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Biomedical subjects

G Haughton

Publications and source records attributed to G Haughton.

At least 19 recordsLinked to original sources

Phenotype of B cells responding to the thymus-independent type-2 antigen polyvinyl pyrrolidinone.

We have determined the origin and cell surface phenotype of B cells producing antibody in response to immunization with the non-self TI-2 antigen polyvinyl pyrrolidinone (PVP). We report that the responding cells are derived from precursors in adult bone marrow and display the phenotype characteristic of B-1 cells. By use of allotype marked chimeric mice, constructed by reconstituting lethally irradiated recipients with adult bone marrow and peritoneal B-1 lymphocytes of recognizably different Ig allotypes, immunized with 1 microgram PVP, we found that although a substantial part of the total IgM produced in these chimeras bore the allotype of the transferred peritoneal B-1 cells, essentially all of the anti-PVP IgM expressed the allotype of the adult bone marrow. Fifteen of 16 hybridomas derived from a normal PVP-immune adult mouse bore N nucleotides at the V-D and D-J junctions of their heavy chain CDR3 regions, indicating their origin from precursors in the adult bone marrow. By use of ELISA spot analysis, we found the cells responding to PVP to be localized in the spleens of normal immunized mice. We then used multiparameter flow cytometric sorting to determine the cell surface phenotype of these cells. We found that the cells producing anti-PVP were greatly enriched in a small subpopulation with the phenotypic characteristics of B-1 cells; they were B220intermediate, CD5low, IgMhigh, IgDlow, CD43+ and CD23-. This subpopulation was also enriched for all cells producing IgM, regardless of specificity (the so-called 'spontaneous' antibody). We conclude that the B-1 phenotype is more likely a marker for a state of differentiation than for a discrete lineage of B cells.

Animals

Mechanisms that limit the diversity of antibodies. II. Evolutionary conservation of Ig variable region genes which encode naturally occurring autoantibodies.

Antibody which reacts with phosphatidyl choline can be detected in all normal mice. Generation of this specificity requires the use of either the unmutated VH11 or VH12 genes, with constraints on the length and sequence of CDR3, and specific light chain association. Given that those parts of the antibody that are subject to somatically generated diversity are restricted, we hypothesized that the germline VH11 and VH12 genes may be evolutionarily conserved to a greater extent than other VH genes. The nucleotide sequence was determined from a panel of inbred strains and Mus species for VH11 and VH12. The results were compared to the three functional members of the S107 VH family and show that VH11 and VH12 have a total of 13 silent and three replacement mutations while the S107 genes have 11 silent and 20 replacement mutations. This implies that there has been strong selection to conserve the VH11 and VH12 gene products, which must reflect a substantial survival value to the individual. Sequence comparisons also show that the alleles present in the recently derived inbred strains arose prior to speciation. While there is polymorphism within the inbred strains, there are alleles which are shared between species which diverged 3-5 million years ago. Conservation at the amino acid and nucleotide levels argues against the idea that Ig genes evolve at a rapid rate and suggests that the rate at which mutations are incorporated may be determined by the importance of the encoded protein.

Alleles

Mechanisms that limit the diversity of antibody: three sequentially acting mechanisms that favor the spontaneous production of germline encoded anti-phosphatidyl choline.

