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在氨酰化寡核糖核苷酸中立体化学和构象偏好之间的直接相互作用。

Direct interplay between stereochemistry and conformational preferences in aminoacylated oligoribonucleotides.

机构信息

Department of Structural and Computational Biology, Max Perutz Labs, University of Vienna, Campus Vienna Biocenter 5, Vienna A-1030, Austria.

National Research University Higher School of Economics, Moscow 101000, Russia.

出版信息

Nucleic Acids Res. 2019 Dec 2;47(21):11077-11089. doi: 10.1093/nar/gkz902.

Abstract

To address the structural and dynamical consequences of amino-acid attachment at 2'- or 3'-hydroxyls of the terminal ribose in oligoribonucleotides, we have performed an extensive set of molecular dynamics simulations of model aminoacylated RNA trinucleotides. Our simulations suggest that 3'-modified trinucleotides exhibit higher solvent exposure of the aminoacylester bond and may be more susceptible to hydrolysis than their 2' counterparts. Moreover, we observe an invariant adoption of well-defined collapsed and extended conformations for both stereoisomers. We show that the average conformational preferences of aminoacylated trinucleotides are determined by their nucleotide composition and are fine-tuned by amino-acid attachment. Conversely, solvent exposure of the aminoacylester bond depends on the attachment site, the nature of attached amino acid and the strength of its interactions with the bases. Importantly, aminoacylated CCA trinucleotides display a systematically higher solvent exposure of the aminoacylester bond and a weaker dependence of such exposure on sidechain interactions than other trinucleotides. These features could facilitate hydrolytic release of the amino acid, especially for 3' attachment, and may have contributed to CCA becoming the universal acceptor triplet in tRNAs. Our results provide novel atomistic details about fundamental aspects of biological translation and furnish clues about its primordial origins.

摘要

为了解决寡核糖核苷酸末端核糖 2'-或 3'-羟基上氨基酸连接所带来的结构和动力学后果,我们对模型氨酰化 RNA 三核苷酸进行了广泛的分子动力学模拟。我们的模拟表明,3'-修饰的三核苷酸表现出更高的氨基酰酯键的溶剂暴露度,可能比其 2'对应物更容易水解。此外,我们观察到两种立体异构体都呈现出不变的明确折叠和扩展构象。我们表明,氨酰化三核苷酸的平均构象偏好由其核苷酸组成决定,并通过氨基酸连接进行微调。相反,氨基酰酯键的溶剂暴露取决于连接位点、连接的氨基酸的性质及其与碱基的相互作用强度。重要的是,氨酰化的 CCA 三核苷酸显示出氨基酰酯键的溶剂暴露度系统地更高,并且这种暴露度对侧链相互作用的依赖性比其他三核苷酸弱。这些特征可以促进氨基酸的水解释放,特别是对于 3'连接,并且可能有助于 CCA 成为 tRNA 中的通用接受三联体。我们的结果提供了关于生物翻译基本方面的新的原子细节,并为其原始起源提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b938/6868383/76240229d5df/gkz902fig1.jpg

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