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The Extent of Affinity Maturation Differs Between the Memory and Antibody-forming Cell Compartments in the Primary Immune Response

Overview
Journal EMBO J
Date 1997 Jun 2
PMID 9214617
Citations 174
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Abstract

Immunization with protein-containing antigens results in two types of antigen-specific B cell: antibody forming cells (AFCs) producing antibody of progressively higher affinity and memory lymphocytes capable of producing high affinity antibody upon re-exposure to antigen. The issue of the inter-relationship between affinity maturation of memory B cells and AFCs was addressed through analysis of single, antigen-specific B cells from the memory and AFC compartments during the primary response to a model antigen. Only 65% of splenic memory B cells were found capable of producing high affinity antibody, meaning that low affinity cells persist into this compartment. In contrast, by 28 days after immunization all AFCs produced high affinity antibody. We identified a unique, persistent sub-population of bone marrow AFCs containing few somatic mutations, suggesting they arose early in the response, yet highly enriched for an identical affinity-enhancing amino acid exchange, suggesting strong selection. Our results imply that affinity maturation of a primary immune response occurs by the early selective differentiation of high affinity variants into AFCs which subsequently persist in the bone marrow. In contrast, the memory B-cell population contains few, if any, cells from the early response and is less stringently selected.

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References
1.
Steiner L, Eisen H . The relative affinity of antibodies synthesized in the secondary response. J Exp Med. 1967; 126(6):1185-205. PMC: 2138418. DOI: 10.1084/jem.126.6.1185. View

2.
Jacob J, Kassir R, Kelsoe G . In situ studies of the primary immune response to (4-hydroxy-3-nitrophenyl)acetyl. I. The architecture and dynamics of responding cell populations. J Exp Med. 1991; 173(5):1165-75. PMC: 2118845. DOI: 10.1084/jem.173.5.1165. View

3.
Goidl E, Paul W, Siskind G, Benacerraf B . The effect of antigen dose and time after immunization on the amount and affinity of anti-hapten antibody. J Immunol. 1968; 100(2):371-5. View

4.
Celada F, Schmidt D, Strom R . Determination of avidity of anti-albumin antibodies in the mouse. Influence of the number of cells transferred on the quality of the secondary adoptive response. Immunology. 1969; 17(2):189-98. PMC: 1455973. View

5.
Siskind G, Benacerraf B . Cell selection by antigen in the immune response. Adv Immunol. 1969; 10:1-50. DOI: 10.1016/s0065-2776(08)60414-9. View