Antibody to phosphatidyl choline (PtC) is produced spontaneously in mice, by approximately 2-10% of naturally occurring CD5+ (B1) B cells in the peritoneum. Much of this antibody is encoded by the VH11 gene associated with a specific V kappa 9 gene. Constraints on the size and structure of the H chain CDR3 have been defined from nucleotide sequences of genes expressed by hybridomas and lymphomas derived from adult mice. All employ JH1 and all encode tyrosine as the first amino acid in CDR3, which is either nine or 10 amino acids long; the last six are always the same, start with tyrosine, and are rich in aromatic amino acids. Those with nine amino acids in CDR3 have glycine or serine in the second position and asparagine, serine or proline in the third; those with 10 have an additional aspartate or glycine inserted after the first tyrosine. DSP2 genes are used by 80% and DFL16 by 20%. Productively rearranged VH11 genes in neonates and in 18 day fetal liver display a greater, but still limited degree of diversity. All four JH genes are used and the length of CDR3 varies from three to 12 amino acids, but the first is tyrosine in 58 of 61 and DSP2 genes are used by 80% of these productive VDJ assemblies. Non-productive rearrangements of VH11 in fetal liver show a different pattern; 41% use DFL16 genes and only 40% have a TAx codon in the first position of CDR3. All rearrangements show evidence of a bias in favor of joining the VH11 gene to D genes at positions of matching nucleotide overlap.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Autoantibodies to phosphatidylcholine. The murine antibromelain RBC response.

The observation that murine B-cell populations can contain relatively large numbers of cells that produce IgM with the ability to lyse bromelain-treated mouse erythrocytes (BrMRBC), but not normal untreated MRBC, was made nearly 20 years ago. The major observations regarding the antigen specificity, the cells that produce this IgM, and the immunoglobulin V genes that encode them are summarized in this report. The epitope on BrMRBC that is recognized has been identified as the head group of phosphatidylcholine (PtC); B cells whose IgM has this specificity can be easily identified by their ability to bind fluorescent synthetic liposomes whose membrane contains PtC. The cells producing IgM specific for PtC all derive from the Ly-1 B-cell subset, and they use primarily two VH/VL gene pairs to encode the anti-PtC antibodies. The VH genes used describe two new VH gene families, VH11 and VH12. The genes encoding anti-PtC are unmutated and have characteristics and restricted VDJ constructions. The cells with this specificity, within individual mice, are polyclonal. These criteria are consistent with a primary antigen-driven clonal selection mechanism as the basis for the development of this immune specificity.

Animals

Ly-1 B (B-1) cells are the main source of B cell-derived interleukin 10.

We have previously reported (O'Garra, A. et al., Int. Immunol. 1990, 2:821) that murine B lymphomas and purified normal peritoneal B cells produce interleukin (IL) 10. We now show that this production of IL 10 B cells correlates with the presence of Ly-1 (B-1) B cells, in both normal and diseased mice. Using a semi-quantitative modification of the polymerase chain reaction, we show that IL 10 expression is detectable in peritoneal B cells but only becomes apparent in splenic B cells of aged mice of which a high proportion are Ly-1+. Furthermore, the expression of IL 10 is constitutive in splenic B cells from mice carrying the Ly-1+ BCL1 lymphoma. Since IL 10 is a potent regulator of in vitro immune function, its production by Ly-1 lineage B (B-1) cells raises the possibility that this subset of B cells may regulate their own development and/or the function of other immunocompetent cells.

Aging

Ig isotype switching in B lymphocytes. The effect of T cell-derived interleukins, cytokines, cholera toxin, and antigen on isotype switch frequency of a cloned B cell lymphoma.

The murine B cell lymphoma CH12.LX, which bears cell surface IgM specific for the phosphatidyl choline epitope of sheep red blood cells, is capable of spontaneous isotype switching in vitro. Switching to IgG3, IgG1, IgG2b, and IgA has been observed and variants expressing those isotypes have been isolated and cloned. We have developed a procedure for precise numerical evaluation of the frequency of switching to the several isotypes to which CH12.LX can switch. We have used a modified Poisson method which can distinguish between treatments which change isotype switch frequency and those which affect, in an isotype-specific fashion, growth or secretion rates of cells which have already switched. In this report we examine the effect of several cytokines, cholera toxin, hydroxyurea, and antigen on the isotype switch frequency of CH12.LX. The strongest effect observed was that of transforming growth factor-beta, which increases switch frequency 40-fold to an absolute switch frequency of 0.04 switch events (from IgM to IgA expression) per cell division. Interleukin-4 (IL-4) and cholera toxin also increase the switch frequency of CH12.LX while IL-5, IL-6 (with or without antigen), antigen (SRBC) alone, interferon-gamma, or hydroxyurea have no effect. We have shown that none of the cytokines studied change the relative frequency of switching to the available isotypes, only the absolute frequency of switching. We infer from this that the factors tested do not 'instruct' CH12.LX to switch to a particular isotype, but rather they deliver a 'go' signal to cells committed to switching to IgA at high frequency, rarely to IgG3, IgG1, or IgG2b, and never to IgG2a or IgE.

