Biotherapeutics Discovery Research, Boehringer Ingelheim Pharmaceuticals, Inc., Ridgefield, Connecticut, 06877.
Department of Biochemistry, University of Mississippi Medical Center, Jackson, Mississippi, 39216.
Protein Sci. 2018 Jul;27(7):1334-1348. doi: 10.1002/pro.3422.
Weak protein-protein interactions may be important to binding cooperativity. A panel of seven fluorescently labeled tracer monoclonal IgG antibodies, differing in variable (V) and constant (C) region sequences, were sedimented in increasing concentrations of unlabeled IgGs of identical, similar, and different backgrounds. Weak IgG::IgG attractive interactions were detected and characterized by global analysis of the hydrodynamic nonideality coefficient, k . The effects of salt concentration and temperature on k suggest the interactions are predominantly enthalpic in origin. The interactions were found to be variable in strength, affected by both the variable and constant regions, but indiscriminate with respect to IgG subclass. Furthermore, weak attractive interactions were observed for all the mAbs with freshly purified human poly-IgG. The universality of the weak interactions suggest that they may contribute to effector function cooperativity in the normal immune response, and we postulate that the generality of the interactions allows for a broader range of epitope spacing for complement activation. These studies demonstrate the utility of analytical ultracentrifuge fluorescence detection in measuring weak protein-protein interactions. It also shows the strength of global analysis of sedimentation velocity data by SEDANAL to extract hydrodynamic nonideality k to characterize weak macromolecular interactions.
弱蛋白-蛋白相互作用可能对结合协同性很重要。一组七种荧光标记示踪单克隆 IgG 抗体,在可变 (V) 和恒定 (C) 区序列上有所不同,在相同、相似和不同背景的未标记 IgG 的递增浓度下进行沉淀。通过对流体动力学非理想系数 k 的全局分析,检测并描述了弱 IgG::IgG 吸引力相互作用。盐浓度和温度对 k 的影响表明相互作用主要是焓的起源。发现相互作用的强度不同,受可变区和恒定区的影响,但对 IgG 亚类没有选择性。此外,对于所有与新鲜纯化的人多 IgG 结合的 mAb,都观察到弱的吸引力相互作用。弱相互作用的普遍性表明它们可能有助于正常免疫反应中的效应功能协同作用,我们推测相互作用的普遍性允许补体激活的表位间距更广泛。这些研究证明了分析超速离心荧光检测在测量弱蛋白-蛋白相互作用中的实用性。它还展示了 SEDANAL 对沉降速度数据的全局分析的强大功能,以提取流体动力学非理想性 k 来描述弱大分子相互作用。