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PMID: 2574159 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Mouse Vk gene classification by nucleic acid sequence similarity.

Immunogenetics ·Vol. 30 ·No. 6 ·1989-00-00 ·Pages 475-93

Strohal R, Helmberg A, Kroemer G, Kofler R

Abstract

Analyses of immunoglobulin (Ig) variable (V) region gene usage in the immune response, estimates of V gene germline complexity, and other nucleic acid hybridization-based studies depend on the extent to which such genes are related (i.e., sequence similarity) and their organization in gene families. While mouse Igh heavy chain V region (VH) gene families are relatively well-established, a corresponding systematic classification of Igk light chain V region (Vk) genes has not been reported. The present analysis, in the course of which we reviewed the known extent of the Vk germline gene repertoire and Vk gene usage in a variety of responses to foreign and self antigens, provides a classification of mouse Vk genes in gene families composed of members with greater than 80% overall nucleic acid sequence similarity. This classification differed in several aspects from that of VH genes: only some Vk gene families were as clearly separated (by greater than 25% sequence dissimilarity) as typical VH gene families; most Vk gene families were closely related and, in several instances, members from different families were very similar (greater than 80%) over large sequence portions; frequently, classification by nucleic acid sequence similarity diverged from existing classifications based on amino-terminal protein sequence similarity. Our data have implications for Vk gene analyses by nucleic acid hybridization and describe potentially important differences in sequence organization between VH and Vk genes.

MeSH Terms
Animals Base Sequence Genes, Immunoglobulin Mice Molecular Sequence Data Nucleic Acid Hybridization Polymorphism, Restriction Fragment Length
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Strohal R
Institute for General and Experimental Pathology, University of Innsbruck Medical School, Austria.
Helmberg A
Kroemer G
Kofler R
References (85)
85 references, click to expand
  1. Developmentally controlled expression of immunoglobulin VH genes.
    Science. 1985 Mar 29;227(4694):1597-601 PMID: 3975629
  2. Structure of the 5' ends of immunoglobulin genes: a novel conserved sequence.
    Proc Natl Acad Sci U S A. 1984 May;81(9):2650-4 PMID: 6425835
  3. Functional and non-functional joining in immunoglobulin light chain genes of a mouse myeloma.
    Nature. 1980 Oct 16;287(5783):603-7 PMID: 6776411
  4. Complete variable region sequence of a nonfunctionally rearranged kappa light chain transcribed in the nonsecretor P3-X63-Ag8.653 myeloma cell line.
    Nucleic Acids Res. 1987 Mar 25;15(6):2771 PMID: 3104882
  5. Somatic mutation of immunoglobulin light-chain variable-region genes.
    Cell. 1981 Jul;25(1):47-58 PMID: 6791832
  6. Classification of mouse VK groups based on the partial amino acid sequence to the first invariant tryptophan: impact of 14 new sequences from IgG myeloma proteins.
    Mol Immunol. 1982 Dec;19(12):1619-30 PMID: 7162519
  7. Somatically mutated forms of a major anti-p-azophenylarsonate antibody variable region with drastically reduced affinity for p-azophenylarsonate. By-products of an antigen-driven immune response?
    J Exp Med. 1987 Nov 1;166(5):1456-63 PMID: 3681190
  8. Structure and function of anti-DNA autoantibodies derived from a single autoimmune mouse.
    Proc Natl Acad Sci U S A. 1987 Dec;84(24):9150-4 PMID: 3480535
  9. The immunoglobulin heavy chain variable region (Igh-V) locus in the mouse. I. One hundred Igh-V genes comprise seven families of homologous genes.
    Eur J Immunol. 1984 Oct;14(10):922-30 PMID: 6092095
  10. A new mouse myeloma cell line that has lost immunoglobulin expression but permits the construction of antibody-secreting hybrid cell lines.
    J Immunol. 1979 Oct;123(4):1548-50 PMID: 113458
  11. Functional analogues of the VKOx1 gene in different strains of mice: evolutionary conservation but diversity based on V-J joining.
    J Immunol. 1987 Mar 1;138(5):1613-7 PMID: 3100644
  12. Two V kappa germ-line genes related to the GAT idiotypic network (Ab1 and Ab3/Ab1') account for the major subfamilies of the mouse V kappa-1 variability subgroup.
    J Immunol. 1987 Feb 1;138(3):932-9 PMID: 3100621
  13. Nonproductive kappa immunoglobulin genes: recombinational abnormalities and other lesions affecting transcription, RNA processing, turnover, and translation.
