The 5' end of the IgH locus contains a cluster of DNaseI hypersensitive sites, one of which (HS1) was shown to be pro-B cell specific and to contain binding sites for the transcription factors PU.1, E2A, and Pax5. These data as well as the location of the hypersensitive sites at the 5' border of the IgH locus suggested a possible regulatory function for these elements with respect to the IgH locus. To test this notion, we generated mice carrying targeted deletions of either the pro-B cell specific site HS1 or the whole cluster of DNaseI hypersensitive sites. Lymphocytes carrying these deletions appear to undergo normal development, and mutant B cells do not exhibit any obvious defects in V(D)J recombination, allelic exclusion, or class switch recombination. We conclude that deletion of these DNaseI hypersensitive sites does not have an obvious impact on the IgH locus or B cell development.
The Igh locus is controlled by cis-acting elements, including EA and the 3' IgH regulatory region which flank the C region genes within the well-studied 3' part of the locus. Although the presence of additional control elements has been postulated to regulate rearrangements of the V-H gene array that extends to the 5' end of the locus, the 5' border of Igh and its flanking region have not been characterized. To facilitate the analysis of this unexplored region and to identify potential novel control elements, we physically mapped the most D-distal V, segments and scanned 46 kb of the immediate 5' flanking region for DNase I hypersensitive sites. Our studies revealed a cluster of hypersensitive sites 30 kb upstream of the most 5' V, gene. Detection of one site, HS1, is restricted to pro-B cell lines and HS1 is accessible to restriction enzyme digestion exclusively in normal pro-B cells, the stage defined by actively rearranging Igh-V loci. Sequence motifs within HS1 for PU.1, Pax5, and E2A bind these proteins in vitro and these factors are recruited to HS1 sequence only in pro-B cells. Transient transfection assays indicate that the Pax5 binding site is required for the repression of transcriptional activity of HS1-containing constructs. Thus, our characterization of the region 5' of the VH gene cluster demonstrated the presence of a single cluster of DNase I hypersensitive sites within the 5' flanking region, and identified a candidate Igh regulatory region defined by pro-B cell-specific hypersensitivity and interaction with factors implicated in regulating V(D)J recombination.
During B cell development, discrete domains within the Igh locus are activated independently for recombination. The D-distal VH genes are uniquely dependent on IL-7R signaling, which is thought to establish local chromatin accessibility through an unknown mechanism. To dissect this mechanism, we used a murine B cell line that responds to IL-7 by specifically inducing accessibility of a representative D-distal gene (A1) but not a D-proximal gene (V11). We demonstrate that IL-7-activated Stat5 is recruited rapidly to the A1 gene, with a concomitant increase in germline transcription and H4 acetylation. Furthermore, retroviral transduction of dominant negative or constitutively active Stat5 demonstrated that Stat5 activation is both necessary and sufficient for the IL-7-induced A1 germline transcription. Lastly, as with all known Stat5 target genes, A1 germline transcription requires a deacetylase activity. These results demonstrate that in response to IL-7 signaling, Stat5 is recruited to the D-distal A1 gene and induces accessibility.
The hepatic immunopathology in schistosomiasis mansoni is mediated by CD4 T cells specific for egg antigens and varies considerably among mouse strains. Previous studies in high pathology C3H mice suggested that a strong T cell response was due to the recognition of an immunodominant epitope within the major egg antigen Sm‐p40 (Sm‐p40234–246). Using a panel of T cell hybridomas, we have now examined the egg antigen‐specific TCR repertoire in two high pathology strains, C3H and CBA. We found that nearly half of the hybridomas responded to the Sm‐p40234–246 epitope and, of these, nearly all expressed Vα11.3 associated with Vβ8. Furthermore, in response to egg antigen stimulation, transcript levels of Vα11.3J36 (the most prevalent rearrangement expressed by Sm‐p40234–246‐specific hybridomas), increased in high pathology (CBA) but not in low pathology (BALB/c) strains. Our findings suggest that exacerbated schistosome egg‐induced immunopathology can be driven by T cells expressing a highly restricted TCR structure specific for a single parasite epitope.
