首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Spermidine but not spermine is essential for hypusine biosynthesis and growth in Saccharomyces cerevisiae: Spermine is converted to spermidine in vivo by the FWS1-amine oxidase
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Spermidine but not spermine is essential for hypusine biosynthesis and growth in Saccharomyces cerevisiae: Spermine is converted to spermidine in vivo by the FWS1-amine oxidase

机译:亚精胺而不是亚精胺对于啤酒酵母的生物合成和生长必不可少:FWS1-胺氧化酶在体内将亚精胺转化为亚精胺

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In our earlier work we showed that either spermidine or spermine could support the growth of spe2Δ or spe3Δ polyamine-requiring mutants, but it was unclear whether the cells had a specific requirement for either of these amines. In the current work, we demonstrate that spermidine is specifically required for the growth of Saccharomyces cerevisiae. We were able to show this specificity by using a spe3Δ fms1Δ mutant that lacked both spermidine synthase and the FMS1-encoded amine oxidase that oxidizes spermine to spermidine. The polyamine requirement for the growth of this double mutant could only be satisfied by spermidine; i.e., spermine was not effective because it cannot be oxidized to spermidine in the absence of the FMS1 gene. We also showed that at least one of the reasons for the absolute requirement for spermidine for growth is the specificity of its function as a necessary substrate for the hypusine modification of eIF5A. Spermine itself cannot be used for the hypusine modification, unless it is oxidized to spermidine by the Fms1 amine oxidase. We have quantified the conversion of spermine in vivo and have shown that this conversion is markedly increased in a strain overexpressing the Fms1 protein. We have also shown this conversion in enzymatic studies by using the purified amine oxidase from yeast.
机译:在我们早期的工作中,我们表明亚精胺或精胺都可以支持spe2Δ或spe3Δ多胺需要突变体的生长,但尚不清楚细胞是否对这些胺中的任一种有特定要求。在目前的工作中,我们证明亚精胺是酿酒酵母生长所特有的。我们能够通过使用既缺少亚精胺合酶又缺乏将精胺氧化为亚精胺的FMS1编码的胺氧化酶的spe3Δfms1Δ突变体来显示这种特异性。该双突变体生长所需要的多胺只能通过亚精胺来满足。即,精胺是无效的,因为在没有FMS1基因的情况下它不能被氧化成亚精胺。我们还表明,对亚精胺生长绝对需要的至少一个原因是其功能作为eIF5A的酪氨酸修饰必需底物的功能的特异性。除非将精胺本身通过Fms1胺氧化酶氧化为亚精胺,否则无法将其用于氨嘧啶修饰。我们已经量化了精胺在体内的转化,并表明这种转化在过表达Fms1蛋白的菌株中显着增加。我们还通过使用来自酵母的纯化胺氧化酶在酶研究中显示了这种转化。

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