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Biomedical subjects

S Marshall-Clarke

Publications and source records attributed to S Marshall-Clarke.

At least 19 recordsLinked to original sources

Functional responses of human neonatal B lymphocytes to antigen receptor cross-linking and CpG DNA.

Human neonates are immunologically immature and consequently are highly susceptible to infection. The cellular basis for the dysfunctional immune responses of neonates is not clear, but is likely to reflect the immaturity of both B and T cell populations. Here we have examined the ability of human cord blood B cells to respond to antigen receptor cross-linking and also to CpG containing oligodeoxynucleotides (ODN), and compared their responses with those of adult peripheral blood B cells. Antigen receptor cross-linking with soluble F(ab')2 anti-IgM antibodies, induced HLA-DR and CD86 up-regulation and proliferation to a similar extent in adult and cord blood B cells. Both interleukin (IL)-2 and IL-4 co-stimulated anti-IgM-induced proliferation, but cord blood B cells were less sensitive than adult B cells to the co-stimulatory effects of IL-2. Antigen receptor cross-linking induced secretion of the chemokines macrophage inflammatory protein-1 alpha (MIP-1 alpha) and MIP-1 beta in adult and cord blood B cells, and secretion was enhanced by IL-2 or IL-4. CpG-ODN induced up-regulation of HLA-DR and CD86 expression and proliferation of adult and cord blood B cells, and anti-IgM and CPG-ODN synergized in the induction of proliferation. CpG-ODN also induced MIP-1 alpha and MIP-1 alpha secretion in adult and cord blood B cells. In addition to functional studies we examined the expression of CD62L (l-selectin), CCR7 and CXCR5. Our data show that surface expression of CD62L and CCR7 is lower on cord blood B cells than on adult B cells, suggesting that human cord blood B cells may exhibit homing defects.

Adult↗

Immature B lymphocytes from adult bone marrow exhibit a selective defect in induced hyperexpression of major histocompatibility complex class II and fail to show B7.2 induction.

Mature B lymphocytes respond to antigen receptor ligation by phenotypic changes, including up-regulation of major histocompatibility complex class II molecules and expression of B7.2, which are required for initiating and sustaining a productive interaction with T helper cells. We have previously demonstrated that neonatal B cells fail to show a similar up-regulation of class II and B7.2 expression following B-cell receptor (BCR) ligation, although these responses could be induced by other stimuli. Here we demonstrate that immature B cells from adult bone marrow exhibit even more profound defects in these responses, as they fail to up-regulate class II in response to either BCR ligation or interleukin-4. Moreover, bone marrow-derived, immature B cells could not be induced to express B7.2 either by receptor cross-linking or by lipopolysaccharide. These differences in the inducible expression of class II and B7.2 appear to be intrinsic to the B cells, as they were retained in purified populations of B-lineage cells and could not be induced in mature B cells by co-culture with bone marrow cells. Furthermore, short-term culture of bone marrow permitted B-cell maturation, which was accompanied by acquisition of responsiveness to the same stimuli as mature, splenic B cells. The inability of immature B cells to show these responses provides a molecular explanation for their reported deficiency in interacting with T cells. Failure of immature B cells to inducibly express B7.2 may also be important for the establishment of self tolerance in the B-cell compartment.

Animals↗

Antigen receptor signalling in apoptosis-resistant mutants of WEHI 231 cells.

Ligation of membrane immunoglobulin M (mIgM) induces cell cycle arrest and apoptosis in the WEHI 231 B-lymphoma cell line. The molecular mechanisms which link receptor ligation and the nuclear events that underlie this response, have yet to be fully elucidated. Here we have examined the signals induced following mIgM cross-linking in variants of WEHI 231 that no longer undergo apoptosis in response to this stimulus. Tyrosine phosphorylation of cellular substrates in two of the variants is identical to that seen in wild-type cells but in one of the mutants, VS2.12, a restricted set of substrates becomes tyrosine phosphorylated. In a second variant (E8), mIgM cross-linking does not induce elevation of intracellular Ca2+, although tyrosine phosphorylation of PLCgamma2 is induced to an equivalent extent to that seen in WEHI 231 cells. A third variant, 2E10.F9, is resistant to apoptosis despite the fact that all signals analysed appear to be similar to those induced in wild-type cells. Our findings show that resistance to apoptosis can arise as a result of mutations affecting discrete stages of the mIgM signalling pathway. The mutant lines reported here show defects that have not yet been identified in previous studies and are likely to be useful tools in dissecting the signalling of cell death in B lymphocytes.

