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一种用于探索肽与PDZ结构域已知结构及同源模型结合选择性的灵活对接程序。

A flexible docking procedure for the exploration of peptide binding selectivity to known structures and homology models of PDZ domains.

作者信息

Niv Masha Y, Weinstein Harel

机构信息

Department of Physiology and Biophysics, Weill Medical College of Cornell University, 1300 York Avenue, New York, New York 10021, USA.

出版信息

J Am Chem Soc. 2005 Oct 12;127(40):14072-9. doi: 10.1021/ja054195s.

Abstract

PDZ domains are important scaffolding modules that typically bind to the C-termini of their interaction partners. Several structures of such complexes have been solved, revealing a conserved binding site in the PDZ domain and an extended conformation of the bound peptide. A compendium of information regarding PDZ complexes demonstrates that dissimilar C-terminal peptides bind to the same PDZ domain, and different PDZ domains can bind the same peptides. A detailed understanding of the PDZ-peptide recognition is needed to elucidate this complexity. To this end, we have designed a family of docking protocols for PDZ domains (termed PDZ-DocScheme) that is based on simulated annealing molecular dynamics and rotamer optimization, and is applicable to the docking of long peptides (20-40 rotatable bonds) to both known PDZ structures and to the more complicated problem of homology models of these domains. The resulting protocol reproduces the structures of PDZ complexes with peptides 4-8 amino acids long within 1-2 A from the experimental structure when the docking is performed to the original structure. If the structure of the target PDZ domain is an apo structure or a homology model, the docking protocol yields structures within 3 A in 9 out of 12 test cases. The automated docking procedure PDZ-DocScheme can serve in the generation of a structural context for validation of PDZ domain specificity from mutagenesis and ligand binding data.

摘要

PDZ结构域是重要的支架模块,通常与其相互作用伙伴的C末端结合。已经解析了几种此类复合物的结构,揭示了PDZ结构域中一个保守的结合位点以及结合肽的延伸构象。关于PDZ复合物的信息汇编表明,不同的C末端肽可与同一个PDZ结构域结合,并且不同的PDZ结构域可以结合相同的肽。需要对PDZ-肽识别进行详细了解以阐明这种复杂性。为此,我们设计了一系列用于PDZ结构域的对接方案(称为PDZ-DocScheme),该方案基于模拟退火分子动力学和旋转异构体优化,适用于将长肽(20-40个可旋转键)对接至已知的PDZ结构以及这些结构域同源模型这一更为复杂的问题。当对接至原始结构时,所得方案能够在距离实验结构1-2埃的范围内重现与4-8个氨基酸长的肽形成的PDZ复合物的结构。如果目标PDZ结构域的结构是无配体结构或同源模型,则在12个测试案例中有9个案例中,对接方案产生的结构与目标结构的偏差在3埃以内。自动化对接程序PDZ-DocScheme可用于生成结构背景,以便根据诱变和配体结合数据验证PDZ结构域的特异性。

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