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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >Dynamic Programming and Clique Based Approaches for Protein Threading with Profiles and Constraints
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Dynamic Programming and Clique Based Approaches for Protein Threading with Profiles and Constraints

机译:具有轮廓和约束的蛋白质编程的动态编程和基于派系的方法

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摘要

The protein threading problem with profiles is known to be efficiently solvable using dynamic programming. In this paper, we consider a variant of the protein threading problem with profiles in which constraints on distances between residues are given. We prove that protein threading with profiles and constraints is NP-hard. Moreover, we show a strong hardness result on the approximation of an optimal threading satisfying all the constraints. On the other hand, we develop two practical algorithms: CLIQUETHREAD and BBDPTHREAD. CLIQUETHREAD reduces the threading problem to the maximum edge-weight clique problem, whereas BBDPTHREAD combines dynamic programming and branch-and-bound techniques. We perform computational experiments using protein structure data in PDB (Protein Data Bank) using simulated distance constraints. The results show that constraints are useful to improve the alignment accuracy of the target sequence and the template structure. Moreover, these results also show that BBDPTHREAD is in general faster than CLIQUETHREAD for larger size proteins whereas CLIQUETHREAD is useful if there does not exist a feasible threading.
机译:已知具有分布图的蛋白质穿线问题可使用动态编程有效解决。在本文中,我们考虑了带有轮廓的蛋白质穿线问题的一种变体,其中给出了残基之间距离的限制。我们证明具有轮廓和约束的蛋白质穿线是NP困难的。此外,我们在满足所有约束的最佳螺纹逼近方面显示出很强的硬度结果。另一方面,我们开发了两种实用的算法:CLIQUETHREAD和BBDPTHREAD。 CLIQUETHREAD将线程问题减少到最大的边缘权重集团问题,而BBDPTHREAD则结合了动态编程和分支定界技术。我们使用模拟的距离约束条件,使用PDB(蛋白质数据库)中的蛋白质结构数据进行计算实验。结果表明,约束条件对于提高目标序列和模板结构的比对准确性是有用的。而且,这些结果还表明,对于较大尺寸的蛋白质,BBDPTHREAD通常比CLIQUETHREAD更快,而如果不存在可行的穿线方法,则CLIQUETHREAD很有用。

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