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首页> 外文期刊>Protein Engineering >LONG-DISTANCE POTENTIALS - AN APPROACH TO THE MULTIPLE-MINIMA PROBLEM IN LIGAND-RECEPTOR INTERACTION
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LONG-DISTANCE POTENTIALS - AN APPROACH TO THE MULTIPLE-MINIMA PROBLEM IN LIGAND-RECEPTOR INTERACTION

机译:长距离电位-配体-受体相互作用的多重极小问题的一种方法

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The multiple-minima problem is a classical problem in molecular structure prediction. For ligand-receptor systems, a possible direction to alleviate this major obstacle is to simplify the objective function (intermolecular energy) and smooth its profile. We introduce long-distance atom-atom potentials for ligand-receptor interactions. The longer ranges result in averaging of the energy potential at a given point. Our simplified force field is based on a trivial empirical representation of interatomic interactions as a step function. We demonstrate that the intermolecular energy calculation by a systematic search with such a simplified long-distance force field delivers the global minimum (crystallographically determined position of the ligand) by radically suppressing local minima (or false-positive fits). The effectiveness of the approach is demonstrated on different molecular complexes of known structure. [References: 20]
机译:多重极小问题是分子结构预测中的经典问题。对于配体-受体系统,减轻这一主要障碍的可能方向是简化目标函数(分子间能量)并使其轮廓平滑。我们介绍了配体-受体相互作用的长距离原子原子势。较长的范围会导致给定点处的平均电势。我们简化的力场是基于原子间相互作用作为阶跃函数的简单经验表示。我们证明,通过系统搜索以这样一种简化的长距离力场进行分子间能量计算,可通过从根本上抑制局部极小值(或假阳性拟合)来提供全局最小值(晶体学确定的配体位置)。在已知结构的不同分子复合物中证明了该方法的有效性。 [参考:20]

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