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An efficient mechanism for prediction of protein-ligand interactions based on analysis of protein tertiary substructures

机译:基于蛋白质第三结构分析的基于蛋白质 - 配体相互作用预测的一种有效机制

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Analysis of protein-ligand interactions is a fundamental issue in drug design. As the detailed and accurate analysis of protein-ligand interactions involves calculation of binding free energy based on thermodynamics and even quantum mechanics, which is highly expensive in terms of computing time, conformational and structural analysis of proteins and ligands has been widely employed as a screening process in computer-aided drug design. In this paper, an efficient mechanism for identifying possible protein-ligand interactions based on analysis of protein tertiary substructures is proposed. In one experiment reported in this paper, the proposed prediction mechanism has been exploited to obtain some clues about a hypothesis that the biochemists have been speculating. The main distinction in the design of the prediction mechanism is the filtering process incorporated to expedite the analysis. The filtering process extracts the residues located in a cave of the protein tertiary structure for analysis and operates with O(nlogn) time complexity, where n is the number of residues in the protein. In comparison, the /spl alpha/hull algorithm, which is a widely used algorithm in computer graphics for identifying those instances that are on the contour of a 3-dimensional object, features O(n/sup 2/) time complexity. Experimental results show that the filtering process presented in this paper is able to speed up the analysis by a factor ranging from 3.11 to 9.79 times.
机译:蛋白质 - 配体相互作用的分析是药物设计的基本问题。作为蛋白质 - 配体相互作用的详细和准确分析涉及基于热力学的结合能量计算,甚至量子力学,在计算时间方面非常昂贵,蛋白质和配体的构象和结构分析已被广泛用作筛选计算机辅助药物设计过程。本文提出了一种基于蛋白质三级结构分析来确定可识别可能的蛋白质 - 配体相互作用的有效机制。在本文报道的一个实验中,已经利用所提出的预测机制来获得一些关于生物化学案已经猜测的假设的线索。预测机制设计中的主要区别是掺入的过滤过程,加快了分析。过滤过程提取位于蛋白质三级结构的洞中的残基用于分析,并与O(NLogn)时间复杂性进行,其中N是蛋白质中残留物的数量。相比之下,/ SPL alpha /船体算法是计算机图形中广泛使用的算法,用于识别3维对象轮廓上的那些实例,具有O(n / sup 2 /)时间复杂度。实验结果表明,本文提出的过滤过程能够通过3.11至9.79倍的因子加速分析。

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