The Biology of IgE: The Generation of High-Affinity IgE Antibodies
Maria A. Curotto de Lafaille, Juan J. Lafaille
Abstract
Maria A. Curotto de Lafaille, Juan J. Lafaille
Abstract
B cells can undergo affinity maturation through the process of somatic hypermutation (SHM) followed by selection for high-affinity variants. Affinity maturation occurs in germinal centers (GC) and requires T–B cell cooperation. Extra GC B-cell responses are associated with the production of low-affinity antibodies. B cells producing high-affinity IgE during T-dependent responses are not directly selected in GC but are produced by the sequential switching of GC-selected high-affinity IgG-producing B cells. In contrast, natural low-affinity IgE can be generated without cognate T–B cell interactions in lymphopenic conditions. Low- and high-affinity IgE may differentially affect mast cell survival and degranulation and thus determine whether mast cells contribute to a beneficial or pathogenic environment. These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
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B cells can undergo affinity maturation through the process of somatic hypermutation (SHM) followed by selection for high-affinity variants. Affinity maturation occurs in germinal centers (GC) and requires T–B cell cooperation. Extra GC B-cell responses are associated with the production of low-affinity antibodies. B cells producing high-affinity IgE during T-dependent responses are not directly selected in GC but are produced by the sequential switching of GC-selected high-affinity IgG-producing B cells. In contrast, natural low-affinity IgE can be generated without cognate T–B cell interactions in lymphopenic conditions. Low- and high-affinity IgE may differentially affect mast cell survival and degranulation and thus determine whether mast cells contribute to a beneficial or pathogenic environment. These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
Key concepts: Affinity maturation, Somatic hypermutation, Germinal center, Immunoglobulin E, Degranulation, Antibody, B cell, Immunoglobulin class switching