Antibodies, Anti-Idiotypic↗

Immature B cells from neonatal mice show a selective inability to up-regulate MHC class II expression in response to antigen receptor ligation.

Immature and mature B cells show phenotypic and functional differences. Thus immature B cells are functionally unresponsive to stimuli including ligation of slg and CD38 which induce proliferation in mature B cells. Furthermore, immature B cells have been widely shown to be hypersensitive to tolerance induction. To investigate the reasons for this differential responsiveness we have compared the ability of mature and immature B cells to show receptor-induced tyrosine phosphorylation of cellular substrates, a receptor-proximal response and MHC hyperexpression, which occurs later. Mature and neonatal B cells displayed a similar pattern of slg-induced tyrosine phosphorylation and their responses had similar kinetics. Importantly, cross-linking of slg on immature B cells induced tyrosine phosphorylation of substrates with mol. wt corresponding to the chains of the lg alpha beta dimer, which plays a critical role in B cell signalling. Immunofluorescence analysis showed that immature B cells constitutively express lower levels of MHC class II than their mature counterparts, consistent with previous studies. Here we report for the first time that immature B cells fail to hyperexpress class II after slg ligation, although this response is induced by other stimuli. These observations suggest that the ability to up-regulate class II is developmentally regulated in the B cell lineage. Moreover, the selective failure of slg-induced class II hyperexpression shown by immature B cells may not allow effective T-B cell collaboration and contribute to tolerance induction.

Animals↗

Ligation of CD40 with soluble CD40 ligand reverses anti-immunoglobulin-mediated negative signalling in murine B lymphoma cell lines but not in immature B cells from neonatal mice.

Ligation of surface immunoglobulin (sIg) on certain murine B-lymphoma lines has been shown to initiate a programme leading to growth arrest and death of the cells by apoptosis. The cell lines WEHI 231 and CH33 which respond in this way to receptor cross-linking have phenotypic characteristics resembling those of immature normal B cells, and their responses have been taken to model those responsible for clonal deletion or anergy. Cross-linking of sIg on normal neonatal B cells has also been shown to inhibit their responsiveness to polyclonal activators. We have examined the ability of various co-stimuli to modify the response of growth-inhibitable B lymphoma lines to sIg cross-linking. Our findings indicate that cell-cell contact between cells of the WEHI 231 or CH33 lines and activated T cells rescues these cells from growth arrest and apoptosis. Cell-free supernatants from some T-cell lines were also protective although recombinant IL-4 had no effect. Analysis of the most effective signals and timing for inducing this protection suggested that it might, in part, be mediated by CD40 ligand (CD40L) expressed on or secreted by activated T cells. Using a soluble recombinant CD40L-CD8 fusion protein we have now shown that co-ligation of CD40 is sufficient to rescue WEHI231 and CH33 cells from anti-Ig-induced apoptosis. In contrast, the inhibitory effect of anti-Ig antibodies on the lipopolysaccharide (LPS)-driven proliferation of neonatal B cells was not relieved by co-ligation of CD40 with CD40L. These findings bring into question the usefulness of 'immature' B-cell lines as models for tolerance induction.

Animals↗

A family of glycoproteins (GP55), which inhibit neurite outgrowth, are members of the Ig superfamily and are related to OBCAM, neurotrimin, LAMP and CEPU-1.

We have previously identified a glycosylphosphatidylinositol-linked glycoprotein of 55 kDa (GP55) which inhibits neurite outgrowth. We now provide evidence that GP55, isolated from adult chick brain, consists of at least two bands, both of which are active, i.e., block outgrowth of neurites from chick dorsal root ganglion neurons. An antiserum raised against the adult proteins reverses the inhibition and preliminary experiments suggest that GP55 is restricted to the nervous system, increases during development from very low levels at embryonic day 10 and is most abundant after hatching. Immunofluorescence reveals that GP55 is expressed on neurons cultured from an embryonic day 14 chick brain but is barely detectable on embryonic day 10 dorsal root ganglion neurons or embryonic day 8 forebrain neurons; the neurons which respond to substrate-bound GP55. Peptide sequencing revealed considerable homology with OBCAM, a protein previously identified on the basis of binding opiates. Nested polymerase chain reaction using primers to the OBCAM sequence and internal primers to GP55 peptides produced two different polymerase chain reaction fragments with homology to OBCAM. A full length clone (E19S) corresponding to one polymerase chain reaction product and a partial length clone (E14S) corresponding to the second have been isolated from an embryonic chick brain library. Both are members of the immunoglobulin superfamily and have (or are expected to have) three C2 domains. E19S has 90% homology with LAMP at the amino acid level. This sequence only partially matches the peptides from the adult protein and hence is probably not a major component of the adult proteins. E14S (GP55-A) has 83% homology to OBCAM at the amino acid level over the region sequenced. The sequence matches several of the peptides from the adult protein and is hence likely to correspond to a major component of the adult proteins. Thus members of the GP55 family are related to OBCAM, neurotrimin, LAMP and a recently discovered chick protein CEPU-1. Our results suggest molecules within this family are capable of acting as cell adhesion molecules and inhibitors of neurite outgrowth.

