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使用CABS-dock网络服务器进行结合位点搜索和柔性对接对蛋白质-肽相互作用进行建模。

Modeling of protein-peptide interactions using the CABS-dock web server for binding site search and flexible docking.

作者信息

Blaszczyk Maciej, Kurcinski Mateusz, Kouza Maksim, Wieteska Lukasz, Debinski Aleksander, Kolinski Andrzej, Kmiecik Sebastian

机构信息

Department of Chemistry, University of Warsaw, Pasteura 1, 02-093 Warsaw, Poland.

Department of Chemistry, University of Warsaw, Pasteura 1, 02-093 Warsaw, Poland.

出版信息

Methods. 2016 Jan 15;93:72-83. doi: 10.1016/j.ymeth.2015.07.004. Epub 2015 Jul 10.

Abstract

Protein-peptide interactions play essential functional roles in living organisms and their structural characterization is a hot subject of current experimental and theoretical research. Computational modeling of the structure of protein-peptide interactions is usually divided into two stages: prediction of the binding site at a protein receptor surface, and then docking (and modeling) the peptide structure into the known binding site. This paper presents a comprehensive CABS-dock method for the simultaneous search of binding sites and flexible protein-peptide docking, available as a user's friendly web server. We present example CABS-dock results obtained in the default CABS-dock mode and using its advanced options that enable the user to increase the range of flexibility for chosen receptor fragments or to exclude user-selected binding modes from docking search. Furthermore, we demonstrate a strategy to improve CABS-dock performance by assessing the quality of models with classical molecular dynamics. Finally, we discuss the promising extensions and applications of the CABS-dock method and provide a tutorial appendix for the convenient analysis and visualization of CABS-dock results. The CABS-dock web server is freely available at http://biocomp.chem.uw.edu.pl/CABSdock/.

摘要

蛋白质 - 肽相互作用在生物体中发挥着重要的功能作用,其结构表征是当前实验和理论研究的热点课题。蛋白质 - 肽相互作用结构的计算建模通常分为两个阶段:预测蛋白质受体表面的结合位点,然后将肽结构对接(并建模)到已知的结合位点。本文介绍了一种用于同时搜索结合位点和进行灵活的蛋白质 - 肽对接的综合CABS - dock方法,该方法可作为用户友好的网络服务器使用。我们展示了在默认CABS - dock模式下以及使用其高级选项获得的CABS - dock示例结果,这些高级选项使用户能够增加所选受体片段的灵活性范围,或从对接搜索中排除用户选择的结合模式。此外,我们展示了一种通过用经典分子动力学评估模型质量来提高CABS - dock性能的策略。最后,我们讨论了CABS - dock方法有前景的扩展和应用,并提供了一个教程附录,以便于对CABS - dock结果进行分析和可视化。CABS - dock网络服务器可在http://biocomp.chem.uw.edu.pl/CABSdock/免费获取。

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