Animals

High frequency expression of S107 VH genes by peritoneal B cells of B10.H-2aH-4bP/WTS mice.

Our previous analyses of peritoneal Ly-1 B cells indicate that a high percentage express VH genes of the VH11 and VH12 families, and that this bias is due to clonal selection. The antibodies encoded by these genes bind the same hapten, phosphatidyl choline (PtC). Twenty-one of 73 hybridomas generated from fusions with peritoneal Ly-1 and Ly-1 sister population B cells of B10.H-2aH-4bp/Wts mice produce anti-PtC specific antibodies. We show here that 19 of these express VH11 and VH12 family genes and two express VH36-60 family genes. To assess whether there is a bias in VH gene use among non-PtC-specific hybridomas we analyzed the remaining 52 hybridomas for VH family expression by using VH family-specific probes in an RNA dot blot assay and by Ig mRNA sequencing. We find a seven-fold increase in the expression of the VHS107 family genes, and only slight differences in the expression of VH genes of other families relative to splenic B cells. We attribute the increase in VHS107 gene expression to clonal selection inasmuch as five of the seven VHS107+ hybridomas express the same VH gene (V11) and VL association is nonrandom. The bias in VH gene use among the entire panel of 73 peritoneal hybridomas is to the extent that approximately one-third express one of three genes: the V11 gene of the S107 family, the CH34 gene of the VH11 family, and the VH12 family gene.

Animals

Simultaneously arising Ly-1(CD5) B cell lymphomas have identical expressed IgH and kappa-genes but different nonproductive heavy chain rearrangements.

A group of CD5(Ly-1) B cell lymphomas are described. They were derived from mice which received a common pool of syngeneic mouse spleen cells. Southern blot analysis revealed that the lymphomas exhibited an unusual set of Ig gene rearrangements. Six lymphomas analyzed had either of two rearrangement patterns. EcoRI restriction digests of tumor DNA probed for rearrangements in the JH region, resulted in restriction fragments of 4.7 and 5.6 kb or of 4.7 and 8.5 kb. Each had an identical HindIII restriction fragment identified when probed for kappa gene rearrangements. Inasmuch as several B cell lymphomas from mice receiving a common pool of spleen cells had identical kappa-rearrangements and one identical IgH rearrangement, it was important to determine the DNA sequence of expressed IgH and kappa-genes. Each tumor was found to have identical nucleotide sequences of VH-DH-JH and VK-JK. The nonproductive IgH rearrangements each consisted of incomplete DH-JH rearrangements. The 8.5-kb EcoRI fragment was generated from a DFL16 gene segment rearranged into JH3, and the 5.6-kb fragment was generated from DQ52 rearranged into JH)1. We conclude that these Ly-1 B tumors are most likely derived from a single clone of cells which underwent a secondary rearrangement on the nonproductive allele after kappa-rearrangement had occurred. The alternate possibility of independently arising lymphomas with identical expressed VH and VK sequences is discussed.

Alleles

Antibodies specific for Ig idiotype, but not isotype, can substitute for antigen to induce IgM secretion by a B cell clone.

