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Chelating effect in short polymers for the design of bidentate binders of increased affinity and selectivity

机译:短聚合物中的螯合作用,用于设计具有更高亲和力和选择性的双齿粘合剂

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摘要

The design of new strong and selective binders is a key step towards the development of new sensing devices and effective drugs. Both affinity and selectivity can be increased through chelation and here we theoretically explore the possibility of coupling two binders through a flexible linker. We prove the enhanced ability of double binders of keeping their target with a simple model where a polymer composed by hard spheres interacts with a spherical macromolecule, such as a protein, through two sticky spots. By Monte Carlo simulations and thermodynamic integration we show the chelating effect to hold for coupling polymers whose radius of gyration is comparable to size of the chelated particle. We show the binding free energy of flexible double binders to be higher than that of two single binders and to be maximized when the binding sites are at distances comparable to the mean free polymer end-to-end distance. The affinity of two coupled binders is therefore predicted to increase non linearly and in turn, by targeting two non-equivalent binding sites, this will lead to higher selectivity.
机译:新的强力和选择性结合剂的设计是开发新的传感设备和有效药物的关键一步。亲和性和选择性都可以通过螯合来提高,在这里我们从理论上探讨了通过挠性接头偶联两种粘合剂的可能性。我们用一个简单的模型证明了双结合剂保持目标的能力增强,该模型由硬球组成的聚合物通过两个粘性点与球形大分子(例如蛋白质)相互作用。通过蒙特卡洛模拟和热力学积分,我们证明了螯合作用可以保持偶联聚合物的回转半径与螯合颗粒的大小相当。我们显示了柔性双粘合剂的结合自由能高于两个单一粘合剂的结合自由能,并且当结合位点的距离可与自由聚合物的平均端对端距离相媲美时,其最大化。因此,预测两种偶联的结合剂的亲和力呈非线性增加,进而通过靶向两个非等价的结合位点,这将导致更高的选择性。

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