Intricate targeting of immunoglobulin somatic hypermutation maximizes the efficiency of affinity maturation
Open Access
- 2 May 2005
- journal article
- research article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 201 (9) , 1467-1478
- https://doi.org/10.1084/jem.20042483
Abstract
It is believed that immunoglobulin-variable region gene (IgV) somatic hypermutation (SHM) is initiated by activation-induced cytidine deaminase (AID) upon deamination of cytidine to deoxyuracil. Patch-excision repair of these lesions involving error prone DNA polymerases such as polη causes mutations at all base positions. If not repaired, the deaminated nucleotides on the coding and noncoding strands result in C-to-T and G-to-A exchanges, respectively. Herein it is reported that IgV gene evolution has been considerably influenced by the need to accommodate extensive C deaminations and the resulting accumulation of C-to-T and G-to-A exchanges. Although seemingly counterintuitive, the precise placement of C and G nucleotides causes most C-to-T and G-to-A mutations to be silent or conservative. We hypothesize that without intricate positioning of C and G nucleotides the efficiency of affinity maturation would be significantly reduced due to a dominance of replacements caused by C and G transition mutations. The complexity of these evolved biases in codon use are compounded by the precise concomitant hotspot/coldspot targeting of AID activity and Polη errors to maximize SHM in the CDRs and minimize mutations in the FWRs.Keywords
This publication has 49 references indexed in Scilit:
- DNA Substrate Length and Surrounding Sequence Affect the Activation-induced Deaminase Activity at CytidineJournal of Biological Chemistry, 2004
- Functions of human DNA polymerases η, κ and ι suggested by their properties, including fidelity with undamaged DNA templatesDNA Repair, 2003
- The Cleavage Efficiency of the Human Immunoglobulin Heavy Chain VH Elements by the RAG ComplexJournal of Biological Chemistry, 2002
- Receptor Revision of Immunoglobulin Heavy Chain Variable Region Genes in Normal Human B LymphocytesThe Journal of Experimental Medicine, 2000
- Genetic Plasticity ofVGenes Under Somatic Hypermutation: Statistical Analyses Using a New Resampling-Based MethodologyGenome Research, 1999
- Gapped BLAST and PSI-BLAST: a new generation of protein database search programsNucleic Acids Research, 1997
- Somatic Hypermutation of Immunoglobulin Genes Is Linked to Transcription InitiationImmunity, 1996
- Codon bias targets mutationNature, 1995
- Evolutionary and Somatic Selection of the Antibody Repertoire in the MouseScience, 1987
- Somatic mutation and the maturation of immune response to 2-phenyl oxazoloneNature, 1984