比较蛋白质组学发现疟原虫 tRip-KO 蛋白质中天冬酰胺含量较低。

IF 3.7 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY IUBMB Life Pub Date : 2024-07-04 DOI:10.1002/iub.2891
Martina Pitolli, Marta Cela, Delphine Kapps, Johana Chicher, Laurence Despons, Magali Frugier
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引用次数: 0

摘要

tRNA 不仅对遗传密码的解码至关重要,而且其丰度对蛋白质的生成速度、折叠以及翻译后信使 RNA 的稳定性也有很大影响。疟原虫表达一种名为 tRip 的独特表面蛋白,参与将外源 tRNA 导入寄生虫体内。对野生型和 tRip-KO 变异型伯格氏疟原虫血液阶段进行的蛋白质组学比较分析表明,突变型寄生虫中下调的蛋白质在天冬酰胺含量上有偏差。此外,宿主 tRNA 与疟原虫氨基酰-tRNA 合成酶充能的可能性得到了证实,这使我们提出,输入的宿主 tRNA 参与了寄生虫蛋白质的合成。这些结果还提出了一种新的翻译控制机制,即宿主 tRNA 的导入在疟原虫的发育周期和致病过程中成为基因表达的调控因子,使富含天冬酰胺的调控蛋白得以合成,从而有效并有选择性地控制寄生虫的感染性。
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Comparative proteomics uncovers low asparagine content in Plasmodium tRip-KO proteins.

tRNAs are not only essential for decoding the genetic code, but their abundance also has a strong impact on the rate of protein production, folding, and on the stability of the translated messenger RNAs. Plasmodium expresses a unique surface protein called tRip, involved in the import of exogenous tRNAs into the parasite. Comparative proteomic analysis of the blood stage of wild-type and tRip-KO variant of P. berghei parasites revealed that downregulated proteins in the mutant parasite are distinguished by a bias in their asparagine content. Furthermore, the demonstration of the possibility of charging host tRNAs with Plasmodium aminoacyl-tRNA synthetases led us to propose that imported host tRNAs participate in parasite protein synthesis. These results also suggest a novel mechanism of translational control in which import of host tRNAs emerge as regulators of gene expression in the Plasmodium developmental cycle and pathogenesis, by enabling the synthesis of asparagine-rich regulatory proteins that efficiently and selectively control the parasite infectivity.

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来源期刊
IUBMB Life
IUBMB Life 生物-生化与分子生物学
CiteScore
10.60
自引率
0.00%
发文量
109
审稿时长
4-8 weeks
期刊介绍: IUBMB Life is the flagship journal of the International Union of Biochemistry and Molecular Biology and is devoted to the rapid publication of the most novel and significant original research articles, reviews, and hypotheses in the broadly defined fields of biochemistry, molecular biology, cell biology, and molecular medicine.
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