Amino Acid Sequence↗

Monoclonal antibody, LR-2, recognizes an immunoglobulin-linked signaling molecule on murine B cells.

The studies presented here examine the effect of a monoclonal rat antibody, LR-2, on the proliferation of growth-inhibitable murine B lymphoma lines. Like anti-immunoglobulin, mAb LR-2 is capable of inducing growth arrest in these cells, implying that ligation of the LR-2 cell surface molecule by mAb LR-2 transduces an inhibitory signal. The growth inhibition produced by LR-2 can, however, be clearly distinguished from that produced by anti-Ig reagents. Our findings show that mAb LR-2 does not react with membrane Ig. Significantly, the LR-2 antigen could be induced to comodulate with membrane Ig. The data thus indicate that mAb LR-2 reacts with a mIg-associated signal-transducing molecule on the B cell surface and may constitute a component of the Ig receptor complex. The role of this molecule in the regulation of the proliferation and maturation of normal B cells is currently being investigated.

Animals↗

Non-oscillatory free Ca2+ response of single B cells and WEHI-231 cells after cross-linking of antigen receptors with anti-immunoglobulin.

Cross-linking of surface-immunoglobulin (sIg) has been associated with IP3 production and a rise in cytoplasmic-free calcium ([Ca2+]i) in studies of populations of normal and transformed B cells. We have examined the kinetics of the induced cytoplasmic calcium rises in single, Fura-2-loaded cells, during stimulation with a variety of agonists. Our data indicate that the responses of B cells to some stimuli, such as elevated cyclic AMP, consist of repetitive calcium transients, but these Ca2+ oscillations do not occur after sIg ligation. Rather, sIg cross-linking leads to a rapid rise in cytoplasmic calcium which is followed by a sustained elevation. Most of this response seems to result from an inflow of extracellular calcium rather than from internal stores.

Antibodies, Monoclonal↗

Salivary and serum antibodies in experimental canine taeniasis.

Specific IgG and IgA antibodies against adult Taenia pisiformis excretory/secretory antigen were detected in sera and saliva by enzyme-linked immunosorbent assay (ELISA) in experimentally infected dogs. IgG titres in serum and IgA in saliva corresponded with infection status, while serum IgA levels closely reflected faecal egg counts. The salivary IgA response was particularly raised and could have significant immunodiagnostic use for taeniasis in dogs.

Animals↗

Modification of cellular immunity by Taenia multiceps (Cestoda): accessory macrophages and CD4+ lymphocytes are affected by two different coenurus factors.

Taenia multiceps coenurus fluid was analysed by fast protein liquid chromatography in order to separate the factors responsible for previously reported modification of immunological activity in macrophages and T-cells. One factor, F7, was found to be mitogenic for murine L3T4+ T-cells, to be macrophage dependent, to require macrophage compatibility at the I region of the H2 complex, to increase the sensitivity of T-cells to regulatory signals from macrophages and to increase the rate of generation of splenic rosette-forming cells (RFC) against sheep red cells. A second factor, F24, was found to alter macrophages so as to render them suppressive, rather than stimulatory, for parasite-activated and Con A-activated lymphocyte transformation, to depress the rate of generation of RFC and to antagonize the mitogenic effect of F7. The combined actions of these two factors are, therefore, sufficient to explain the known immunomodulatory effects of the metacestode.

Animals↗

Lymphoreticular responses to metacestodes: Taenia multiceps (Cestoda) can modify interaction between accessory cells and responder cells during lymphocyte activation.

This study was designed to test the accessory function of macrophages after activation with products of Taenia multiceps coenuri. Activation was carried out by intraperitoneal injection of mice with coenurus fluid or protoscolex culture supernatant, and function was assessed by adding these macrophages in progressively increasing numbers to macrophage-depleted lymphocyte cultures transforming under the influence of plant mitogens or coenurus-fluid mitogen. In contrast to normal macrophages, which have a progressively enhancing action on the above reactions, parasite-activated macrophages at similar concentrations were progressively inhibitory. However, low concentrations of the activated macrophages enhanced mitosis as well as, or better than, normal. Lymph node cells from injected mice showed abnormal response to macrophage-derived signals. In particular there was subnormal reaction to macrophages in the presence of coenurus mitogen. These results suggest that T. multiceps coenuri may survive in the host because of their ability to reduce effective interaction between lymphocytes and accessory cells.

