| Literature DB >> 29637644 |
Danlin Yang1, John J Correia2, Walter F Stafford Iii3, Christopher J Roberts4, Sanjaya Singh5, David Hayes1, Rachel Kroe-Barrett1, Andrew Nixon1, Thomas M Laue6.
Abstract
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, ks . The effects of salt concentration and temperature on ks 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 ks to characterize weak macromolecular interactions.Entities:
Keywords: analytical ultracentrifugation; cooperativity; fluorescence detected sedimentation; human IgG; hydrodynamic nonideality; macromolecular interactions; sedimentation velocity
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Year: 2018 PMID: 29637644 PMCID: PMC6032368 DOI: 10.1002/pro.3422
Source DB: PubMed Journal: Protein Sci ISSN: 0961-8368 Impact factor: 6.725