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首页> 外文期刊>Journal of Molecular Biology >Conformational sampling of aminoacyl-tRNA during selection on the bacterial ribosome.
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Conformational sampling of aminoacyl-tRNA during selection on the bacterial ribosome.

机译:在细菌核糖体选择过程中氨酰基-tRNA的构象取样。

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摘要

Aminoacyl-tRNA (aa-tRNA), in a ternary complex with elongation factor-Tu and GTP, enters the aminoacyl (A) site of the ribosome via a multi-step, mRNA codon-dependent mechanism. This process gives rise to the preferential selection of cognate aa-tRNAs for each mRNA codon and, consequently, the fidelity of gene expression. The ribosome actively facilitates this process by recognizing structural features of the correct substrate, initiated in its decoding site, to accelerate the rates of elongation factor-Tu-catalyzed GTP hydrolysis and ribosome-catalyzed peptide bond formation. Here, the order and timing of conformational events underpinning the aa-tRNA selection process were investigated from multiple structural perspectives using single-molecule fluorescence resonance energy transfer. The time resolution of these measurements was extended to 2.5 and 10 ms, a 10- to 50-fold improvement over previous studies. The data obtained reveal that aa-tRNA undergoes fast conformational sampling within the A site, both before and after GTP hydrolysis. This suggests that the alignment of aa-tRNA with respect to structural elements required for irreversible GTP hydrolysis and peptide bond formation plays a key role in the fidelity mechanism. These observations provide direct evidence that the selection process is governed by motions of aa-tRNA within the A site, adding new insights into the physical framework that helps explain how the rates of GTP hydrolysis and peptide bond formation are controlled by the mRNA codon and other fidelity determinants within the system.
机译:具有延伸因子-Tu和GTP的三元复合物中的氨酰基-tRNA(aa-tRNA)通过多步,依赖mRNA密码子的机制进入核糖体的氨酰基(A)位点。该过程引起对每个mRNA密码子的同源aa-tRNA的优先选择,因此,基因表达的保真度高。核糖体通过识别在其解码位点起始的正确底物的结构特征,积极地促进了这一过程,以加快延伸因子-Tu催化的GTP水解和核糖体催化的肽键形成的速率。在这里,使用单分子荧光共振能量转移从多个结构的角度研究了支撑aa-tRNA选择过程的构象事件的顺序和时间。这些测量的时间分辨率扩展到了2.5毫秒和10毫秒,比以前的研究提高了10到50倍。获得的数据表明,aa-tRNA在GTP水解之前和之后都在A位点内进行了快速构象采样。这表明,相对于不可逆GTP水解和肽键形成所需的结构元件,aa-tRNA的比对在保真机制中起着关键作用。这些观察结果提供了直接的证据,表明选择过程受A位点内aa-tRNA的运动支配,这为物理框架增添了新见解,有助于解释GTP水解和肽键形成的速率如何受mRNA密码子和其他酶控制系统内的保真度决定因素。

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