    Mol Cell Biol. 1985 Jul;5(7):1660-75 PMID: 3927151
  14. Light chain germ-line genes and the immune response to 2-phenyloxazolone.
    EMBO J. 1985 Dec 16;4(13A):3439-45 PMID: 3937727
  15. Nucleic acid and protein sequences of phosphocholine-binding light chains.
    J Exp Med. 1981 May 1;153(5):1366-70 PMID: 6788890
  16. mRNA sequences define an unusually restricted IgG response to 2-phenyloxazolone and its early diversification.
    Nature. 1983 Jul 28-Aug 3;304(5924):320-4 PMID: 6877353
  17. V kappa and J kappa gene segments of A/J Ars-A antibodies: somatic recombination generates the essential arginine at the junction of the variable and joining regions.
    Proc Natl Acad Sci U S A. 1987 Feb;84(4):1085-9 PMID: 3103124
  18. Preferential expression of VK21E light chains on IdX Ia.7 positive monoclonal anti-I-E antibodies.
    J Immunol. 1985 Jun;134(6):4024-30 PMID: 3921617
  19. The genetic origin of autoantibodies.
    Immunol Today. 1987;8(12):374-80 PMID: 25291272
  20. Interstrain conservation of the murine GAT-specific antibody V kappa repertoire as analyzed at the germline gene level.
    EMBO J. 1983;2(10):1771-6 PMID: 6139278
  21. Cloning and nucleotide sequence of heavy- and light-chain cDNAs from a creatine-kinase-specific monoclonal antibody.
    Gene. 1987;51(1):13-9 PMID: 3110009
  22. The Ig germline gene repertoire: economy or wastage?
    Immunol Today. 1988 Jan;9(1):10-4 PMID: 3256310
  23. Structural and evolutionary comparisons of four alleles of the mouse immunoglobulin kappa chain gene, Igk-VSer.
    Immunogenetics. 1989;29(4):249-57 PMID: 2495249
  24. Mutation drift and repertoire shift in the maturation of the immune response.
    Immunol Rev. 1987 Apr;96:23-41 PMID: 3298007
  25. Inter- and intraclonal diversity in the antibody response to influenza hemagglutinin.
    J Exp Med. 1985 Apr 1;161(4):687-704 PMID: 3920342
  26. The D segment defines the T15 idiotype: the immunoresponse of A/J mice to Pneumococcus pneumoniae.
    Eur J Immunol. 1984 Nov;14(11):1043-8 PMID: 6499907
  27. Single germline VH and V kappa genes encode predominating antibody variable regions elicited in strain A mice by immunization with p-azophenylarsonate.
    J Exp Med. 1987 Jul 1;166(1):1-11 PMID: 3036994
  28. Identity of the V kappa 10-Ars-A gene segments of the A/J and BALB/c strains.
    Proc Natl Acad Sci U S A. 1987 Sep;84(17):6244-8 PMID: 3114744
  29. Variation in the crossover point of kappa immunoglobulin gene V-J recombination: evidence from a cryptic gene.
    Cell. 1980 Oct;21(3):793-9 PMID: 6777049
  30. Molecular analysis of the murine lupus-associated anti-self response: involvement of a large number of heavy and light chain variable region genes.
    Eur J Immunol. 1987 Jan;17(1):91-5 PMID: 3102255
  31. A kappa-immunoglobulin gene is formed by site-specific recombination without further somatic mutation.
    Nature. 1979 Aug 2;280(5721):370-5 PMID: 111146
  32. Sets of immunoglobulin V kappa genes homologous to ten cloned V kappa sequences: implications for the number of germline V kappa genes.
    J Mol Appl Genet. 1981;1(2):103-16 PMID: 6286818
  33. V region sequences of anti-DNA and anti-RNA autoantibodies from NZB/NZW F1 mice.
    J Immunol. 1988 Sep 1;141(5):1745-53 PMID: 2457627
  34. Cloning and high level expression of a chimeric antibody with specificity for human carcinoembryonic antigen.
    J Immunol. 1988 Dec 1;141(11):4053-60 PMID: 3141512
  35. Members of novel VH gene families are found in VDJ regions of polyclonally activated B-lymphocytes.
    EMBO J. 1985 Nov;4(11):2861-7 PMID: 2998759
  36. Somatic generation of antibody diversity.
    Nature. 1983 Apr 14;302(5909):575-81 PMID: 6300689
  37. Immunoglobulin kappa light chain variable region gene complex organization and immunoglobulin genes encoding anti-DNA autoantibodies in lupus mice.
    J Clin Invest. 1988 Sep;82(3):852-60 PMID: 3138286
  38. Nucleic acid sequence of an internal image-bearing monoclonal anti-idiotype and its comparison to the sequence of the external antigen.
