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Conformational energy range of ligands in protein crystal structures: the difficult quest for accurate understanding

机译:蛋白质晶体结构中配体的构象能范围:寻求准确理解的困难

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摘要

In this review we address a fundamental question: what is the range of conformational energies seen in ligands in protein-ligand crystal structures? This value is important biophysically, for better understanding the protein-ligand binding process; and practically, for providing a parameter to be used in many computational drug design methods such as docking and pharmacophore searches. We synthesize a selection of previously reported conflicting results from computational studies of this issue, and conclude that high ligand conformational energies really are present in some crystal structures. The main source of disagreement between different analyses appears to be due to divergent treatments of electrostatics and solvation. At the same time, however, for many ligands a high conformational energy is in error, due to either crystal structure inaccuracies or incorrect determination of the reference state. Aside from simple chemistry mistakes, we argue that crystal structure error may mainly be due to the heuristic weighting of ligand stereochemical restraints relative to the fit of the structure to the electron density. This problem cannot be fixed with improvements to electron density fitting or with simple ligand geometry checks, though better metrics are needed for evaluating ligand and binding site chemistry in addition to geometry during structure refinement. The ultimate solution for accurately determining ligand conformational energies lies in ultra-high resolution crystal structures that can be refined without restraints.
机译:在这篇综述中,我们解决了一个基本问题:在蛋白质-配体晶体结构的配体中看到的构象能范围是多少?该值在生物学上很重要,对于更好地理解蛋白质-配体结合过程;并且实际上是为了提供在许多计算药物设计方法(例如对接和药效团搜索)中使用的参数。我们综合了该问题的计算研究,从中选择了先前报道的相互矛盾的结果,并得出结论,某些晶体结构中确实存在高配体构象能。不同分析之间意见分歧的主要根源似乎是由于对静电和溶剂化的不同处理。但是,与此同时,由于晶体结构的不正确或参考状态的错误确定,许多配体的高构象能是错误的。除了简单的化学错误外,我们认为晶体结构错误可能主要是由于配体立体化学约束相对于结构对电子密度的拟合的启发式加权。尽管需要在结构优化过程中除了几何形状以外评估配体和结合位点化学性质,但仍需要更好的度量标准,但无法通过改进电子密度拟合或简单的配体几何检查来解决此问题。准确确定配体构象能量的最终解决方案在于可以不受限制地精制的超高分辨率晶体结构。

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