Cells of the mouse B cell clone, CH12.LX, secrete IgM when cultured with nominal antigen (sheep erythrocytes, SRBC) and mAbs which bind their membrane Ek molecules. To determine whether anti-Ig antibodies can substitute for antigen in the induction of IgM secretion by CH12.LX, the B cells were cultured with anti-Ek mAbs and anti-IgM or anti-idiotype antibodies. Anti-IgM antibodies were capable of cross-linking the membrane IgM of CH12.LX, and inhibited mitogen-induced differentiation of the B cells. However, anti-IgM could not substitute for SRBC in delivering a major histocompatibility complex-restricted differentiative signal. In contrast, either polyclonal or monoclonal antibodies specific for the CH12.LX Ig idiotype were fully capable of substituting for antigen in the induction of IgM secretion by CH12.LX. The binding of anti-IgM antibodies did not prevent anti-idiotype antibodies from delivering a differentiative signal. Thus, binding of ligand to different parts of the membrane Ig molecule can result in the delivery of different biological signals to the B cell.

Animals

Restricted immunoglobulin variable region gene usage by normal Ly-1 (CD5+) B cells that recognize phosphatidyl choline.

5-15% of lymphocytes in the peritoneums of normal adult B10.H-2aH-4bp/Wts (2a4b) mice are CD5+ (Ly-1) B cells that recognize phosphatidyl choline (PtC), a phospholipid component of all mammalian cells. We produced a set of IgM-secreting hybridomas from the peritoneal cells of normal, adult 2a4b mice. We found that this set of hybridomas shows a similarly high frequency of antibodies specific for PtC (21 of 86) that also react with bromelain-treated mouse erythrocytes. Restriction fragment analysis of Ig gene rearrangements and analysis of expressed Ig idiotypes reveal that these cells use a restricted set of variable region genes to generate the PtC-specific antibodies. The Ig genes used by the PtC-specific hybridomas appear to be the same as those found in the PtC-specific Ly-1 B cell lymphomas, CH27 and CH34.

Animals

Early commitment to neoplasia in murine B- and T-cell lymphomas arising late in life.

Lymphomas arise spontaneously in C57BL/10.H-2aH-4b (2a4b) mice greater than 1 year old. The purpose of this study was to determine when cells become committed to neoplasia and whether genes linked to H-2a or H-4b are a factor in predisposition to genesis of lymphoma. Following transplantation of a pool of spleen cells in large groups of mice, lymphoma incidence increased 1.8- to 2.1-fold and mean latent periods decreased, compared with those in controls. Lymphomas arising in mice that received the same pool of spleen cells often displayed identical rearrangements of genes for immunoglobulin and T-cell receptor. This finding indicates that the lymphomas were derived from expanding clones of cells present in the donor mice prior to transfer. The age of the donor mice determined the latency of lymphomas arising after spleen cell transfer. When donors were 3-4 months old at the time of spleen cell transfer, lymphomas were detected in the recipients 1 year later. When mice 1.5-2 years old were used as donors, tumors were observed 3 months after transfer. Almost all of these tumors were clonally related B-cell lymphomas. We conclude that the lymphomas seen late in life arise from premalignant clones of cells that have become committed to neoplasia in relatively young animals. These clones normally follow an indolent course and are manifested clinically only in old age. Neither H-2a nor H-4b alone appeared to alter susceptibility to the genesis of lymphoma in similar experiments with H-2a and H-4b congenic mice.

Animals

Biased immunoglobulin variable region gene expression by Ly-1 B cells due to clonal selection.

Most, if not all, autoantibodies specific for bromelain-treated mouse erythrocytes recognize the common membrane phospholipid, phosphatidyl choline (PtC). Anti-PtC antibodies are produced by 5%-15% of CD5+ Ly-1 B cells of normal unimmunized mice, but not by detectable numbers of conventional CD5- B cells. At 1 week of age PtC-specific B cells are undetectable but then increase dramatically over the next 3 to 4 weeks to reach adult numbers. We report here that PtC-specific Ly-1 B cells in B10.H-2aH-4bp/Wts mice predominantly express either of two heavy and kappa chain variable (V) region gene combinations. In addition, the sequence and length of DH genes are conserved among cells expressing the same V gene combination, and the V kappa-J kappa junctions of one group involve unusual splice sites. Preferential V gene rearrangement models are insufficient to explain the DH and V kappa-J kappa junctional sequences or the delayed appearance of this specificity, and so they cannot solely account for the high frequency of PtC-specific cells. These characteristics are more consistent with antigen selection. We therefore attribute the frequent use of the two V region gene combinations to selection for cells that express them and conclude that the expressed V gene repertoire of Ly-1 B cells in adult mice is influenced by antigen selection. Apparently, there is no selection for mutant anti-PtC antibodies of higher affinity during the formation of the Ly-1 B repertoire because the V region genes expressed by PtC-specific cells are unmutated. Our findings are consistent with an important, germ line-encoded function for the immunoglobulin products of these gene combinations.