Ab heavy chains encoded by mouse VH10 genes have been of particular interest due to their frequent association with DNA binding. We reported previously that VH10 sequences are over-represented in the preimmune repertoire considering the apparent number of germline-encoded VH10 gene segments. In this report, we show that the VH10 family consists of three and two germline genes in the Igha and Ighb haplotypes, respectively. The complete nucleotide sequences of these five genes, including promoters and recombination signal sequences, were determined and allow unambiguous assignment of allelic relationships. The usage of individual VH10 genes varied significantly and ranged from 0.2% to an extraordinary 7.2% of the VH genes expressed by splenic B cells. Since the promoter and recombination signal sequence elements of all five VH10 genes are identical, we suggest that the few amino acid differences encoded by these five germline VH10 genes determine their representation in the preimmune repertoire. Rearrangements of the most frequently used VH10 gene have an apparent bias for histidine at position 95 of complementarity-determining region-3 (CDR3). These CDR3s are also biased for asparagine, an amino acid associated with the CDRs of DNA binding Abs. Together, these results suggest that high VH10 gene use is the result of B cell receptor-mediated selection and may involve DNA and/or ligands that share antigenic features with DNA.
During their development, B and T lymphocytes are thought to undergo several cycles of chromatin remodeling at their antigen receptor loci that serve to regulate access of a common V(D)J recombinase to particular gene segments. We used germ-line transcription and susceptibility to DNaseI as markers to examine tissue and stage-specific changes in chromatin structure surrounding genes of the V(H)J558, V(H)10, and V(H)S107 families, whose members are located at discreet subregions of the locus. Germ-line VH transcripts from all three families were detectable at pro- and pre-B cell stages. Transcripts from the V(H)10 and V(H)S107 families, but not V(H)J558, remained detectable at the immature and mature B cell stages. Unexpectedly, none of the germ-line VH loci examined were markedly nuclease sensitive, regardless of cell type or transcriptional activity. A modest degree of nuclease sensitivity was noted at the V(H)J558 loci of pro-B and pre-B cells, however. Our data suggest that the entire Igh-V locus becomes accessible at early B cell stages, and returns thereafter to an inaccessible state. However, the timing of these accessibility changes does not occur uniformly across the V-H array. These results imply that multiple long-range elements are involved in targeting V-H genes for rearrangement.
Detailed analysis of the rearrangement and expression of two mouse Vkappa genes has been used to examine B cell repertoire development. The Vkappa1-A gene is used by a large proportion (9.6%) of splenic B cells in the adult primary repertoire, whereas the Vkappa22 gene is used at a much lower frequency (0.16%). Consistent with these results, quantitative PCR (Q-PCR) assays revealed that the number of splenic B cells with rearranged Vkappa1-A genes is much greater than the number with rearranged Vkappa22 genes. Q-PCR was also performed on both normal bone marrow pre-B cells and transformed pre-B cells induced to rearrange their kappa loci at high frequency. In contrast to splenic B cell rearrangements, the numbers of Vkappa1-A and Vkappa22 rearrangements in pre-B cells differ by only two- or threefold, suggesting that the intrinsic rearrangement frequencies of these two Vkappa genes are not significantly different. Further evidence of disproportionate selection was obtained by comparing the percentages of productive rearrangements amplified from genomic splenic DNA. Sequence analysis showed 84% (37 of 44) of the Vkappa1-A rearrangements but only 57% (29 of 51) of the Vkappa22 rearrangements to be in-frame. Together these results suggest that B cells expressing Vkappa1-A-encoded light chains are preferentially selected either in the periphery or in the transition from pre-B to B cell. Sequence data also reveal a surprisingly restricted diversity of VJ junctions, apparently due to biases introduced by the rearrangement mechanism.
In humans, infection with schistosome helminths can lead to dissimilar forms of clinical disease. Likewise, in the experimental mouse system, identical infection protocols with Schistosoma mansoni cause a more severe granulomatous disease in the C3H strain than in the C57BL/6 strain. To address this difference, we developed panels of schistosomal egg antigen (SEA)-specific T cell hybridomas to compare the responses of C3H and C57BL/6 mice to the major egg antigen p40. All derived C3H T cell hybridomas, despite being clonally distinct and restricted by either I-A(k) or I-E(k), responded to recombinant fragment 15-1 of the p40 antigen, while none of the C57BL/6 T cell hybridomas did. Consistent with the observed monoclonal T cell responses, polyclonal lymph node cells from schistosome-infected C3H mice reacted strongly to fragment 15-1, which contrasted sharply with the weak response displayed by the C57BL/6 strain. Moreover, studies with congenic mice demonstrated that the strong CD4(+) T cell response to fragment 15-1 was under major histocompatibility complex control and segregated with the H-2(k) haplotype. These findings suggest that a dominant T cell response against a major egg antigen may represent a risk factor for the development of severe disease.
