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Immunologic memory to phosphocholine keyhole limpet hemocyanin. Recurrent mutations in the lambda 1 light chain
M Brown1, M Stenzel-Poore, S Stevens
1Department of Microbiology and Immunology, Oregon Health Sciences University, Portland 97201.
Insights
Somatic mutations in the lambda 1 light chain
Area of Science:
- Immunology
- Molecular Biology
Background:
- Antibodies targeting phosphocholine (PC) are crucial for memory responses.
- High-affinity anti-PC antibodies often exhibit somatic mutations in the lambda 1 light chain's CDR2 region.
Purpose of the Study:
- To investigate the impact of specific somatic mutations in the lambda 1 light chain CDR2 on antigen binding.
- To understand the role of these mutations in antibody affinity maturation and selection.
Main Methods:
- Site-specific mutagenesis was employed to alter three key CDR2 positions in the lambda 1 light chain.
- Recombinant antibodies were expressed in transfected cells for functional analysis.
- Affinity measurements and fine specificity profiling were conducted.
Main Results:
- Mutations at the three examined lambda 1 CDR2 positions significantly influenced antigen binding properties.
- Antibodies with these critical CDR2 changes demonstrated a strong selective advantage due to enhanced affinity.
- Sequence analysis supported a model of stepwise mutation acquisition and selection based on affinity.
Conclusions:
- Specific somatic mutations in lambda 1 CDR2 are critical for high-affinity antigen binding in anti-PC antibodies.
- These mutations provide a selective advantage during the immune response, even without heavy chain mutations.
- The findings elucidate the mechanism of affinity maturation driven by light chain diversification.
Abstract:
Anti-phosphocholine (PC)-keyhole limpet hemacyanin hybridomas representative of a memory response that express the lambda 1 L chain isotype have a high reactivity to PC-protein. A common feature of these hybridomas possessing high affinity for PC-protein is the occurrence of somatic mutations resulting in replacement changes in three CDR2 positions of the lambda 1 L chain. The influence of each of these three positions on the Ag binding properties of these antibodies was examined by site-specific mutagenesis and expression of recombinant antibody molecules by transfected cells. Affinity measurements and fine specificity profile determinations demonstrated the importance of the three lambda 1 CDR2 positions in Ag binding. Compared to antibodies expressing germline lambda 1, including one with an additional junctional serine that is not encoded by V or J, those antibodies possessing critical changes in CDR2 would have a strong selective advantage based on affinity differences for Ag. Sequence analysis of a group of clonally related hybridomas expressing mutated lambda 1 genes allowed construction of a hypothetical genealogic tree that suggests selection based on changes in CDR2 of lambda 1 in the absence of H chain mutations. The results are consistent with stepwise acquisition of mutations and selection based on affinity constraints.
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