首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Hypusine modification for growth is the major function of spermidine in Saccharomyces cerevisiae polyamine auxotrophs grown in limiting spermidine
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Hypusine modification for growth is the major function of spermidine in Saccharomyces cerevisiae polyamine auxotrophs grown in limiting spermidine

机译:在生长受限的亚精胺中生长的啤酒酵母修饰中亚精胺的主要功能是亚精胺

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摘要

Spermidine and its derivative, hypusinated eIF5A, are essential for the growth of Saccharomyces cerevisiae. Very low concentrations of spermidine (10−8 M) are sufficient for the growth of S. cerevisiae polyamine auxotrophs (spe1Δ, spe2Δ, and spe3Δ). Under these conditions, even though the growth rate is near normal, the internal concentration of spermidine is <0.2% of the spermidine concentration present in wild-type cells. When spe2Δ cells are grown with low concentrations of spermidine, there is a large decrease in the amount of hypusinated eukaryotic initiation factor 5A (eIF5A) (1/20 of normal), even though there is no change in the amount of total (modified plus unmodified) eIF5A. It is striking that, as intracellular spermidine becomes limiting, an increasing portion of it (up to 54%) is used for the hypusine modification of eIF5A. These data indicate that hypusine modification of eIF5A is a most important function for spermidine in supporting the growth of S. cerevisiae polyamine auxotrophs.
机译:亚精胺及其衍生物,hypusinated eIF5A,对于酿酒酵母的生长至关重要。极低浓度的亚精胺(10 -8 M)足以用于酿酒酵母多胺营养缺陷型(spe1Δ,spe2Δ和spe3Δ)的生长。在这些条件下,即使生长速度接近正常,亚精胺的内部浓度也小于野生型细胞中存在的亚精胺浓度的0.2%。当spe2Δ细胞在低浓度的亚精胺中生长时,即使总含量没有变化,修饰的真核生物起始因子5A(eIF5A)的量也大大减少了(修饰的加未修改)的eIF5A。令人惊讶的是,随着细胞内亚精胺含量的限制,其中越来越多的部分(高达54%)用于eIF5A的酪氨酸修饰。这些数据表明,eIF5A的苏氨酸修饰是亚精胺在支持酿酒酵母多胺营养缺陷型生长中最重要的功能。

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