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Plug-plug kinetic capillary electrophoresis: Method for direct determination of rate constants of complex formation and dissociation

机译:插塞式动力学毛细管电泳:直接测定复合物形成和解离速率常数的方法

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We present a method for direct determination of rate constants of complex formation, k(on), and dissociation, k(off). The method is termed plug-plug kinetic capillary electrophoresis (ppKCE). To explain the concept of the method, we consider the formation of a noncovalent complex C between molecules A and B; A is assumed to migrate slower in electrophoresis than B. In ppKCE, a short plug of A is injected into a capillary, followed by a short plug of B. When a high voltage is applied, the electrophoretic zone of B moves through that of A, allowing for the formation of C. When the zones of A and B are separated, C starts dissociating. The features of the resulting electropherogram are defined by both binding and dissociation. We developed a unique mathematical approach that allows finding kon and koff from a single electropherogram without nonlinear regression analysis. The approach uses algebraic functions with the only input parameters from electropherograms being areas and migration times of electrophoretic peaks. In this work, we explain theoretical bases of ppKCE and prove the principle of the method by finding k(on) and k(off) for a protein-ligand complex. The unique capability of the method to directly determine both kon and koff along with its simplicity make ppKCE highly attractive to a broad community of molecular scientists.
机译:我们提出了一种直接确定复合物形成速率常数k(on)和解离速率常数k(off)的方法。该方法称为即插即用动力学毛细管电泳(ppKCE)。为了解释该方法的概念,我们考虑在分子A和B之间形成非共价配合物C;假设A的电泳迁移速度比B慢。在ppKCE中,将A的短插头注入毛细管,然后将B的短插头注入。当施加高电压时,B的电泳区穿过A的电泳区,允许形成C。当A和B的区域分开时,C开始解离。电泳图的特征由结合和解离共同定义。我们开发了一种独特的数学方法,可以从单个电泳图中找到kon和koff,而无需进行非线性回归分析。该方法使用代数函数,电泳图的唯一输入参数是电泳峰的面积和迁移时间。在这项工作中,我们解释了ppKCE的理论基础,并通过找到蛋白质-配体复合物的k(on)和k(off)证明了该方法的原理。该方法具有直接测定kon和koff的独特能力以及其简便性,使得ppKCE对广泛的分子科学家群体具有极大的吸引力。

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