» Articles » PMID: 9419211

Somatic Hypermutation Introduces Insertions and Deletions into Immunoglobulin V Genes

Overview
Journal J Exp Med
Date 1998 Jan 31
PMID 9419211
Citations 105
Authors
Affiliations
Soon will be listed here.
Abstract

During a germinal center reaction, random mutations are introduced into immunoglobulin V genes to increase the affinity of antibody molecules and to further diversify the B cell repertoire. Antigen-directed selection of B cell clones that generate high affinity surface Ig results in the affinity maturation of the antibody response. The mutations of Ig genes are typically basepair substitutions, although DNA insertions and deletions have been reported to occur at a low frequency. In this study, we describe five insertion and four deletion events in otherwise somatically mutated VH gene cDNA molecules. Two of these insertions and all four deletions were obtained through the sequencing of 395 cDNA clones (approximately 110,000 nucleotides) from CD38+IgD- germinal center, and CD38-IgD- memory B cell populations from a single human tonsil. No germline genes that could have encoded these six cDNA clones were found after an extensive characterization of the genomic VH4 repertoire of the tonsil donor. These six insertions or deletions and three additional insertion events isolated from other sources occurred as triplets or multiples thereof, leaving the transcripts in frame. Additionally, 8 of 9 of these events occurred in the CDR1 or CDR2, following a pattern consistent with selection, and making it unlikely that these events were artifacts of the experimental system. The lack of similar instances in unmutated IgD+CD38- follicular mantle cDNA clones statistically associates these events to the somatic hypermutation process (P = 0.014). Close scrutiny of the 9 insertion/deletion events reported here, and of 25 additional insertions or deletions collected from the literature, suggest that secondary structural elements in the DNA sequences capable of producing loop intermediates may be a prerequisite in most instances. Furthermore, these events most frequently involve sequence motifs resembling known intrinsic hotspots of somatic hypermutation. These insertion/deletion events are consistent with models of somatic hypermutation involving an unstable polymerase enzyme complex lacking proofreading capabilities, and suggest a downregulation or alteration of DNA repair at the V locus during the hypermutation process.

Citing Articles

Molecular mechanisms of DNA lesion and repair during antibody somatic hypermutation.

Hao Q, Li J, Yeap L Sci China Life Sci. 2024; 67(11):2344-2353.

PMID: 39048716 DOI: 10.1007/s11427-024-2615-1.


Whence and wherefore IgE?.

Rahman R, Wesemann D Immunol Rev. 2024; 326(1):48-65.

PMID: 39041740 PMC: 11436312. DOI: 10.1111/imr.13373.


Identification of B cell subsets based on antigen receptor sequences using deep learning.

Lee H, Shin K, Lee Y, Lee S, Lee S, Lee E Front Immunol. 2024; 15:1342285.

PMID: 38576618 PMC: 10991714. DOI: 10.3389/fimmu.2024.1342285.


MICA-specific nanobodies for diagnosis and immunotherapy of MICA tumors.

Verhaar E, Knoflook A, Pishesha N, Liu X, van Keizerswaard W, Wucherpfennig K Front Immunol. 2024; 15:1368586.

PMID: 38550583 PMC: 10973119. DOI: 10.3389/fimmu.2024.1368586.


B-Cell Receptor Repertoire: Recent Advances in Autoimmune Diseases.

Wang Q, Feng D, Jia S, Lu Q, Zhao M Clin Rev Allergy Immunol. 2024; 66(1):76-98.

PMID: 38459209 DOI: 10.1007/s12016-024-08984-6.


References
1.
Brodeur B, Hamel J, Martin D, Rondeau P . Biological activity of a human monoclonal antibody to Bordetella pertussis lipooligosaccharide. Hum Antibodies Hybridomas. 1991; 2(4):194-9. View

2.
Rogerson B, Hackett Jr J, Peters A, Haasch D, STORB U . Mutation pattern of immunoglobulin transgenes is compatible with a model of somatic hypermutation in which targeting of the mutator is linked to the direction of DNA replication. EMBO J. 1991; 10(13):4331-41. PMC: 453186. DOI: 10.1002/j.1460-2075.1991.tb05011.x. View

3.
Liu Y, JOHNSON G, Gordon J, MacLennan I . Germinal centres in T-cell-dependent antibody responses. Immunol Today. 1992; 13(1):17-21. DOI: 10.1016/0167-5699(92)90199-H. View

4.
MacLennan I, Liu Y, JOHNSON G . Maturation and dispersal of B-cell clones during T cell-dependent antibody responses. Immunol Rev. 1992; 126:143-61. DOI: 10.1111/j.1600-065x.1992.tb00635.x. View

5.
Tomlinson I, Walter G, Marks J, Llewelyn M, Winter G . The repertoire of human germline VH sequences reveals about fifty groups of VH segments with different hypervariable loops. J Mol Biol. 1992; 227(3):776-98. DOI: 10.1016/0022-2836(92)90223-7. View