Amino Acid Sequence

Ig isotype switching in B lymphocytes. A method for estimating isotype switch frequency in cloned B cell lymphomas.

We have developed a method for enumerating the frequency of Ig isotype switching in clones of B cells. The method adapts Poisson statistics to analyze the distribution of amounts of switched isotype produced by multiple subclones of cells and thus enables one to estimate the probability that a single cell will switch isotype in one cell generation. We have applied this method to determine the spontaneous switch frequency of two Ly-1+ B cell lymphomas of B10-H-2aH-4bp/Wts mice. Both CH12.LX and CH27.LX switch from IgM to IgA at very high frequencies (1 - 5 x 10(-3) switch events per cell division) and from IgM to IgG at low but detectable frequencies (10(-4) - 10(-5) switch events per cell division). Cloned IgG variants of CH12.LX switch to IgA at the same frequency as the IgM-producing cells. Bacterial lipopolysaccharide has a strong inhibitory effect on isotype switching by CH12.LX. Possible explanations for the observed preference for switching to IgA are discussed.

Animals

Restricted Ig variable region gene expression among Ly-1+ B cell lymphomas.

The majority of the characterized Ly-1+ B cell lymphomas of B10.H-2aH-4bp/Wts origin (the CH series) bear surface Ig related by Ag specificity or idiotype or both. To determine the genetic basis for these structural similarities, we have sequenced the VH and VL region genes expressed by 10 CH lymphomas, and have compared their VH and V kappa gene rearrangements by Southern blot analysis to one another and to those of four other CH lymphomas. Sequence analysis identified only five different VH, and seven different VL genes, and indicated that these V genes are essentially unmutated. CH lymphomas which express the identical VH gene share at least one idiotope. Thus, the basis for shared idiotype and specificity is due in most cases to the use of the same V gene. This restriction in V gene expression is not due to the preferential use of V genes of any particular VH family or VL group, as the expressed V genes belong to four different VH families and four V kappa groups, and include V lambda 1 and V lambda 2. We hypothesize that Ag selection accounts for the restriction in V gene usage among CH lymphomas.

Animals

Normal mouse peritoneum contains a large population of Ly-1+ (CD5) B cells that recognize phosphatidyl choline. Relationship to cells that secrete hemolytic antibody specific for autologous erythrocytes.

We have found that, in the peritoneums of normal adult mice, 5-15% of lymphocytes bind a fluorescent liposome probe. In ontogeny, cells with this specificity were shown to appear by 8 d after birth, and increase to the adult frequency by 2-3 wk. Some older mice contain an expanded population of these cells. We have shown that liposome binding occurs by cell surface IgM recognizing the common membrane phospholipid, phosphatidyl choline (PtC). Virtually all of these PtC-specific cells bear the cell surface marker Ly-1. Our results indicate that roughly 1 in 10 peritoneal Ly-1+ B cells has this single specificity. We have found that the precursors to all the cells that form plaques on protease-treated autologous erythrocytes (BrMRBC) are included in the PtC-specific population and can be isolated by FACS. We believe this is the first report of sorting large numbers of B cells with a single antigen specificity from normal, unimmunized animals. This method will allow for in vitro and in vivo studies of differentiative and proliferative properties of Ly-1+ B cells, which may help define their role in development and disease.

Aging