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Updated: Aug 11, 2025

Detection of True IgE-expressing Mouse B Lineage Cells
Published on: December 1, 2014
IgE, IgE Receptors and Anti-IgE Biologics: Protein Structures and Mechanisms of Action
J M McDonnell1, B Dhaliwal2, B J Sutton1
1Randall Centre for Cell and Molecular Biophysics and School of Basic and Medical Biosciences, King's College London, London, UK; email: james.mcdonnell@kcl.ac.uk, brian.sutton@kcl.ac.uk, hannah.gould@kcl.ac.uk.
Abstract:
The evolution of IgE in mammals added an extra layer of immune protection at body surfaces to provide a rapid and local response against antigens from the environment. The IgE immune response employs potent expulsive and inflammatory forces against local antigen provocation, at the risk of damaging host tissues and causing allergic disease. Two well-known IgE receptors, the high-affinity FcεRI and low-affinity CD23, mediate the activities of IgE. Unlike other known antibody receptors, CD23 also regulates IgE expression, maintaining IgE homeostasis. This mechanism evolved by adapting the function of the complement receptor CD21. Recent insights into the dynamic character of IgE structure, its resultant capacity for allosteric modulation, and the potential for ligand-induced dissociation have revealed previously unappreciated mechanisms for regulation of IgE and IgE complexes. We describe recent research, highlighting structural studies of the IgE network of proteins to analyze the uniquely versatile activities of IgE and anti-IgE biologics.
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