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利用自由能模拟确定氢键和水释放对FK506与天然型及Tyr82→Phe82 FKBP-12蛋白结合的差异影响。

Determination of the differential effects of hydrogen bonding and water release on the binding of FK506 to native and Tyr82-->Phe82 FKBP-12 proteins using free energy simulations.

作者信息

Pearlman D A, Connelly P R

机构信息

Vertex Pharmaceuticals Incorporated, Cambridge, MA 02139-4211, USA.

出版信息

J Mol Biol. 1995 May 5;248(3):696-717. doi: 10.1006/jmbi.1995.0252.

DOI:10.1006/jmbi.1995.0252
PMID:7538591
Abstract

We use the thermodynamic integration technique to calculate the free energy associated with the Tyr82-->Phe82 mutation (Y82F) in the protein FKBP-12, both free and bound to known inhibitor FK506 (tacrolimis). We find that the net difference in free energy for the two changes is 0.85 kcal/mol, with the binding of FK506 relatively more favorable for the native protein than the mutant. This net energy compares very favorably with the experimentally measured value of 0.60 kcal/mol. The results indicate that the relatively better binding of FK506 to the native protein is driven by the favorable entropy associated with the release of water molecules from the protein when the ligand binds. For a variety of reasons, modest size of the system, smallness of the change being examined, rapid convergence of the ensemble that needs to be determined and use of statistical estimates to control sampling, we have been able to carry out atypically reliable and reproducible free energy calculations for this protein system. Free energy changes for the two simulations (Y82F FKBP-12/FK506 and Y82F FKBP-12) have been calculated a total of eight times each, to compare a variety of different methodological choices and to ensure that the results are statistically significant. Detailed analysis of the free energy results has been carried out, and indicates that even when applicable, deconvolution of the total free energy into components can be very difficult, that the statistical error estimates can give a reasonable bound on the error in a simulation, and that one must be careful to use the same simulation protocol in all simulations being compared.

摘要

我们使用热力学积分技术来计算与蛋白质FKBP - 12中Tyr82→Phe82突变(Y82F)相关的自由能,该蛋白质处于游离状态以及与已知抑制剂FK506(他克莫司)结合的状态。我们发现这两种变化的自由能净差值为0.85千卡/摩尔,FK506与天然蛋白质的结合相对于突变体更有利。这个净能量与实验测量值0.60千卡/摩尔相比非常吻合。结果表明,FK506与天然蛋白质相对更好的结合是由配体结合时蛋白质中水分子释放所伴随的有利熵驱动的。由于多种原因,包括系统规模适度、所研究变化较小、需要确定的系综快速收敛以及使用统计估计来控制采样,我们能够对这个蛋白质系统进行非典型可靠且可重复的自由能计算。针对两种模拟(Y82F FKBP - 12/FK506和Y82F FKBP - 12)的自由能变化分别总共计算了八次,以比较各种不同的方法选择并确保结果具有统计学意义。已对自由能结果进行了详细分析,结果表明即使在适用的情况下,将总自由能分解为各个组分也可能非常困难,统计误差估计可以给出模拟误差的合理界限,并且在比较所有模拟时必须小心使用相同的模拟协议。

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