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MIST a Novel Approach to Reveal Hidden Substrate Specificity in Aminoacyl-tRNA Synthetases

机译:MIST一种在氨酰基-tRNA合成酶中揭示隐藏底物特异性的新方法

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摘要

Aminoacyl-tRNA synthetases (AARSs) constitute a family of RNA-binding proteins, that participate in the translation of the genetic code, by covalently linking amino acids to appropriate tRNAs. Due to their fundamental importance for cell life, AARSs are likely to be one of the most ancient families of enzymes and have therefore been characterized extensively. Paradoxically, little is known about their capacity to discriminate tRNAs mainly because of the practical challenges that represent precise and systematic tRNA identification. This work describes a new technical and conceptual approach named MIST (Microarray Identification of Shifted tRNAs) designed to study the formation of tRNA/AARS complexes independently from the aminoacylation reaction. MIST combines electrophoretic mobility shift assays with microarray analyses. Although MIST is a non-cellular assay, it fully integrates the notion of tRNA competition. In this study we focus on yeast cytoplasmic Arginyl-tRNA synthetase (yArgRS) and investigate in depth its ability to discriminate cellular tRNAs. We report that yArgRS in submicromolar concentrations binds cognate and non-cognate tRNAs with a wide range of apparent affinities. In particular, we demonstrate that yArgRS binds preferentially to type II tRNAs but does not support their misaminoacylation. Our results reveal important new trends in tRNA/AARS complex formation and potential deep physiological implications.
机译:氨酰基-tRNA合成酶(AARS)构成了RNA结合蛋白家族,它们通过将氨基酸与适当的tRNA共价连接来参与遗传密码的翻译。由于其对细胞生命的根本重要性,AARS可能是最古老的酶家族之一,因此已得到广泛的表征。矛盾的是,人们对它们区分tRNA的能力知之甚少,主要是因为代表了精确而系统的tRNA鉴定的实际挑战。这项工作描述了一种名为MIST(转移的tRNA的微阵列识别)的新技术和概念方法,旨在研究独立于氨酰化反应的tRNA / AARS复合物的形成。 MIST将电泳迁移率迁移分析与微阵列分析相结合。尽管MIST是一种非细胞测定,但它完全整合了tRNA竞争的概念。在这项研究中,我们专注于酵母胞质精氨酸tRNA合成酶(yArgRS),并深入研究其区分细胞tRNA的能力。我们报告亚微摩尔浓度的yArgRS结合具有广泛的表观亲和力的同源和非同源tRNA。特别是,我们证明yArgRS优先与II型tRNA结合,但不支持它们的错误氨基酰化作用。我们的研究结果揭示了tRNA / AARS复合物形成的重要新趋势以及潜在的深层生理意义。

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