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A simple Cα-SC potential with higher accuracy for protein fold recognition

机译:简单的Cα-SC电位,具有更高的蛋白质折叠识别准确度

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In this paper, an improved Cα-SC energy potential designed for protein fold recognition was reported. It consists of three extremely simple interaction terms which are supposed to be the dominant interactions in protein folding: residue-residue contact, hydrophobicity and pseudodihedral potentials. The potential function only contains 210 contacts, one hydrophobic and one torsion parameters, which have been optimized using an interior point algorithm of linear programming. Tests of the derived potential function on commonly used decoy sets illustrate that it outperforms most of the existing coarse-grained potentials in terms of its capabilities in recognizing native structures and consistency in achieving high Z-scores across decoy sets, and it has almost equivalent performance to the potentials which considered complex intramolecular interactions. The results show that our scoring function is a generally prospective potential for protein structure prediction and modeling with regard to its recognition and computation efficacy.
机译:在本文中,报道了设计用于蛋白质折叠识别的改进的Cα-SC能量势。它由三个极其简单的相互作用术语组成,这些术语被认为是蛋白质折叠中的主要相互作用:残基-残基接触,疏水性和拟二面体电位。势函数仅包含210个触点,一个疏水性参数和一个扭转参数,这些参数已使用线性编程的内点算法进行了优化。对常用诱饵集合上的衍生势函数的测试表明,就其识别原始结构的能力以及跨诱饵集合获得高Z分数的一致性而言,它优于大多数现有的粗粒度势能,并且其性能几乎相同考虑到复杂的分子内相互作用的潜力。结果表明,就其识别和计算功效而言,我们的评分功能对于蛋白质结构的预测和建模具有普遍的预期潜力。

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