    Proc Natl Acad Sci U S A. 1986 Sep;83(17):6578-82 PMID: 2428036
  39. A genetically engineered murine/human chimeric antibody retains specificity for human tumor-associated antigen.
    J Immunol. 1986 Aug 1;137(3):1066-74 PMID: 3088107
  40. The idiotypic network and the internal image: possible regulation of a germ-line network by paucigene encoded Ab2 (anti-idiotypic) antibodies in the GAT system.
    EMBO J. 1985 Dec 30;4(13B):3681-8 PMID: 3937730
  41. Multiple related immunoglobulin variable-region genes identified by cloning and sequence analysis.
    Proc Natl Acad Sci U S A. 1978 Aug;75(8):3881-5 PMID: 279004
  42. One heavy chain variable region gene segment subfamily in the BALB/c mouse contains 500-1000 or more members.
    Cell. 1986 Nov 7;47(3):461-70 PMID: 3094964
  43. Somatic mutation creates diversity in the major group of mouse immunoglobulin kappa light chains.
    J Exp Med. 1984 Feb 1;159(2):417-35 PMID: 6420501
  44. Preferential utilization of the most JH-proximal VH gene segments in pre-B-cell lines.
    Nature. 1984 Oct 25-31;311(5988):727-33 PMID: 6092962
  45. Variable region framework differences result in decreased or increased affinity of variant anti-digoxin antibodies.
    Proc Natl Acad Sci U S A. 1988 May;85(9):3080-4 PMID: 3129726
  46. The Ig kappa L chain allelic groups among the Ig kappa haplotypes and Ig kappa crossover populations suggest a gene order.
    J Immunol. 1988 Jul 15;141(2):652-61 PMID: 2898504
  47. Molecular events during maturation of the immune response to oxazolone.
    Nature. 1985 Aug 1-7;316(6027):412-8 PMID: 3927173
  48. Production of a mouse-human chimeric monoclonal antibody to CD20 with potent Fc-dependent biologic activity.
    J Immunol. 1987 Nov 15;139(10):3521-6 PMID: 3119711
  49. Characterization of the heavy and light chain immunoglobulin variable region genes used in a set of anti-digoxin antibodies.
    Mol Immunol. 1989 Apr;26(4):371-82 PMID: 2497340
  50. The immune response toward beta-adrenergic ligands and their receptors. VIII. Extensive diversity of VH and VL genes encoding anti-alprenolol antibodies.
    J Immunol. 1988 Feb 15;140(4):1304-11 PMID: 3125254
  51. Sequences of variable regions of hybridoma antibodies to alpha (1----6) dextran in BALB/c and C57BL/6 mice.
    J Immunol. 1985 Dec;135(6):4215-21 PMID: 2415605
  52. Complete variable region sequences of five homologous high affinity anti-digoxin antibodies.
    J Immunol. 1987 Oct 1;139(7):2385-91 PMID: 3655367
  53. Differences between germ-line and rearranged immunoglobulin V kappa coding sequences suggest a localized mutation mechanism.
    Nature. 1981 Jun 25;291(5817):668-70 PMID: 6264318
  54. Idiotype vaccination against murine B cell lymphoma. Humoral and cellular responses elicited by tumor-derived immunoglobulin M and its molecular subunits.
    J Immunol. 1987 Oct 15;139(8):2825-33 PMID: 3498771
  55. Evolution of a multigene family of V kappa germ line genes.
    EMBO J. 1984 Jan;3(1):185-91 PMID: 6546718
  56. Somatic mutation in anti-phosphorylcholine antibodies.
    Immunol Rev. 1987 Apr;96:59-74 PMID: 3298010
  57. Somatic mutation and the maturation of immune response to 2-phenyl oxazolone.
    Nature. 1984 Nov 15-21;312(5991):271-5 PMID: 6504141
  58. Evolution of antibody variable region structure during the immune response.
    Immunol Rev. 1987 Apr;96:141-62 PMID: 3298006
  59. Antigen-binding myeloma proteins of mice.
    Adv Immunol. 1977;25:141-211 PMID: 76433
  60. Recombined flanks of the variable and joining segments of immunoglobulin genes.
    Proc Natl Acad Sci U S A. 1982 Mar;79(5):1383-7 PMID: 6803241
  61. Clusters of point mutations are found exclusively around rearranged antibody variable genes.
    Proc Natl Acad Sci U S A. 1983 Jun;80(11):3439-43 PMID: 6222379
  62. Variable region cDNA sequences and antigen binding specificity of mouse monoclonal antibodies to isomaltosyl oligosaccharides coupled to proteins. T-dependent analogues of alpha(1----6)dextran.