In addition to the content of germ-line variable gene segments, the organization of V genes has been implicated in the development of the Ab repertoire. We have searched the expressed VH genes of BALB/c mice for additional VH gene families and utilized deletion mapping to explore the extent of VH gene family interspersion. We have identified and characterized one new VH gene family (VH15) and extended our previous studies of the Igha and Ighb haplotypes to include a third haplotype (Ighj) using a newly developed panel of pre-B cell lines (CXCB cell lines). We conclude that the Igha, Ighb, and Ighj haplotypes have a similar Igh-V locus structure. A refined deletional map for 15 VH gene families and an individual member of the VHSM7 family (H10) has been constructed based on the deletion profiles of 72 rearranged heavy chain loci. These results demonstrate previously unrecognized examples of interspersion among members of the VHS107, VH10, and VHSM7 families.
The utilization of VH gene families is severely biased during fetal development, such that D-region proximal VH genes are overrepresented. After birth the VH repertoire becomes more equally representative of the total inherited set of functional VH genes. To investigate the extent of this normalization process, we have determined the relative utilization of individual VH exons in the pre-immune repertoire of adult BALB/c spleen cells. Large samples of IgM heavy chain transcripts from polyclonally activated B cells were captured in a cDNA phage library and screened by hybridization using highly specific oligonucleotide probes. These studies revealed that the utilization of particular VH exons can differ by an order of magnitude. Significantly, the VH genes most under-represented in the pre-immune repertoire are located in the region of the Igh locus most distal to the DjhCh region. We suggest that the chromosomal position of a particular VH gene may influence its utilization and that the normalization of the adult repertoire is incomplete.
Phosphocholine (PC)-specific antibodies that arise in the mouse in response to Proteus morganii (PM) and use V1-DFL16.1-JH1 are characterized by a number of recurring mutations. Most striking is an invariant A for G substitution in codon 95 of VH which results in an asparagine instead of aspartate at that position. Because of the apparent importance of this substitution in an anti-PC(PM) response, we wanted to determine the molecular basis for this base change. A cDNA library derived from pre-immune splenic B cells was examined for the frequency of VDJ containing the A substitution at 95 and the presence of additional point mutations in these sequences. Six different cDNA were isolated which contained an A substitution at the VD junction (frequency 0.00009); a seventh positive cDNA could not be examined. The V segments of four of these cDNA matched known germline genes and were, therefore, unmutated. Two others closely matched V in families whose members have not all been characterized, hence, it is not known whether the mutations observed are somatic or germline in origin. Sequences of 35 cDNA clones, containing the same V segment but differing in D, J and junctional nucleotides, revealed no mutations. These results indicate that the A substitution generated at codon 95 is most likely a product of V-DJ joining.
Ig VH repertoire differences between normal and x-linked immune deficiency- (xid) expressing mice are well established. To test the hypothesis that such differences might exist as early as the pre-B stage of ontogeny we generated panels of xid fetal liver derived Abelson murine leukemia virus transformants with H chain Ig VDJ rearrangements. Cells from CBA/Tufts.xid mice used VH genes from many families, with no demonstrable preference for 3' genes. Analysis of cells derived from (CBA/Tufts.xid X CBA/Tufts)F1 mice showed preferential usage of 3' family genes in the phenotypically normal females, even though V to DJ joins were made in vivo. The defective male mice did not show this marked preferential usage. A similar, but less marked, effect on VH gene usage was seen in mice with X-linked immune deficiency and a BALB/c background. Taken together, these results show that either X-linked immune deficiency, or a closely linked gene, affects fetal pre-B cells such that the usual pattern of predominant usage of 3' family genes is altered.
The Odc-rs8 locus belongs to a family of mouse DNA sequences related to the gene encoding ornithine decarboxylase (ODC). Odc-rs8 was mapped by recombinant inbred (RI) strain analysis to the region of Chromosome (Chr) 12 occupied by the variable region genes of the immunoglobulin heavy chain (Igh) complex. In the present study, alleles at Odc-rs8 were shown to cosegregate with those for Igh variable region (Igh-V or VH) genes among 37 inbred mouse strains that had been characterized previously for their haplotypes at Igh. For a more precise definition of the location of Odc-rs8 relative to Igh-V, DNAs from 17 Abelson murine leukemia virus (A-MuLV)-transformed pre-B cell lines cultured from mice heterozygous at Igh and Odc-rs8 were analyzed for the presence of DNA restriction fragments (RFs) derived from each parental Odc-rs8 allele. These cell lines, each of which has rearranged one or both Igh genes, previously were employed in mapping members of nine VH gene families by deletion analysis (Brodeur et al. 1988). Comparing the deletion profiles of the cell lines for Odc-rs8 with those for the VH gene families has located Odc-rs8b within the VHJ558/VH3609 gene cluster and Odc-rs8c either within or upstream of the 5'-most 9% of VHJ558, identifying Odc-rs8 as a potentially useful marker for the 5' end of the Igh complex.
