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VIII型β-转角形成的动力学和热力学:GDNP四肽的圆二色光谱、核磁共振及微秒级显式分子动力学研究

Kinetics and thermodynamics of type VIII beta-turn formation: a CD, NMR, and microsecond explicit molecular dynamics study of the GDNP tetrapeptide.

作者信息

Fuchs Patrick F J, Bonvin Alexandre M J J, Bochicchio Brigida, Pepe Antonietta, Alix Alain J P, Tamburro Antonio M

机构信息

Equipe de Bioinformatique Génomique et Moléculaire, INSERM U726, Université Paris 7, 75251 Paris Cedex 05, France.

出版信息

Biophys J. 2006 Apr 15;90(8):2745-59. doi: 10.1529/biophysj.105.074401. Epub 2006 Jan 27.

Abstract

We report an experimental and theoretical study on type VIII beta-turn using a designed peptide of sequence GDNP. CD and NMR studies reveal that this peptide exists in equilibrium between type VIII beta-turn and extended conformations. Extensive MD simulations give a description of the free energy landscape of the peptide in which we retrieve the same two main conformations suggested by the experiments. The free energy difference between the two conformational states is very small and the transition between them occurs within a few kT at 300 K on a nanosecond timescale. The equilibrium is mainly driven by entropic contribution, which favors extended conformations over beta-turns. This confirms other theoretical studies showing that beta-turns are marginally stable in water solution because of the larger entropy of the extended state unless some stabilizing interactions exist. Our observations may be extended to any type of beta-turn and have important consequences for protein folding. A comparison of our MD and CD results also suggests a possible type VIII beta-turn CD signature indicated by one main band at 200 nm, close to that of random coil, and a fairly large shoulder at 220 nm. Last, our results clearly show that the XXXP motif can only fold into a type VIII beta-turn, which is consistent with its fairly strong propensity for this type of turn. This important finding may help for peptide design and is in line with recent studies on bioactive elastin peptides.

摘要

我们报道了一项关于使用序列为GDNP的设计肽对VIII型β-转角进行的实验和理论研究。圆二色光谱(CD)和核磁共振(NMR)研究表明,该肽在VIII型β-转角和伸展构象之间处于平衡状态。广泛的分子动力学(MD)模拟给出了该肽的自由能景观描述,从中我们得到了与实验所暗示的相同的两种主要构象。两种构象状态之间的自由能差非常小,并且在300 K时,它们之间的转变在纳秒时间尺度上的几个kT范围内发生。这种平衡主要由熵的贡献驱动,这使得伸展构象比β-转角更受青睐。这证实了其他理论研究,即除非存在一些稳定相互作用,否则由于伸展状态具有更大的熵,β-转角在水溶液中是边缘稳定的。我们的观察结果可能适用于任何类型的β-转角,并且对蛋白质折叠具有重要影响。我们的MD和CD结果的比较还表明,VIII型β-转角可能具有CD特征,表现为在200 nm处有一个主峰带,接近无规卷曲,在220 nm处有一个相当大的肩峰。最后,我们的结果清楚地表明,XXXP基序只能折叠成VIII型β-转角,这与其对这种类型转角的较强倾向是一致的。这一重要发现可能有助于肽设计,并与最近关于生物活性弹性蛋白肽的研究一致。

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