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When Too Much ATP Is Bad for Protein Synthesis

机译:当太多的ATP对蛋白质合成不利时

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摘要

Adenosine triphosphate (ATP) is the energy currency of living cells. Even though ATP powers virtually all energy-dependent activities, most cellular ATP is utilized in protein synthesis via tRNA aminoacylation and guanosine triphosphate regeneration. Magnesium (Mg2+), the most common divalent cation in living cells, plays crucial roles in protein synthesis by maintaining the structure of ribosomes, participating in the biochemistry of translation initiation and functioning as a counterion for ATP. A non-physiological increase in ATP levels hinders growth in cells experiencing Mg2+ limitation because ATP is the most abundant nucleotide triphosphate in the cell, and Mg2+ is also required for the stabilization of the cytoplasmic membrane and as a cofactor for essential enzymes. We propose that organisms cope with Mg2+ limitation by decreasing ATP levels and ribosome production, thereby reallocating Mg2+ to indispensable cellular processes. (C) 2015 Elsevier Ltd. All rights reserved.
机译:三磷酸腺苷(ATP)是活细胞的能量货币。即使ATP几乎支持所有依赖能量的活动,大多数细胞ATP仍通过tRNA氨基酰化和鸟苷三磷酸再生用于蛋白质合成。镁(Mg2 +)是活细胞中最常见的二价阳离子,它通过维持核糖体的结构,参与翻译起始的生化过程并充当ATP的抗衡离子,在蛋白质合成中起关键作用。 ATP含量的非生理性增加会阻碍Mg2 +限制细胞的生长,因为ATP是细胞中最丰富的三磷酸核苷酸,Mg2 +也是细胞质膜稳定和必需酶辅助因子所必需的。我们建议生物体通过降低ATP水平和核糖体生产来应对Mg2 +的局限性,从而将Mg2 +重新分配到必不可少的细胞过程中。 (C)2015 Elsevier Ltd.保留所有权利。

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