MyJournals Home  

RSS FeedsDistinct Fc{alpha} receptor N-glycans modulate the binding affinity to immunoglobulin A (IgA) antibodies [Immunology] (Journal of Biological Chemistry)

 
 

21 september 2019 04:03:41

 
Distinct Fc{alpha} receptor N-glycans modulate the binding affinity to immunoglobulin A (IgA) antibodies [Immunology] (Journal of Biological Chemistry)
 


Human immunoglobulin A (IgA) is the most prevalent antibody class at mucosal sites with an important role in mucosal defense. Little is known about the impact of N-glycan modifications of IgA1 and IgA2 on binding to the Fc? receptor (Fc?RI), which is also heavily glycosylated at its extracellular domain. Here, we transiently expressed human epidermal growth factor receptor 2 (HER2)-binding monomeric IgA1, IgA2m(1), and IgA2m(2) variants in Nicotiana benthamiana ?XT/FT plants lacking the enzymes responsible for generating nonhuman N-glycan structures. By coinfiltrating IgA with the respective glycan-modifying enzymes, we generated IgA carrying distinct homogenous N-glycans. We demonstrate that distinctly different N-glycan profiles did not influence antigen binding or the overall structure and integrity of the IgA antibodies but did affect their thermal stability. Using size-exclusion chromatography, differential scanning and isothermal titration calorimetry, surface plasmon resonance spectroscopy, and molecular modeling, we probed distinct IgA1 and IgA2 glycoforms for binding to four different Fc?RI glycoforms and investigated the thermodynamics and kinetics of complex formation. Our results suggest that different N-glycans on the receptor significantly contribute to binding affinities for its cognate ligand. We also noted that full-length IgA and Fc?RI form a mixture of 1:1 and 1:2 complexes tending toward a 1:1 stoichiometry due to different IgA tailpiece conformations that make it less likely that both binding sites are simultaneously occupied. In conclusion, N-glycans of human IgA do not affect its structure and integrity but its thermal stability, and Fc?RI N-glycans significantly modulate binding affinity to IgA.


 
179 viewsCategory: Biochemistry
 
ErbB3-binding protein 1 (EBP1) represses HNF4{alpha}-mediated transcription and insulin secretion in pancreatic {beta}-cells [Metabolism] (Journal of Biological Chemistry)
Regulation of PLPP3 gene expression by NF-{kappa}B family transcription factors [Signal Transduction] (Journal of Biological Chemistry)
 
 
blog comments powered by Disqus


MyJournals.org
The latest issues of all your favorite science journals on one page

Username:
Password:

Register | Retrieve

Search:

Biochemistry


Copyright © 2008 - 2024 Indigonet Services B.V.. Contact: Tim Hulsen. Read here our privacy notice.
Other websites of Indigonet Services B.V.: Nieuws Vacatures News Tweets Nachrichten