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错译与氧化应激在. 中的相互作用

Interplay between mistranslation and oxidative stress in .

机构信息

University of Zagreb Faculty of Science, Department of Chemistry, Zagreb, Croatia.

出版信息

Arh Hig Rada Toksikol. 2024 Jun 29;75(2):147-154. doi: 10.2478/aiht-2024-75-3834. eCollection 2024 Jun 1.

Abstract

Mistakes in translation are mostly associated with toxic effects in the cell due to the production of functionally aberrant and misfolded proteins. However, under certain circumstances mistranslation can have beneficial effects and enable cells to preadapt to other stress conditions. Mistranslation may be caused by mistakes made by aminoacyl-tRNA synthetases, essential enzymes that link amino acids to cognate tRNAs. There is an strain expressing isoleucyl-tRNA synthetase mutant variant with inactivated editing domain which produces mistranslated proteomes where valine (Val) and norvaline (Nva) are misincorporated into proteins instead of isoleucine. We compared this strain with the wild-type to determine the effects of such mistranslation on bacterial growth in oxidative stress conditions. When the cells were pre-incubated with 0.75 mmol/L Nva or 1.5 mmol/L Val or Nva and exposed to hydrogen peroxide, no beneficial effect of mistranslation was observed. However, when the editing-deficient strain was cultivated in medium supplemented with 0.75 mmol/L Val up to the early or mid-exponential phase of growth and then exposed to oxidative stress, it slightly outgrew the wild-type grown in the same conditions. Our results therefore show a modest adaptive effect of isoleucine mistranslation on bacterial growth in oxidative stress, but only in specific conditions. This points to a delicate balance between deleterious and beneficial effects of mistranslation.

摘要

翻译错误主要与细胞中的毒性作用有关,这是由于功能异常和错误折叠的蛋白质的产生。然而,在某些情况下,翻译错误可能会产生有益的效果,并使细胞能够预先适应其他应激条件。翻译错误可能是由连接氨基酸和相应 tRNA 的必需酶——氨酰-tRNA 合成酶的错误引起的。有一种菌株表达具有失活编辑结构域的异亮氨酰-tRNA 合成酶突变体变体,该变体产生翻译错误的蛋白质组,其中缬氨酸(Val)和正缬氨酸(Nva)被错误掺入蛋白质而不是异亮氨酸。我们将该菌株与野生型菌株进行了比较,以确定这种翻译错误对细菌在氧化应激条件下生长的影响。当细胞用 0.75mmol/L Nva 或 1.5mmol/L Val 或 Nva 和过氧化氢预孵育时,没有观察到翻译错误的有益效果。然而,当编辑缺陷型菌株在补充有 0.75mmol/L Val 的培养基中培养至生长的早期或中期指数期,然后暴露于氧化应激时,它比在相同条件下生长的野生型菌株略有生长优势。因此,我们的结果表明,在氧化应激条件下,异亮氨酸翻译错误对细菌生长有适度的适应性影响,但仅在特定条件下。这表明翻译错误的有害和有益影响之间存在微妙的平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52b7/11223507/d36c544c63fc/j_aiht-2024-75-3834_fig_001.jpg

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