We use techniques of classical immunogenetics and of molecular biology to study the genetics of rabbit immunoglobulins (Igs) and T cell receptors (Tcr) and to investigate the regulated expression of Ig and Tcr genes during lymphoid cell development. We have reported that there are evolutionarily conserved IgH enhancer sequences and a donor splice site in the intron between the Ig heavy chain J-region and the IgM heavy chain constant region (C-mu) genes. The presence of the conserved splice site sequences in the JH-C-mu intron region of the human, mouse and rabbit genomes and the utilization of the splice sites to process sterile C-mu mRNA transcripts expressed by developing B cells of mice and rabbits suggests that these transcripts may play a regulatory role during B-cell development. Some rabbits are unusual in having three different copies of Tcr C-beta genes. The third gene is a chimeric C(beta)2-C(beta)1 genomic Tcr beta chain gene that may have arisen by an unequal crossing over event analogous to that which may have deleted C(beta)l, D(beta)2 and J(beta)2 in NZW mice. We demonstrated this in Southern analyses of both total genomic DNA and two different genomic clones of about 6 and about 14 kb as well as by sequencing cloned genomic DNA. Rabbits were bred at the NIH to produce elevated levels of lambda light chains lacking c2l and expressing only c7. These rabbits were shown to produce mRNA and proteins with sequences corresponding to the products of a previously identified genomic lambda light chain gene, C(lambda)6. The production of c2l is known to be due to expression of C(lambda)5. The c2l-negative phenotype reflects deletion of a region including J(lambda)5. The c7-negative phenotype also appears to result from a deletion.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Intramural Research (Z01)
Project #
1Z01AI000036-25
Application #
3809535
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
25
Fiscal Year
1990
Total Cost
Indirect Cost
City
State
Country
United States
Zip Code
Sinha, Rajesh K; Alexander, Cornelius; Mage, Rose G (2006) Regulated expression of peripheral node addressin-positive high endothelial venules controls seeding of B lymphocytes into developing neonatal rabbit appendix. Vet Immunol Immunopathol 110:97-108
Sinha, Rajesh K; Yang, Guibin; Alexander, Cornelius et al. (2006) De novo expression of MECA-79 glycoprotein-determinant on developing B lymphocytes in gut-associated lymphoid tissues. Immunology 119:461-9
Pospisil, Richard; Alexander, Cornelius B; Obiakor, Harold et al. (2006) CD5+ B cells are preferentially expanded in rabbit appendix: the role of CD5 in B cell development and selection. Dev Comp Immunol 30:711-22
Yang, Guibin; Obiakor, Harold; Sinha, Rajesh K et al. (2005) Activation-induced deaminase cloning, localization, and protein extraction from young VH-mutant rabbit appendix. Proc Natl Acad Sci U S A 102:17083-8
Pospisil, Richard; Obiakor, Harold; Newman, Barbara A et al. (2005) Stable expression of the extracellular domains of rabbit recombinant CD5: development and characterization of polyclonal and monoclonal antibodies. Vet Immunol Immunopathol 103:257-67
Sinha, Rajesh K; Mage, Rose G (2004) Developing neonatal rabbit appendix, a primary lymphoid organ, is seeded by immature blood-borne B cells: evidence for roles for CD62L/PNAd, CCR7/CCL21, alpha4beta1 and LFA-1. Dev Comp Immunol 28:829-41
Taylor, Marcia L; Sehgal, Devinder; Raffeld, Mark et al. (2004) Demonstration that mast cells, T cells, and B cells bearing the activating kit mutation D816V occur in clusters within the marrow of patients with mastocytosis. J Mol Diagn 6:335-42
Sehgal, Devinder; Obiakor, Harold; Mage, Rose G (2002) Distinct clonal Ig diversification patterns in young appendix compared to antigen-specific splenic clones. J Immunol 168:5424-33
Obiakor, Harold; Sehgal, Devinder; Dasso, Joseph F et al. (2002) A comparison of hydraulic and laser capture microdissection methods for collection of single B cells, PCR, and sequencing of antibody VDJ. Anal Biochem 306:55-62
Sehgal, D; Schiaffella, E; Anderson, A O et al. (2000) Generation of heterogeneous rabbit anti-DNP antibodies by gene conversion and hypermutation of rearranged VL and VH genes during clonal expansion of B cells in splenic germinal centers. Eur J Immunol 30:3634-44

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