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利用分子动力学模拟研究噬菌体 P22 N 肽与 boxB RNA 基序的结合。

Binding of the bacteriophage P22 N-peptide to the boxB RNA motif studied by molecular dynamics simulations.

机构信息

School of Engineering and Science, Jacobs University Bremen, Bremen, Germany.

出版信息

Biophys J. 2009 Dec 16;97(12):3139-49. doi: 10.1016/j.bpj.2009.09.035.

Abstract

Protein-RNA interactions are important for many cellular processes. The Nut-utilization site (N)-protein of bacteriophages contains an N-terminal arginine-rich motif that undergoes a folding transition upon binding to the boxB RNA hairpin loop target structure. Molecular dynamics simulations were used to investigate the dynamics of the P22 N-peptide-boxB complex and to elucidate the energetic contributions to binding. In addition, the free-energy changes of RNA and peptide conformational adaptation to the bound forms, as well as the role of strongly bound water molecules at the peptide-RNA interface, were studied. The influence of peptide amino acid substitutions and the salt dependence of interaction were investigated and showed good agreement with available experimental results. Several tightly bound water molecules were found at the RNA-binding interface in both the presence and absence of N-peptide. Explicit consideration of the waters resulted in shifts of calculated contributions during the energetic analysis, but overall similar binding energy contributions were found. Of interest, it was found that the electrostatic field of the RNA has a favorable influence on the coil-to-alpha-helix transition of the N-peptide already outside of the peptide-binding site. This result may have important implications for understanding peptide-RNA complex formation, which often involves coupled folding and association processes. It indicates that electrostatic interactions near RNA molecules can lead to a shift in the equilibrium toward the bound form of an interacting partner before it enters the binding pocket.

摘要

蛋白质与 RNA 的相互作用对许多细胞过程至关重要。噬菌体的 Nut-utilization 位点(N)-蛋白含有一个 N 端富含精氨酸的基序,该基序在与 boxB RNA 发夹环靶结构结合时会发生折叠转变。使用分子动力学模拟研究了 P22 N 肽-boxB 复合物的动力学,并阐明了结合的能量贡献。此外,还研究了 RNA 和肽构象适应结合形式的自由能变化,以及肽-RNA 界面上强结合水分子的作用。研究了肽氨基酸取代的影响和相互作用的盐依赖性,并与可用的实验结果吻合良好。在存在和不存在 N 肽的情况下,在 RNA 结合界面都发现了几个紧密结合的水分子。在能量分析中,明确考虑水的存在会导致计算贡献发生变化,但总体上发现相似的结合能贡献。有趣的是,发现 RNA 的静电场对 N 肽的从无规卷曲到α-螺旋的转变有有利影响,即使在肽结合位点之外也是如此。这一结果可能对理解涉及折叠和缔合过程的肽-RNA 复合物形成具有重要意义。这表明,在相互作用的伴侣进入结合口袋之前,靠近 RNA 分子的静电相互作用可以导致平衡向结合形式转移。

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