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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Conformational Dynamics of Minimal Elastin-Like Polypeptides: The Role of Proline Revealed by Molecular Dynamics and Nuclear Magnetic Resonance
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Conformational Dynamics of Minimal Elastin-Like Polypeptides: The Role of Proline Revealed by Molecular Dynamics and Nuclear Magnetic Resonance

机译:最小弹性蛋白样多肽的构象动力学:脯氨酸的分子动力学和核磁共振揭示的作用。

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Previous molecular dynamics studies of the elastin-like peptide (ELP) GVG(VPGVG) predict that this ELP undergoes a conformational transition from on open to a more compact closed state upon an increase in temperature. These structural changes occurring in this minimal elastin model at the so-called inverse temperature transition (ITT), which takes place when elastin is heated to temperatures of about 20-40 degrees C, are investigated further in this work by means of a combined theoretical and experimental approach. To do this, additional extensive classical molecular dynamics (MD) simulations of the capped octapeptide are carried out, analyzed, and compared to data obtained from homonuclear magnetic resonance (NMR) spectroscopy of the some octapeptide. Moreover, in the previous simulations, the praline residue in the ELP is found to act as a hinge, thereby allowing for the large-amplitude opening and closing conformational motion of the ITT To explore the role of proline in such elastin repeating units, a point mutant (P51), which replaces the proline residue with on isoleucine residue, is also investigated using the aforementioned theoretical and experimental techniques. The results show that the site-directed mutation completely alters the properties of this ELP, thus confirming the importance of the highly conserved proline residue in the ITT Furthermore, a correlation between the two different methods employed is seen. Both methods predict the mutant ELP to be present in an unstructured form and the wild type ELP to have a P-turn-like structure. Finally, the role of the peptidyl cis to trans isomerization of the proline hinge is assessed in detail.
机译:先前对弹性蛋白样肽(ELP)GVG(VPGVG)的分子动力学研究预测,随着温度的升高,该ELP会经历从开放状态到更紧密封闭状态的构象转变。在这种最小弹性蛋白模型中,当弹性蛋白被加热到约20-40摄氏度时,发生在所谓的逆温度转变(ITT)时发生的这些结构变化,在这项工作中将结合理论进行进一步研究。和实验方法。为此,对封端八肽进行了其他广泛的经典分子动力学(MD)模拟,并将其与从某些八肽的同核磁共振(NMR)光谱中获得的数据进行了比较。此外,在先前的模拟中,发现ELP中的果仁糖残基起着铰链的作用,从而实现了ITT的大幅度打开和闭合构象运动。探索脯氨酸在这种弹性蛋白重复单元中的作用还使用上述理论和实验技术研究了用异亮氨酸上的残基取代脯氨酸残基的突变体(P51)。结果表明,定点突变完全改变了该ELP的特性,从而证实了ITT中高度保守的脯氨酸残基的重要性。此外,还发现了所采用的两种不同方法之间的相关性。两种方法都可以预测突变型ELP以非结构形式存在,而野生型ELP具有P形转弯结构。最后,详细评估了肽基顺式在脯氨酸铰链的反式异构化中的作用。

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