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模型肽和数据库片段中的脯氨酰脯氨酸单元。

Prolylproline unit in model peptides and in fragments from databases.

作者信息

Hudáky Ilona, Perczel András

机构信息

Laboratory of Structural Chemistry and Biochemistry, Institute of Chemistry, Eötvös Loránd University, Pázmány sétány 1/A, Budapest 1117, Hungary.

出版信息

Proteins. 2008 Mar;70(4):1389-407. doi: 10.1002/prot.21630.

Abstract

The prolylproline sequence unit is found in several naturally occurring linear and cyclic peptides with immunosuppressive and toxic activity. Furthermore, Pro-Pro units are abundant in collagen, in ligand motifs binding to SH3 or WW domains, as well as in vital enzymes such as DNA glycosylase and thrombin. In all these sequence units a special role is dedicated to conformation in order to successfully fulfill the appropriate biological function. Therefore, a detailed analysis of the basic conformational properties of Pro-Pro is expected to reveal the versatile structural role of this sequence. PCM (polarizable continuum model) calculations on the basis of ab initio and density functional theory investigations using the model peptide HCO-L-Pro-L-Pro-NH2 are presented. Cis-trans isomerism, backbone conformation and ring puckering are studied. A systematic comparison is made to experimental data gained on L-prolyl-L-proline sequence units retrieved from the Protein Data Bank as well as from the Cambridge Structural Database. PCM data are in good agreement with high-resolution X-ray crystallography. Population data derived from energy calculations and those gained directly from statistics predict that 87% of the Pro-Pro sequence units adopt elongated structures, while 13% form beta-turns. Both approaches prefer the same 6 out of the 36 ideally possible backbone folds. Polyproline II unit (t epsilonL t epsilonL), other elongated structures (c epsilonL t epsilonL, t epsilonL t alphaL and t epsilonL t gammaL), type VIa (t epsilonL c alphaL) and type I or III beta-turns (t alphaL t alphaL) altogether describe 96% of the prolylproline sequences. In disordered proteins or domains, Pro-Pro sequence units may sample the various conformers and contribute to the segmental motions.

摘要

脯氨酰脯氨酸序列单元存在于几种具有免疫抑制和毒性活性的天然线性和环状肽中。此外,脯氨酰-脯氨酸单元在胶原蛋白、与SH3或WW结构域结合的配体基序以及诸如DNA糖基化酶和凝血酶等重要酶中大量存在。在所有这些序列单元中,一种特殊的作用被赋予构象,以便成功地履行适当的生物学功能。因此,对脯氨酰-脯氨酸基本构象性质的详细分析有望揭示该序列的多种结构作用。本文介绍了基于使用模型肽HCO-L-脯氨酰-L-脯氨酸-NH2的从头算和密度泛函理论研究的PCM(极化连续介质模型)计算。研究了顺反异构、主链构象和环皱。与从蛋白质数据库以及剑桥结构数据库中检索到的L-脯氨酰-L-脯氨酸序列单元的实验数据进行了系统比较。PCM数据与高分辨率X射线晶体学结果吻合良好。从能量计算得出的群体数据和直接从统计中获得的数据预测,87%的脯氨酰-脯氨酸序列单元采用伸长结构,而13%形成β-转角。两种方法在36种理想的可能主链折叠中都偏好相同的6种。聚脯氨酸II单元(tεL tεL)、其他伸长结构(cεL tεL、tεL tαL和tεL tγL)、VIa型(tεL cαL)和I型或III型β-转角(tαL tαL)总共描述了96%的脯氨酰脯氨酸序列。在无序蛋白质或结构域中,脯氨酰-脯氨酸序列单元可能会采样各种构象体并有助于片段运动。

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