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Selection is more intelligent than design: improving the affinity of a bivalent ligand through directed evolution

机译:选择比设计更智能:通过定向进化提高二价配体的亲和力

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摘要

Multivalent molecular interactions can be exploited to dramatically enhance the performance of an affinity reagent. The enhancement in affinity and specificity achieved with a multivalent construct depends critically on the effectiveness of the scaffold that joins the ligands, as this determines their positions and orientations with respect to the target molecule. Currently, no generalizable design rules exist for construction of an optimal multivalent ligand for targets with known structures, and the design challenge remains an insurmountable obstacle for the large number of proteins whose structures are not known. As an alternative to such design-based strategies, we report here a directed evolution-based method for generating optimal bivalent aptamers. To demonstrate this approach, we fused two thrombin aptamers with a randomized DNA sequence and used a microfluidic in vitro selection strategy to isolate scaffolds with exceptionally high affinities. Within five rounds of selection, we generated a bivalent aptamer that binds thrombin with an apparent dissociation constant (Kd) <10 pM, representing a ∼200-fold improvement in binding affinity over the monomeric aptamers and a ∼15-fold improvement over the best designed bivalent construct. The process described here can be used to produce high-affinity multivalent aptamers and could potentially be adapted to other classes of biomolecules.
机译:可以利用多价分子相互作用来显着提高亲和试剂的性能。用多价构建体实现的亲和力和特异性的提高主要取决于连接配体的支架的有效性,因为这决定了它们相对于靶分子的位置和方向。目前,尚不存在可通用的设计规则来为具有已知结构的靶标构建最佳的多价配体,而设计挑战仍然是众多结构未知的蛋白质的不可逾越的障碍。作为此类基于设计的策略的替代方法,我们在此报告一种基于定向进化的方法,用于生成最佳的二价适体。为了证明这种方法,我们将两个凝血酶适体与随机DNA序列融合在一起,并使用微流体体外选择策略来分离具有极高亲和力的支架。在五轮选择中,我们生成了一个二价适体,它与凝血酶结合,其表观解离常数(Kd)<10 pM,比单体适体的结合亲和力提高了约200倍,比最佳适体的结合亲和力提高了约15倍。设计的二价结构。此处描述的过程可用于生产高亲和力的多价适体,并可能适用于其他类型的生物分子。

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