Animals↗

Activation of normal murine B cells by Echinococcus granulosus.

Echinococcus granulosus protoscolex (PSC) infection of BALB/c mice led, after 4 days, to raised numbers of cells forming plaques with trinitrophenyl-treated sheep red cells and bromelain-treated mouse red cells. The findings were similar in athymic and euthymic CBA mice. Activation of B cells was accompanied by secretion of immunoglobulin, as indicated by the reverse plaque technique. In addition, co-culture of PSC with the 7OZ/3 pre-B-cell led to the induction of differentiation, resulting in the expression of surface immunoglobulin (Ig). It is concluded that E. granulosus is a polyclonal activator of B cells inducing both transformation and differentiation, and that the effect is thymus-independent.

Animals↗

High efficiency antigen presentation by thyroglobulin-primed murine splenic B cells.

B cells primed in vivo with mouse or rat thyroglobulin present these antigens at very low concentrations to CH9, an Ly 1+2- T cell hybridoma specific for mouse and rat thyroglobulin. Presentation measured by interleukin 2 release from CH9 is sensitive to treatment with a monoclonal antibody eliminating splenic B cells but is unaffected by anti-Thy-1.2 or 33D1 (which destroy T cells and dendritic cells, respectively). Presentation is specific for the priming antigen and is blocked by preincubation of the B cells with sheep anti-mouse F(ab')2. We suggest that in this system, primed B cells present thyroglobulin and that this may represent a means by which an initial triggering event priming both B and T cells could allow maintenance of autoreactive responses in vivo in the presence of low concentrations of circulating antigen.

Animals↗

Cyclosporin A has differential effects on the responses of murine B cells to TI antigens and B-cell mitogens.

The effect of cyclosporin A (CyA) on the response of murine splenocytes to B-cell mitogens, TI-1 and TI-2 antigens was investigated. The proliferative response to LPS was found to be four- to five-fold less sensitive to inhibition than that to dextran sulphate. Antibody responses to a TI-2 antigen in vivo were suppressed by CyA treatment, whereas responses to the TI-1 antigen DNP-LPS were markedly enhanced. Enhanced antibody responses to DNP-LPS were also demonstrable in vitro in the presence of CyA, and the enhancement was not removed by T-cell depletion. LPS-induced antibody production in vitro was enhanced at the same CyA concentrations that inhibited proliferation by 40-50%. The implications of these findings for the mechanism of action of CyA and for our understanding of B-cell differentiation are discussed.

Animals↗

Helper and suppressor activities of an autoreactive mouse thyroglobulin-specific T-cell clone.

An autoreactive T-cell clone, MTg9B3, specific for mouse thyroglobulin, has been characterized. This clone has properties consistent with it an being autoreactive T helper cell. It is I-A restricted, with a surface phenotype of Thy 1+, L3T4+, Ly2-, and produces a number of non-specific lymphokine activities following specific triggering with antigen. Furthermore, antigen-stimulated clone cells were capable of providing bystander help in SRBC-specific antibody responses. Surprisingly, MTg9B3 cells had a profound suppressive effect on thyroglobulin autoantibody responses in vitro.

Animals↗

Dissociation of murine B-cell proliferation and differentiation by monoclonal antibody, NIM R2.

The rat monoclonal antibody NIM-R2 has been shown to be directed towards a cell surface differentiation antigen of murine B lymphocytes which is expressed to a greater or lesser extent at different phases of B-cell activation. In this report, NIM-R2 is shown to be capable of modulating the functional capacity of B cells. In the presence of the monoclonal antibody, the ability of fully mature antibody-forming cells to secrete their product is inhibited. This effect is, however, short-lived, with the cells quickly recovering secretory capacity, even in the continued presence of the monoclonal antibody. NIM-R2 also inhibits the generation of antibody-forming cells in culture, the addition of antibody as late as the third day of a 4-day culture period being effective in this respect. The evidence presented here suggests that these inhibitory effects of NIM-R2 are mediated through interference with separate mechanisms. Our data also indicate that, although NIM-R2 inhibits the generation of antibody-forming cells from their B-cell precursors, it does not affect the B-cell proliferative response. The findings are discussed in terms of their relevance to current models of B-cell activation and differentiation.

Animals↗