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大肠杆菌和酿酒酵母细胞中D-氨酰基-tRNA的代谢

Metabolism of D-aminoacyl-tRNAs in Escherichia coli and Saccharomyces cerevisiae cells.

作者信息

Soutourina J, Plateau P, Blanquet S

机构信息

Laboratoire de Biochimie, Unité Mixte de Recherche 7654, CNRS-Ecole Polytechnique, 91128 Palaiseau Cedex, France.

出版信息

J Biol Chem. 2000 Oct 20;275(42):32535-42. doi: 10.1074/jbc.M005166200.

Abstract

In Escherichia coli, tyrosyl-tRNA synthetase is known to esterify tRNA(Tyr) with tyrosine. Resulting d-Tyr-tRNA(Tyr) can be hydrolyzed by a d-Tyr-tRNA(Tyr) deacylase. By monitoring E. coli growth in liquid medium, we systematically searched for other d-amino acids, the toxicity of which might be exacerbated by the inactivation of the gene encoding d-Tyr-tRNA(Tyr) deacylase. In addition to the already documented case of d-tyrosine, positive responses were obtained with d-tryptophan, d-aspartate, d-serine, and d-glutamine. In agreement with this observation, production of d-Asp-tRNA(Asp) and d-Trp-tRNA(Trp) by aspartyl-tRNA synthetase and tryptophanyl-tRNA synthetase, respectively, was established in vitro. Furthermore, the two d-aminoacylated tRNAs behaved as substrates of purified E. coli d-Tyr-tRNA(Tyr) deacylase. These results indicate that an unexpected high number of d-amino acids can impair the bacterium growth through the accumulation of d-aminoacyl-tRNA molecules and that d-Tyr-tRNA(Tyr) deacylase has a specificity broad enough to recycle any of these molecules. The same strategy of screening was applied using Saccharomyces cerevisiae, the tyrosyl-tRNA synthetase of which also produces d-Tyr-tRNA(Tyr), and which, like E. coli, possesses a d-Tyr-tRNA(Tyr) deacylase activity. In this case, inhibition of growth by the various 19 d-amino acids was followed on solid medium. Two isogenic strains containing or not the deacylase were compared. Toxic effects of d-tyrosine and d-leucine were reinforced upon deprivation of the deacylase. This observation suggests that, in yeast, at least two d-amino acids succeed in being transferred onto tRNAs and that, like in E. coli, the resulting two d-aminoacyl-tRNAs are substrates of a same d-aminoacyl-tRNA deacylase.

摘要

在大肠杆菌中,已知酪氨酰 - tRNA合成酶可将酪氨酸与tRNA(Tyr)酯化。生成的d - Tyr - tRNA(Tyr)可被d - Tyr - tRNA(Tyr)脱酰基酶水解。通过监测大肠杆菌在液体培养基中的生长情况,我们系统地寻找了其他一些d - 氨基酸,其毒性可能会因编码d - Tyr - tRNA(Tyr)脱酰基酶的基因失活而加剧。除了已记录的d - 酪氨酸的情况外,d - 色氨酸、d - 天冬氨酸、d - 丝氨酸和d - 谷氨酰胺也得到了阳性反应。与这一观察结果一致,天冬氨酰 - tRNA合成酶和色氨酰 - tRNA合成酶分别在体外生成了d - Asp - tRNA(Asp)和d - Trp - tRNA(Trp)。此外,这两种d - 氨酰化tRNA表现为纯化的大肠杆菌d - Tyr - tRNA(Tyr)脱酰基酶的底物。这些结果表明,数量出乎意料的大量d - 氨基酸可通过d - 氨酰 - tRNA分子的积累损害细菌生长,并且d - Tyr - tRNA(Tyr)脱酰基酶具有足够广泛的特异性以循环利用这些分子中的任何一种。使用酿酒酵母应用了相同的筛选策略,其酪氨酰 - tRNA合成酶也产生d - Tyr - tRNA(Tyr),并且与大肠杆菌一样,具有d - Tyr - tRNA(Tyr)脱酰基酶活性。在这种情况下,在固体培养基上观察了各种19种d - 氨基酸对生长的抑制作用。比较了含有或不含有脱酰基酶的两个同基因菌株。在缺乏脱酰基酶时,d - 酪氨酸和d - 亮氨酸的毒性作用增强。这一观察结果表明,在酵母中,至少有两种d - 氨基酸成功地被转移到tRNA上,并且与在大肠杆菌中一样,生成的两种d - 氨酰 - tRNA是同一种d - 氨酰 - tRNA脱酰基酶的底物。

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