首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Naturally occurring aminoacyl-tRNA synthetases editing-domain mutations that cause mistranslation in Mycoplasma parasites
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Naturally occurring aminoacyl-tRNA synthetases editing-domain mutations that cause mistranslation in Mycoplasma parasites

机译:天然存在的氨酰基-tRNA合成了导致支原体寄生虫误翻译的编辑域突变

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摘要

Mycoplasma parasites escape host immune responses via mechanisms that depend on remarkable phenotypic plasticity. Identification of these mechanisms is of great current interest. The aminoacyl-tRNA synthetases (AARSs) attach amino acids to their cognate tRNAs, but occasionally make errors that substitute closely similar amino acids. AARS editing pathways clear errors to avoid mistranslation during protein synthesis. We show here that AARSs in Mycoplasma parasites have point mutations and deletions in their respective editing domains. The deleterious effect on editing was confirmed with a specific example studied in vitro. In vivo mistranslation was determined by mass spectrometric analysis of proteins produced in the parasite. These mistranslations are uniform cases where the predicted closely similar amino acid replaced the correct one. Thus, natural AARS editing-domain mutations in Mycoplasma parasites cause mistranslation. We raise the possibility that these mutations evolved as a mechanism for antigen diversity to escape host defense systems.
机译:支原体寄生虫通过依赖显着表型可塑性的机制逃脱宿主免疫反应。目前,对这些机制的识别具有极大的兴趣。氨酰基-tRNA合成酶(AARS)将氨基酸连接到它们的同源tRNA,但是偶尔会出现错误,这些错误会替代非常相似的氨基酸。 AARS编辑途径可以清除错误,从而避免蛋白质合成过程中的错误翻译。我们在这里显示,支原体寄生虫中的AARS在它们各自的编辑域中具有点突变和缺失。通过体外研究的具体实例证实了对编辑的有害作用。通过对寄生虫中产生的蛋白质进行质谱分析来确定体内误翻译。这些翻译错误是统一的情况,其中预测的近似相似的氨基酸替代了正确的氨基酸。因此,支原体寄生虫中的天然AARS编辑域突变导致翻译错误。我们提出这些突变进化为抗原多样性逃避宿主防御系统的机制的可能性。

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