The cellular basis of the immune response underlying the granulomatous hypersensitivity in experimental murine schistosomiasis caused by Schistosoma mansoni was investigated by examining a panel of 16 egg antigen‐specific T cell clones. The clones were derived from a sensitized T cell line by limiting dilution, and were selected on the basis of their strong responses against schistosomal egg antigens. By cytofluorographic analysis, it was determined that all clones were T helper cells and expressed the CD3+CD4+CD8− phenotype. Lymphokine analysis revealed that some clones secreted either interleukin (IL)‐2 or IL‐4, but a surprisingly large number were double producers. Southern blot analysis verified the clonality of these T cells and indicated that the clones examined included at least five independent clones by the criterion of T cell receptor β gene rearrangements. Despite their diversity, the clones responded strongly, and virtually exclusively, to egg antigen components with isoelectric points in the limited range of 4.7 to 5.2. The relevant antigenic egg molecules were shown to require processing by accessory cells for presentation to, and stimulation of, the T cell clones.
The generation of the primary antibody repertoire requires the somatic rearrangement of germline gene segments. It is not known, however, whether all functional V and J gene segments have an equal probability of contributing to this initial set of antibody specificities. To address this issue, we have examined the relative utilization of VH and JH gene segments of the mouse. We have constructed VH cDNA phage libraries from C mu transcripts obtained from polyclonally activated spleen cells of the BALB/c and C57BL/6 strains. We show that probes specific for either one, two or three functional VH gene segments hybridize to cDNAs at frequencies directly proportional to the number of functional germline VH genes detected by each probe. In contrast, the representation of 10 VH gene families within each library indicates that certain families are under‐represented relative to their estimated germline gene number. These families must either have extraordinary proportions of nonfunctional genes or are influenced by as yet unidentified regulatory mechanisms or constraints on rearrangement.
Previously we have shown that a high proportion (5%-15%) of peritoneal Ly-1+ B cells that bind the common membrane phospholipid, phosphatidylcholine, express either of two VH genes. One of these genes, CH34VH, belongs to the recently described VH11 family, whereas the other VH gene, CH27VH, is reported here to belong to a new, single-member family which we designate VH12. We have characterized these new VH families in terms of strain polymorphism, map position relative to nine other VH gene families, and frequency of expression in polyclonally stimulated splenic B cell populations. We find that VH11 and VH12 genes are expressed at frequencies similar to the VH genes of other families in the spleen, and that these genes are not located among the J-proximal VH segments which are preferentially expressed during early development. These results suggest that the VH11 and VH12 genes are not preferentially rearranged, and support our earlier studies which suggested that the high frequency of VH11 and VH12 expression among peritoneal Ly-1 B cells is due to antigen selection.
We have isolated and characterized a new series of B lymphomas which occurred spontaneously in a group of CBAN mice that were transferred with spleen or lymph node cells from 24-month-old CBACa mice. Tumor cell lines from six CBAN mice that received spleen cells were rescued and designated as BKS-2, BKS-3, BKS-4, BKS-5, BKS-6, and BKS-7. Also, tumor cells from a recipient of lymph node cells were rescued and the resulting cell line was designated BKL. These tumor cells expressed membrane immunoglobulin (μ,κ), major histocompatibility complex Class I and Class II molecules, B220, Lyb8, Fc receptors, J11d, interleukin 2 receptors, and Ly1. All of the tumors did not express the T cell specific markers Thy 1.2, L3T4, and Lyt2.1. They appeared to be clonal in origin, since they exhibited common rearrangements at both heavy and light chain immunoglobulin loci. Phenotypically, these lymphomas appeared to be analogous to immature B cells. Also, these lymphomas displayed different functional reactivities when treated with various B cell mitogens and growth factors in vitro. Anti-μ antibodies which normally induce B cell growth inhibited the proliferation of these lymphoma cells in vitro, whereas they responded to lipopolysaccharide, T cell-derived growth factors, and interleukin 5 by enhanced proliferation. These tumor cells expressed constitutively high levels of c-myc mRNA.