。我们发现,meu1Delta突变的影响主要取决于细胞生长的阶段。随着细胞密度的增加,MEU1(+)细胞中鸟氨酸脱羧酶(ODC)的水平显着下降,这是由需要抗酶的降解系统引起的。相比之下,meu1Delta细胞中的ODC含量只有很小的下降。与MEU1(+)细胞相比,meu1Delta细胞具有更高的腐胺和较低的亚精胺水平,这表明meu1Delta培养物中亚精胺水平的降低是造成meu1Delta细胞中ODC更大的表观稳定性的原因。在meu1Delta细胞中较低的亚精胺水平可能是由于可能在这些突变体中积累的甲硫基腺苷抑制了亚精胺合酶。在MEU1(+)和meu1Delta培养中,通过向培养基中添加亚精胺,ODC水平均显着降低,因此我们的结果与Subhi等人的假设相矛盾。 [Subhi,A.L。,等。 (2003)J.Biol。化学[278,49868-49873]提出了一种在meu1Delta细胞中的新型调节途径,其中ODC对亚精胺无反应。

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