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蛋白激酶:对接和同源建模的可靠性。

Protein kinases: docking and homology modeling reliability.

机构信息

Dipartimento di Scienze Farmaceutiche, Universita di Pisa, via Bonanno 6, 56126 Pisa, Italy.

出版信息

J Chem Inf Model. 2010 Aug 23;50(8):1432-41. doi: 10.1021/ci100161z.

Abstract

A database of about 700 high-resolution kinase structures was used to test the reliability of 17 docking procedures (using six docking software packages) by means of self- and cross-docking studies. The analysis of about 80 000 docking calculations suggests that the docking of an unknown ligand into a kinase has a probability of only 30-37% to be a correct ligand pose. However, based on the hypothesis that docking calculations are more reliable if the ligand to be docked is similar to the ligand present in the complex from which the target docking protein has been extracted, we propose an automated procedure that is able to improve the docking accuracy, suggest the best protein for docking studies, and assess the statistical reliability of docking calculations. The results were also transferred to the homology modeling field and led us to propose an alternative strategy based on ligand similarity for the development of kinase models whose experimental structure was not known. Our results suggest that in many cases this approach can give better results than the classical homology modeling procedure based exclusively on the sequence homology.

摘要

使用一个包含约 700 个高分辨率激酶结构的数据库,通过自对接和互对接研究,测试了 17 种对接程序(使用 6 个对接软件包)的可靠性。对约 80000 次对接计算的分析表明,将未知配体对接入激酶中,其正确配体构象的概率只有 30-37%。然而,基于这样的假设,即如果要对接的配体与从其提取靶标对接蛋白的复合物中存在的配体相似,那么对接计算就更可靠,我们提出了一种自动化程序,能够提高对接准确性,建议用于对接研究的最佳蛋白质,并评估对接计算的统计可靠性。这些结果也被转移到同源建模领域,并促使我们提出了一种基于配体相似性的替代策略,用于开发激酶模型,而这些激酶模型的实验结构尚不清楚。我们的结果表明,在许多情况下,这种方法可以比仅基于序列同源性的经典同源建模过程产生更好的结果。

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