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首页> 外文期刊>Proteins: Structure, Function, and Genetics >PIPER: an FFT-based protein docking program with pairwise potentials.
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PIPER: an FFT-based protein docking program with pairwise potentials.

机译:PIPER:具有成对电位的基于FFT的蛋白质对接程序。

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The Fast Fourier Transform (FFT) correlation approach to protein-protein docking can evaluate the energies of billions of docked conformations on a grid if the energy is described in the form of a correlation function. Here, this restriction is removed, and the approach is efficiently used with pairwise interaction potentials that substantially improve the docking results. The basic idea is approximating the interaction matrix by its eigenvectors corresponding to the few dominant eigenvalues, resulting in an energy expression written as the sum of a few correlation functions, and solving the problem by repeated FFT calculations. In addition to describing how the method is implemented, we present a novel class of structure-based pairwise intermolecular potentials. The DARS (Decoys As the Reference State) potentials are extracted from structures of protein-protein complexes and use large sets of docked conformations as decoys to derive atom pair distributions in the reference state. The current version of the DARS potential works well for enzyme-inhibitor complexes. With the new FFT-based program, DARS provides much better docking results than the earlier approaches, in many cases generating 50% more near-native docked conformations. Although the potential is far from optimal for antibody-antigen pairs, the results are still slightly better than those given by an earlier FFT method. The docking program PIPER is freely available for noncommercial applications.
机译:如果能量以相关函数的形式描述,那么快速傅立叶变换(FFT)相关方法可以实现蛋白质对蛋白质的对接,从而可以评估网格上数十亿个对接构象的能量。在此,消除了该限制,并且该方法与成对相互作用的电势有效地使用,从而大大改善了对接结果。基本思想是通过与少数几个主要特征值相对应的本征向量来近似交互矩阵,从而产生一个能量表达为几个相关函数之和,并通过重复进行FFT计算来解决该问题。除了描述如何实现该方法外,我们还提出了一类基于结构的成对分子间电势。从蛋白质-蛋白质复合物的结构中提取DARS(诱饵作为参考状态)电势,并使用大量对接构象作为诱饵,以导出参考状态下的原子对分布。当前版本的DARS潜力非常适用于酶抑制剂复合物。借助基于FFT的新程序,与以前的方法相比,DARS可以提供​​更好的对接结果,在许多情况下,其生成的本机对接构象要多50%。尽管抗体-抗原对的潜力远非最佳,但结果仍比早期FFT方法给出的结果略好。对接程序PIPER可免费用于非商业应用。

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