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Molecular Dynamics Study of the Dissociation of an Antigen-Antibody Complex in Solution

机译:抗原-抗体复合物在溶液中解离的分子动力学研究

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Preliminary results are reported of a molecular dynamics calculation of free energy variations during the dissociation of an antigen-antibody complex, hen egg-white lysozyme - Fab Dl.3, using atomic coordinates determined by the group of R. J. Poljak,and explicit handling of solvent molecules. After equilibration of the complex in solution at 300 K, a dissociation patli was generated by a 'directed dynamics' protocol. Then the thermodynamic perturbation method was used for computing the derivative of the free energy of the system with respect to dissociation coordinate, both for the undissociated complex and in two points along the path. 200-ps molecular dynamics simulations were carried out at each of these points. The results obtained are discussed, with special emphasis on the role of interstitial water in the appearance of a hydrophobic activation free energy.
机译:初步结果报告了分子动力学计算,该过程使用RJ Poljak组确定的原子坐标和抗原处理方法,对抗原-抗体复合物,蛋清溶菌酶-Fab Dl.3进行解离期间的自由能变化。分子。在300 K下使溶液中的络合物平衡后,通过“定向动力学”方案生成离解patli。然后使用热力学摄动法来计算系统的自由能相对于解离坐标的导数,无论是对于未解离的复合物,还是沿路径的两个点。在每个这些点上进行了200 ps的分子动力学模拟。讨论了获得的结果,特别强调了间隙水在疏水活化自由能的出现中的作用。

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