Moiseenko Valeria L, Antipova Olga M, Rybina Aleksandra A, Mukhametova Liliya I, Eremin Sergei A, Pavlova Galina V, Kopylov Alexey M
Faculty of Chemistry, Lomonosov Moscow State University, Moscow, 119991, Russia.
Burdenko National Medical Research Institute for Neurosurgery, Moscow, 125047, Russia.
Biochemistry (Mosc). 2024 Dec;89(12):2183-2193. doi: 10.1134/S0006297924120071.
The current work presents comparative assessment of affinity of the designed DNA aptamers for extracellular domain of the human epidermal growth factor receptor (EGFR*). The affinity data of the 20 previously published aptamers are summarized. Diversity of the aptamer selection methods and techniques requires unification of the comparison algorithms, which is also necessary for designing aptamers used in the post-selection fitting to the target EGFR* protein. In this study affinities of the DNA aptamers from two families, U31 and U2, previously obtained by Wu et al. from the same selection [Wu et al. (2014) , , e90752] and their derivatives - GR20, U2s, and Gol1 obtained by us through rational design, were compared. Affinity of the aptamers to EGFR* was measured by two different methods: a solution-phase technique - fluorescence polarization of FAM-labeled aptamers, and by a kinetic method using biolayer interferometry technique with aptamers immobilized on the surface. Unlike the values of equilibrium dissociation constants obtained through titration and expressed in units of protein concentration, analysis of the titration curve profiles themselves and kinetics of interaction proved to be more informative. This allowed us to identify how even subtle changes in the aptamers and their structures affect affinity. Hypotheses regarding the "structure-function" relationships and recognition mechanisms were formulated. The data obtained for the set of aptamer constructs are critical for moving forward to examination of aptamer interactions with EGFR on the cell surface.
当前的工作展示了对所设计的DNA适配体与人表皮生长因子受体(EGFR*)胞外结构域亲和力的比较评估。总结了20种先前发表的适配体的亲和力数据。适配体选择方法和技术的多样性要求统一比较算法,这对于设计在筛选后适配目标EGFR蛋白的适配体也是必要的。在本研究中,比较了Wu等人先前从同一筛选中获得的两个家族(U31和U2)的DNA适配体及其衍生物——我们通过合理设计获得的GR20、U2s和Gol1对EGFR的亲和力。通过两种不同方法测量适配体对EGFR*的亲和力:一种溶液相技术——FAM标记的适配体的荧光偏振,以及一种使用生物层干涉术技术的动力学方法,其中适配体固定在表面。与通过滴定获得并以蛋白质浓度单位表示的平衡解离常数的值不同,滴定曲线轮廓本身的分析和相互作用动力学被证明更具信息性。这使我们能够确定即使适配体及其结构的细微变化如何影响亲和力。提出了关于“结构-功能”关系和识别机制的假设。所获得的一组适配体构建体的数据对于推进对适配体与细胞表面EGFR相互作用的研究至关重要。