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Entropy Calculation of HIV-1 Env gp120 its Receptor CD4 and their Complex: An Analysis of Configurational Entropy Changes upon Complexation

机译:HIV-1 Env gp120其受体CD4及其复合物的熵计算:复合时构型熵变化的分析

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摘要

The HIV-1 gp120/CD4 interaction shows a large, unprecedented entropy/enthalpy compensation, with the capacity to fine-tune recognition over a broad range of affinity. The intermolecular interaction involves stable hydrophobic contacts with a unique protruding CD4-Phe43 structure surrounded by an intermolecular hydrogen-bond network that covers the hemisphere of the CD4 D1 domain. We have applied a heuristic formula based on the covariance matrix of atom-positional fluctuations to assess the configurational entropy of the gp120/CD4 complex at different levels. The system was dissected into various subsets of atoms to evaluate the entropic contributions of different functional elements. By combining the trajectories of the free and complex forms, further insight into the conformational sampling was extracted. Despite the limited sampling time of 10 ns, the theoretically derived changes in configurational entropy are in fair agreement with the experimentally determined data. The simultaneous evaluation of different interaction modes through a decomposition approach is only feasible with the knowledge of the atomic trajectory of the system. The configurational entropy analysis in terms of combined trajectories presented here shall potentially provide accurate estimations of thermodynamic properties of biomolecules given sufficient sampling of conformational space.
机译:HIV-1 gp120 / CD4相互作用显示出巨大的,前所未有的熵/焓补偿,并具有在广泛的亲和力范围内微调识别的能力。分子间相互作用涉及稳定的疏水接触,该疏水接触具有独特的突出的CD4-Phe 43 结构,该结构被覆盖CD4 D1域半球的分子间氢键网络包围。我们已经应用了基于原子-位置波动的协方差矩阵的启发式公式,以评估gp120 / CD4复合物在不同水平上的构型熵。该系统被分解为原子的各个子集,以评估不同功能元素的熵贡献。通过组合自由形式和复杂形式的轨迹,可以进一步提取构象采样。尽管有10 ns的有限采样时间,但配置熵的理论推导变化与实验确定的数据完全吻合。通过分解方法同时评估不同的交互模式只有在了解系统原子轨迹的情况下才可行。考虑到构象空间的足够采样,此处给出的组合轨迹方面的构型熵分析可能潜在地提供生物分子热力学性质的准确估计。

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