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首页> 外文期刊>Nucleic Acids Research >Two distinct domains of the beta subunit of Aquifex aeolicus leucyl-tRNA synthetase are involved in tRNA binding as revealed by a three-hybrid selection.
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Two distinct domains of the beta subunit of Aquifex aeolicus leucyl-tRNA synthetase are involved in tRNA binding as revealed by a three-hybrid selection.

机译:如三杂种选择所揭示的,Aquifex aeolicus亮氨酸-tRNA合成酶的β亚基的两个不同域参与tRNA的结合。

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摘要

The Aquifex aeolicus alphabeta-LeuRS is the only known heterodimeric class Ia aminoacyl-tRNA synthetase. In this study, we investigated the function of the beta subunit which is believed to bind tRNA(Leu). A yeast three-hybrid system was constructed on the basis of the interaction of the beta subunit with its cognate tRNA(Leu). Then, seven mutated beta subunits exhibiting impaired tRNA binding capacities were selected out from a randomly mutated library. Two mutations were identified in the class Ia-helix-bundle-domain, which might interact with the D-hairpin of the tRNA analogous to other class Ia tRNA:synthetases complexes. The five other mutations were found in the LeuRS-specific C-terminal domain of which the folding is still unknown. tRNA affinity measurements and kinetic analyses performed on the isolated beta subunits and on the co-expressed alphabeta-heterodimers showed for all the mutants an effect in tRNA affinity in the ground state. In addition, an effect on the transition state of the aminoacylation reaction was observed for a 21-residues deletion mutant of the C-terminal end. These results show that the genetic approach of the three hybrid system is widely applicable and is a powerful tool for the investigation of tRNA:synthetase interactions.
机译:Aquifex aeolicus lettera-LeuRS是唯一已知的Ia类异二聚体氨酰基-tRNA合成酶。在这项研究中,我们调查了被认为与tRNA(Leu)结合的β亚基的功能。基于β亚基与其同源tRNA(Leu)的相互作用,构建了酵母三杂交系统。然后,从随机突变的文库中选出七个显示出受损的tRNA结合能力的突变的β亚基。在Ia类螺旋束结构域中鉴定出两个突变,它们可能与其他Ia类tRNA:合成酶复合物类似,与tRNA的D型发夹相互作用。在LeuRS特异的C末端结构域中发现了其他五个突变,其折叠仍是未知的。对分离的β亚基和共表达的字母-异二聚体进行的tRNA亲和力测量和动力学分析显示,对于所有突变体,基态中的tRNA亲和力均具有影响。另外,对于C末端的21残基缺失突变体,观察到对氨基酰化反应的过渡状态的影响。这些结果表明,三种杂交系统的遗传方法是广泛适用的,并且是研究tRNA:合成酶相互作用的有力工具。

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