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首页> 外文期刊>ACS Omega >Influence of Binding Site Affinity Patterns on Binding of Multivalent Polymers
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Influence of Binding Site Affinity Patterns on Binding of Multivalent Polymers

机译:结合位点亲和力模式对多价聚合物结合的影响

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Using inspiration from biology, we can leverage multivalent binding interactions to enhance weak, monovalent binding between molecules. While most previous studies have focused on multivalent binders with uniform binding sites, new synthetic polymers might find it desirable to have multiple binding moieties along the chain. Here, we probe how patterning of heterogeneous binding sites along a polymer chain controls the binding affinity of a polymer using a reactive Brownian dynamics scheme. Unlike monovalent binders that are pattern-agnostic, we find that divalent binding is dependent on both the polymer pattern and binding target concentration. For dilute targets, blocky polymers provide high local concentrations of high-affinity sites, but at high target concentrations, competition for binding sites makes alternating polymers the strongest binders. Subsequently, we show that random copolymers are robust to target concentration fluctuations. These results will assist in the rational design of multivalent polymer therapeutics and materials.
机译:使用生物学的灵感,我们可以利用多价结合相互作用来增强分子之间的弱,单价结合。虽然最先前的研究专注于具有均匀结合位点的多价粘合剂,但是新的合成聚合物可能觉得希望沿着链具有多个结合部分。在此,我们探讨沿聚合物链的异质结合位点的图案化如何使用反应性褐色动力学方案对聚合物的结合亲和力进行控制。与具有模式无关的单价粘合剂不同,我们发现二价结合依赖于聚合物图案和结合靶浓度。对于稀释靶标,嵌段聚合物提供高局部浓度的高亲和力部位,但在高目标浓度下,结合位点的竞争使交替聚合物最强的粘合剂。随后,我们表明随机共聚物对靶浓度波动具有鲁棒性。这些结果将有助于多价聚合物治疗剂和材料的合理设计。

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