Analysis of the targeting of the hypermutational machinery and the impact of subsequent selection on the distribution of nucleotide changes in human V rearrangements
- 28 April 1998
- journal article
- review article
- Published by Wiley in Immunological Reviews
- Vol. 162 (1) , 161-171
- https://doi.org/10.1111/j.1600-065x.1998.tb01439.x
Abstract
B cells are unique in that they generate and tolerate a high rate of mutations in their antigen receptor genes and employ these mutations as a basis of avidity maturation. The precise role of the mutational machinery versus subsequent selection in determining the frequency and distribution of mutations has not been fully analyzed. To address these issues, the influence of the intrinsic mutational machinery and subsequent selection on the frequency and distribution of mutations in the expressed human immunoglobulin repertoire was analyzed. Analysis of non-productively rearranged VH genes from individual human B cells provided an opportunity to examine the immediate impact of somatic hypermutation without superimposed selective influences. Comparison with the frequency and distribution of mutations in the productively rearranged human VH genes permitted an estimate of the influences of subsequent selection.Keywords
This publication has 57 references indexed in Scilit:
- Differences in mutational patterns between rheumatoid factors in health and disease are related to variable heavy chain family and germ‐line gene usageEuropean Journal of Immunology, 1997
- The Promotion of V Region HypermutationThe Journal of Experimental Medicine, 1997
- Introduction: What mechanism(s) drive hypermutation?Seminars in Immunology, 1996
- Somatic Hypermutation of Immunoglobulin Genes Is Linked to Transcription InitiationImmunity, 1996
- Somatic hypermutation: How many mechanisms diversify V region sequences?Cell, 1995
- Codon bias targets mutationNature, 1995
- The CDR1 sequences of a major proportion of human germline Ig VH genes are inherently susceptible to amino acid replacementImmunology Today, 1994
- Discriminating intrinsic and actigen-selected mutational hotspots in immunoglobulin V genesImmunology Today, 1993
- Canonical structures for the hypervariable regions of immunoglobulinsJournal of Molecular Biology, 1987
- Variability in the Lambda Light Chain Sequences of Mouse AntibodyNature, 1970