Fain Boris, Xia Yu, Levitt Michael
Department of Structural Biology, Stanford University, Stanford University School of Medicine, California 94305, USA.
Protein Sci. 2002 Aug;11(8):2010-21. doi: 10.1110/ps.0200702.
We describe the construction of a scoring function designed to model the free energy of protein folding. An optimization technique is used to determine the best functional forms of the hydrophobic, residue-residue and hydrogen-bonding components of the potential. The scoring function is expanded by use of Chebyshev polynomials, the coefficients of which are determined by minimizing the score, in units of standard deviation, of native structures in the ensembles of alternate decoy conformations. The derived effective potential is then tested on decoy sets used conventionally in such studies. Using our scoring function, we achieve a high level of discrimination between correct and incorrect folds. In addition, our method is able to represent functions of arbitrary shape with fewer parameters than the usual histogram potentials of similar resolution. Finally, our representation can be combined easily with many optimization methods, because the total energy is a linear function of the parameters. Our results show that the techniques of Z-score optimization and Chebyshev expansion work well.
我们描述了一种用于模拟蛋白质折叠自由能的评分函数的构建。采用一种优化技术来确定势能中疏水、残基-残基和氢键成分的最佳函数形式。通过使用切比雪夫多项式来扩展评分函数,其系数通过以交替诱饵构象集合中天然结构的标准差为单位最小化得分来确定。然后在这类研究中常规使用的诱饵集上测试导出的有效势能。使用我们的评分函数,我们在正确折叠和错误折叠之间实现了高度的区分。此外,与具有相似分辨率的常用直方图势能相比,我们的方法能够用更少的参数表示任意形状的函数。最后,由于总能量是参数的线性函数,我们的表示可以很容易地与许多优化方法相结合。我们的结果表明,Z分数优化和切比雪夫展开技术效果良好。