    J Immunol. 1989 Feb 1;142(3):863-70 PMID: 2464028
  63. Generation of antibody activity from immunoglobulin polypeptide chains produced in Escherichia coli.
    Proc Natl Acad Sci U S A. 1984 Jun;81(11):3273-7 PMID: 6374653
  64. Restricted Ig variable region gene expression among Ly-1+ B cell lymphomas.
    J Immunol. 1988 Oct 15;141(8):2788-96 PMID: 3139765
  65. Chimeric mouse-human IgG1 antibody that can mediate lysis of cancer cells.
    Proc Natl Acad Sci U S A. 1987 May;84(10):3439-43 PMID: 3106970
  66. Nucleotide changes in sequential variants of influenza virus hemagglutinin genes and molecular structures of corresponding monoclonal antibodies specific for each variant.
    Proc Natl Acad Sci U S A. 1989 Jun;86(12):4664-8 PMID: 2471975
  67. The role of clonal selection and somatic mutation in autoimmunity.
    Nature. 1987 Aug 27-Sep 2;328(6133):805-11 PMID: 3498121
  68. A member of a new VH gene family encodes antibromelinized mouse red blood cell autoantibodies.
    Eur J Immunol. 1988 Oct;18(10):1521-6 PMID: 2903828
  69. Different VL and VH germ-line genes are used to produce similar combining sites with specificity for alpha(1----6)dextrans.
    J Immunol. 1987 Jun 15;138(12 ):4472-9 PMID: 2438345
  70. Novel V genes encode virtually identical variable regions of six murine monoclonal anti-bromelain-treated red blood cell autoantibodies.
    J Immunol. 1987 Jan 1;138(1):316-23 PMID: 3097149
  71. A new classification of mouse VH sequences.
    Immunol Today. 1984 Apr;5(4):85-6 PMID: 25291694
  72. Mutant immunoglobulin genes have repetitive DNA elements inserted into their intervening sequences.
    Proc Natl Acad Sci U S A. 1982 Dec;79(23):7425-9 PMID: 6296832
  73. Structural differences in a single gene encoding the V kappa Ser group of light chains explain the existence of two mouse light-chain genetic markers.
    Proc Natl Acad Sci U S A. 1986 Dec;83(23):9134-8 PMID: 3097643
  74. Activation of memory and virgin B cell clones in hyperimmune animals.
    Eur J Immunol. 1987 Aug;17(8):1121-9 PMID: 3113977
  75. Nucleotide sequence of the cDNAs encoding the variable region heavy and light chains of a myeloma protein specific for the terminal nonreducing end of alpha(1----6)dextran.
    Proc Natl Acad Sci U S A. 1987 Apr;84(8):2440-3 PMID: 2436230
  76. Regulation of genome rearrangement events during lymphocyte differentiation.
    Immunol Rev. 1986 Feb;89:5-30 PMID: 3081433
  77. Variable region sequences of murine IgM anti-IgG monoclonal autoantibodies (rheumatoid factors). II. Comparison of hybridomas derived by lipopolysaccharide stimulation and secondary protein immunization.
    J Exp Med. 1987 Apr 1;165(4):970-87 PMID: 3494096
  78. A new murine Ig VH gene family.
    J Immunol. 1988 Jun 1;140(11):4031-4 PMID: 3131427
  79. Genetics and primary structure of V kappa gene segments encoding antibody to streptococcal group A carbohydrate. Comparison of V kappa gene structure with idiotope expression.
    J Immunol. 1988 Jan 15;140(2):641-5 PMID: 3121751
  80. Nucleotide sequences of five anti-lysozyme monoclonal antibodies.
    EMBO J. 1985 Feb;4(2):393-8 PMID: 2410256
  81. Complexity, polymorphism, and connectivity of mouse Vk gene families.
    Immunogenetics. 1989;29(2):65-74 PMID: 2563357
  82. Organization and complete sequence of identical embryonic and plasmacytoma kappa V-region genes.
    J Biol Chem. 1980 Apr 25;255(8):3691-4 PMID: 6767723
  83. Preferential expression of variable region heavy chain gene segments by predominant 2,4-dinitrophenyl-specific BALB/c neonatal antibody clonotypes.
    Proc Natl Acad Sci U S A. 1986 Apr;83(8):2589-93 PMID: 3085099
  84. Amino acids at the site of V kappa-J kappa recombination not encoded by germline sequences.
    J Exp Med. 1987 Sep 1;166(3):637-46 PMID: 3040883
  85. Molecular basis of an isogeneic anti-idiotypic response.
    EMBO J. 1984 Dec 1;3(12):3005-12 PMID: 6084592
Article Info
Journal
Immunogenetics
Abbr.
Immunogenetics
ISSN
0093-7711
Published
1989-00-00
Pages
475-93
Language
English
Region
United States
NLM ID
0420404
PMCID
PMC7087523
Subset
IM
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