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A Quantitative Study of the Effects of Guest Flexibility on Binding Inside a Coordination Cage Host.

机译:客座柔性对协调笼主机内部绑定影响的定量研究。

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摘要

We have performed a systematic investigation of the effects of guest flexibility on their ability to bind in the cavity of a coordination cage host in water, using two sets of isomeric aliphatic ketones that differ only in the branching patterns of their alkyl chains. Apart from the expected increase in binding strength for C9 over C7 ketones associated with their greater hydrophobic surface area, within each isomeric set there is a clear inverse correlation between binding free energy and guest flexibility, associated with loss of conformational entropy. This can be parameterized by the number of rotatable C-C bonds in the guest, with each additional rotatable bond resulting in a penalty of around 2 kJ mol(-1) in the binding free energy, in good agreement with values obtained from protein/ligand binding studies. We used the binding data for the new flexible guests to improve the scoring function that we had previously developed that allowed us to predict binding constants of relatively rigid guests in the cage cavity using the molecular docking programme GOLD (Genetic Optimisation of Ligand Docking). This improved scoring function resulted in a significant improvement in the ability of GOLD to predict binding constants for flexible guests, without any detriment to its ability to predict binding for more rigid guests.
机译:我们使用两组仅在其烷基链分支方式上不同的异构脂肪族酮,对来宾柔性对其在水中配位笼中的结合能力的影响进行了系统的研究。除了与C7酮更大的疏水表面积相关的C9结合强度的预期增加外,在每个异构体中,结合自由能和客体柔性之间存在明显的负相关,与构象熵的损失有关。这可以通过客体中可旋转CC键的数量来参数化,每个额外的可旋转键导致结合自由能的损失约为2kk mol(-1),与从蛋白质/配体结合获得的值非常吻合学习。我们使用了新的柔性客体的结合数据来改善我们先前开发的评分功能,该功能使我们能够使用分子对接程序GOLD(配体对接的遗传优化)来预测笼腔中相对刚性的客体的结合常数。这种改进的计分功能导致GOLD预测柔性客体的结合常数的能力得到了显着提高,而丝毫不影响其预测更刚性客体的结合能力。

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