首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >A preference-based free-energy parameterization of enzyme-inhibitor binding. Applications to HIV-1-protease inhibitor design.
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A preference-based free-energy parameterization of enzyme-inhibitor binding. Applications to HIV-1-protease inhibitor design.

机译:基于偏好的酶抑制剂结合的自由能参数化。在HIV-1-蛋白酶抑制剂设计中的应用。

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摘要

The interface between protein receptor-ligand complexes has been studied with respect to their binary interatomic interactions. Crystal structure data have been used to catalogue surfaces buried by atoms from each member of a bound complex and determine a statistical preference for pairs of amino-acid atoms. A simple free energy model of the receptor-ligand system is constructed from these atom-atom preferences and used to assess the energetic importance of interfacial interactions. The free energy approximation of binding strength in this model has a reliability of about +/- 1.5 kcal/mol, despite limited knowledge of the unbound states. The main utility of such a scheme lies in the identification of important stabilizing atomic interactions across the receptor-ligand interface. Thus, apart from an overall hydrophobic attraction (Young L, Jernigan RL, Covell DG, 1994, Protein Sci 3:717-729), a rich variety of specific interactions is observed. An analysis of 10 HIV-1 protease inhibitor complexes is presented that reveals a common binding motif comprised of energetically important contacts with a rather limited set of atoms. Design improvements to existing HIV-1 protease inhibitors are explored based on a detailed analysis of this binding motif.
机译:关于它们的二元原子间相互作用,已经研究了蛋白质受体-配体复合物之间的界面。晶体结构数据已被用于分类被结合的复合物的每个成员的原子所掩埋的表面,并确定对氨基酸原子对的统计偏好。从这些原子-原子偏好中构建了一个简单的受体-配体系统自由能模型,并用于评估界面相互作用的能量重要性。尽管对未结合态的了解有限,但该模型中结合强度的自由能近似值具有约+/- 1.5 kcal / mol的可靠性。这种方案的主要用途在于鉴定跨受体-配体界面的重要稳定原子相互作用。因此,除了总的疏水吸引力(Young L,Jernigan RL,Covell DG,1994,Protein Sci 3:717-729)之外,还观察到了各种各样的特异性相互作用。提出了对10种HIV-1蛋白酶抑制剂复合物的分析,揭示了一种常见的结合基序,该基序包含与相当有限的一组原子在能量上重要的接触。基于对该结合基序的详细分析,探索了对现有HIV-1蛋白酶抑制剂的设计改进。

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