Department of Chemistry and Centre for Research on Biomolecular Interactions, York University, Toronto, OntarioM3J 1P3, Canada.
SCIEX, 71 Four Valley Drive, Concord, OntarioL4K 4V8, Canada.
Anal Chem. 2022 Nov 8;94(44):15415-15422. doi: 10.1021/acs.analchem.2c03313. Epub 2022 Oct 27.
Large molecules can be generically separated from small ones, though partially and temporarily, in a pressure-driven flow inside a capillary. This transient incomplete separation has been only applied to species with diffusion coefficients different by at least an order of magnitude. Here, we demonstrate, for the first time, the analytical utility of transient incomplete separation for species with close diffusion coefficients. First, we prove that even a small difference in diffusivity can lead to detectable transient incomplete separation of species. Second, we use computer simulation to prove that such a separation can be used for the reliable determination of equilibrium dissociation constant () of complexes composed of similar-sized molecules. Finally, we demonstrate experimentally the use of this separation for the accurate determination of value for a protein-aptamer complex. We conclude that "accurate constant via transient incomplete separation" (ACTIS) can serve as a reference method for affinity characterization of protein-aptamer binding in solution.
大分子可以在毛细管内的压力驱动流中从小分子中进行一般性分离,尽管是部分和暂时的。这种瞬时不完全分离仅适用于扩散系数相差至少一个数量级的物种。在这里,我们首次证明了对于扩散系数接近的物种,瞬时不完全分离的分析实用性。首先,我们证明即使扩散系数略有差异,也可以导致物种的可检测瞬时不完全分离。其次,我们使用计算机模拟证明这种分离可用于可靠确定由相似大小的分子组成的复合物的平衡离解常数 (Kd)。最后,我们实验证明了这种分离用于准确确定蛋白质-适体复合物的值。我们得出结论,“通过瞬时不完全分离的准确常数”(ACTIS)可以作为溶液中蛋白质-适体结合亲和力特征的参考方法。