首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Amino Acids Whose Intracellular Levels Change Most During Aging Alter Chronological Life Span of Fission Yeast
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Amino Acids Whose Intracellular Levels Change Most During Aging Alter Chronological Life Span of Fission Yeast

机译:氨基酸在裂变酵母酵母的老化时间段期间变化的细胞内水平最大化

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Amino acid deprivation or supplementation can affect cellular and organismal life span, but we know little about the role of concentration changes in free, intracellular amino acids during aging. Here, we determine free amino acid levels during chronological aging of nondividing fission yeast cells. We compare wild-type with long-lived mutant cells that lack the Pka1 protein of the protein kinase A signalling pathway. In wild-type cells, total amino acid levels decrease during aging, but much less so in pka1 mutants. Two amino acids strongly change as a function of age: glutamine decreases, especially in wild-type cells, while aspartate increases, especially in pka1 mutants. Supplementation of glutamine is sufficient to extend the chronological life span of wild-type but not of pka1 Delta cells. Supplementation of aspartate, on the other hand, shortens the life span of pka1 Delta but not of wild-type cells. Our results raise the possibility that certain amino acids are biomarkers of aging, and their concentrations during aging can promote or limit cellular life span.
机译:氨基酸缺乏或补充会影响细胞和机体的寿命,但我们对衰老过程中细胞内游离氨基酸浓度变化的作用知之甚少。在这里,我们测定了非分裂分裂酵母细胞按时间顺序老化期间的游离氨基酸水平。我们将野生型与缺乏蛋白激酶A信号通路Pka1蛋白的长寿命突变细胞进行比较。在野生型细胞中,总氨基酸水平在衰老过程中下降,但在pka1突变体中下降得更少。两种氨基酸随着年龄的变化而发生强烈变化:谷氨酰胺减少,尤其是在野生型细胞中,而天冬氨酸增加,尤其是在pka1突变体中。补充谷氨酰胺足以延长野生型细胞的寿命,但不能延长pka1δ细胞的寿命。另一方面,补充天冬氨酸可缩短pka1δ细胞的寿命,但不会缩短野生型细胞的寿命。我们的结果增加了某些氨基酸是衰老生物标志物的可能性,它们在衰老过程中的浓度可以促进或限制细胞寿命。

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