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顺式脯氨酸(i - 1)-芳香族氨基酸(i)相互作用:通过核磁共振和理论方法表征的丙氨酸-顺式脯氨酸-酪氨酸肽的折叠

The cisproline(i - 1)-aromatic(i) interaction: folding of the Ala-cisPro-Tyr peptide characterized by NMR and theoretical approaches.

作者信息

Nardi F, Kemmink J, Sattler M, Wade R C

机构信息

European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

J Biomol NMR. 2000 May;17(1):63-77. doi: 10.1023/a:1008380807603.

Abstract

Cisproline(i - 1)-aromatic(i) interactions have been detected in several short peptides in aqueous solution by analysis of anomalous chemical shifts measured by 1H-NMR spectroscopy. This formation of local structure is of importance for protein folding and binding properties. To obtain an atomic-detail characterisation of the cisproline(i - 1)-aromatic(i) interaction in terms of structure, energetics and dynamics, we studied the minimal peptide unit, blocked Ala-cisPro-Tyr, using computational and experimental techniques. Structural database analyses and a systematic search revealed two groups of conformations displaying a cisproline(i - 1)-aromatic(i) interaction. These conformations were taken as seeds for molecular dynamics simulations in explicit solvent at 278 K. During a total of 33.6 ns of simulation, all the 'folded' conformations and some 'unfolded' states were sampled. 1H- and 13C-chemical shifts and 3J-coupling constants were measured for the Ala-Pro-Tyr peptide. Excellent agreement was found between all the measured and computed NMR properties, showing the good quality of the force field. We find that under the experimental and simulation conditions, the Ala-cisPro-Tyr peptide is folded 90% of the time and displays two types of folded conformation which we denote 'a' and 'b'. The type a conformations are twice as populated as the type b conformations. The former have the tyrosine ring interacting with the alanine alpha proton and are enthalpically stabilised. The latter have the aromatic ring interacting with the proline side chain and are entropically stabilised. The combined and complementary use of computational and experimental techniques permitted derivation of a detailed scenario of the 'folding' of this peptide.

摘要

通过对1H-NMR光谱测量的异常化学位移进行分析,在水溶液中的几种短肽中检测到顺式脯氨酸(i - 1)-芳香族(i)相互作用。这种局部结构的形成对于蛋白质折叠和结合特性很重要。为了从结构、能量和动力学方面获得顺式脯氨酸(i - 1)-芳香族(i)相互作用的原子细节表征,我们使用计算和实验技术研究了最小肽单元,即封闭的丙氨酸-顺式脯氨酸-酪氨酸。结构数据库分析和系统搜索揭示了两组显示顺式脯氨酸(i - 1)-芳香族(i)相互作用的构象。这些构象被用作在278 K的显式溶剂中进行分子动力学模拟的种子。在总共33.6 ns的模拟过程中,对所有“折叠”构象和一些“未折叠”状态进行了采样。测量了丙氨酸-脯氨酸-酪氨酸肽的1H和13C化学位移以及3J耦合常数。在所有测量和计算的NMR性质之间发现了极好的一致性,表明力场质量良好。我们发现,在实验和模拟条件下,丙氨酸-顺式脯氨酸-酪氨酸肽90%的时间处于折叠状态,并显示出两种类型的折叠构象,我们将其表示为“a”和“b”。a型构象的数量是b型构象的两倍。前者酪氨酸环与丙氨酸α质子相互作用,在焓上稳定。后者芳香环与脯氨酸侧链相互作用,在熵上稳定。计算和实验技术的联合和互补使用允许推导该肽“折叠”的详细情况。

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