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Biomedical subjects

D W Mason

Publications and source records attributed to D W Mason.

At least 19 recordsLinked to original sources

Signaling lymphocytic activation molecule (CDw150) is homophilic but self-associates with very low affinity.

Signaling lymphocytic activating molecule ((SLAM) CDw150) is a glycoprotein that belongs to the CD2 subset of the immunoglobulin superfamily and is expressed on the surface of activated T- and B-cells. It has been proposed that SLAM is homophilic and required for bidirectional signaling during T- and B-cell activation. Previous work has suggested that the affinity of SLAM self-association might be unusually high, undermining the concept that protein interactions mediating transient cell-cell contacts, such as those involving leukocytes, have to be weak in order that such contacts are readily reversible. Using surface plasmon resonance-based methods and analytical ultracentrifugation (AUC), we confirm that SLAM is homophilic. However, we also establish a new theoretical treatment of surface plasmon resonance-derived homophilic binding data, which indicates that SLAM-SLAM interactions (solution K(d) approximately 200 micrometer) are in fact considerably weaker than most other well characterized protein-protein interactions at the cell surface (solution K(d) approximately 0.4-20 micrometer), a conclusion that is supported by the AUC analysis. Whereas further analysis of the AUC data imply that SLAM could form "head to head" dimers spanning adjacent cells, the very low affinity raises important questions regarding the physiological role and/or properties of such interactions.

Animals↗

Peptides derived from murine insulin are diabetogenic in both rats and mice, but the disease-inducing epitopes are different: evidence against a common environmental cross-reactivity in the pathogenicity of type 1 diabetes.

Two rodent models of autoimmune type 1 diabetes have been used to investigate the role of insulin as an autoantigen in this disease. In lymphopoenia-induced diabetes in the PVG.RT1u rat, neonatal tolerization with insulin B-chain peptides, but not A-chain peptides, conferred significant protection from disease. After rechallenge of adult rats, neonatally B-chain-tolerized animals showed diminished B-chain-specific T-cell proliferation, interleukin (IL)-2 production, and interferon-gamma (IFN-gamma) production, as compared with control animals. The epitope recognized by the PVG.RT1u rat was mapped to residues 1-18 of the B-chain; T-cell lines specific for this epitope were generated, and these conferred diabetes upon adoptive transfer to irradiated syngeneic recipients. In adult nonobese diabetic (NOD) mice, subcutaneous immunization with B-chain peptide 9-23 emulsified in incomplete Freund's adjuvant (IFA) was also potent at preventing onset of diabetes. In contrast to PVG.RT1u rats, NOD mice recognized an epitope within residues 10-29 of the insulin B-chain. The data implicate insulin as a target autoantigen in type 1 diabetes but do not support a role for molecular mimicry to insulin in the pathogenesis of this disease.

Amino Acid Sequence↗

Intrathymic expression of genes involved in organ specific autoimmune disease.

Insulin, thyroglobulin and myelin basic protein (MBP) are implicated as autoantigens in the autoimmune diseases, insulin-dependent diabetes mellitus (IDDM), autoimmune thyroid-disease and multiple sclerosis. Self tolerance to these antigens, until recently only thought to be present extrathymically, is generally considered to be maintained by 'peripheral' mechanisms, such as clonal anergy or clonal ignorance. The techniques of reverse transcription and polymerase chain reaction (RT-PCR) were used to investigate the intrathymic expression of these genes. Expression was examined in mRNA isolated from complete adult rat thymus, various mouse thymic cell-types isolated from fetal thymic-organ cultures and from neonatal-mouse thymocyte subsets. mRNA for insulin, thyroglobulin and MBP were detected in unfractionated adult rat and embryonic mouse thymus. Rat thymus expressed both insulin I and II, while mouse thymus only expressed insulin II. Thyroglobulin and MBP, but not insulin mRNA were detected in mouse MHC class II+ thymic epthelial cells and class II+ dendritic cells and in certain thymocyte subsets. The presence of insulin, thyroglobubin and MBP mRNA in the thymus has important implications for the development of the T-cell repertoire, particularly for the mechanisms of tolerance that prevent autoreactivity to these antigens in healthy individuals.

Animals↗

The role of the thymus in the control of autoimmunity.

Self tolerance among T cells is believed to be maintained by two principal mechanisms: clonal deletion for self antigens expressed in the thymus and T cell anergy or T cell indifference for those whose expression is solely extrathymic. These mechanisms are passive in that they depend on autoreactive T cells being either eliminated during their maturation or rendered intrinsically non-responsive after they have matured. The data presented in this paper indicate that this scheme requires modification. First, it is evident that self antigens that are commonly regarded as being tissue-specific may also be expressed in the thymus where they influence the developing T cell repertoire. Second, it appears that there is some T cell-mediated regulatory mechanism that actively prevents potentially autoreactive T cells from expressing their disease-inducing potential. Our data indicate that this regulatory mechanism is established intrathymically and is an innate property of the naive T cell repertoire. The mechanism is discussed in terms of what is currently known of the ways that an individual T cell responds when interacting with agonist and antagonist peptides and possible therapeutic implications are considered.

Animals↗

Human cell-adhesion molecule CD2 binds CD58 (LFA-3) with a very low affinity and an extremely fast dissociation rate but does not bind CD48 or CD59.

CD2 is a T lymphocyte cell-adhesion molecule (CAM) belonging to the immunoglobulin superfamily (IgSF) which mediates transient adhesion of T cells to antigen-presenting cells and target cells. Reported ligands for human CD2 include the structurally-related IgSF CAMs CD58 (LFA-3) and CD48 as well as, more controversially, the unrelated cell-surface glycoprotein CD59. Using surface plasmon resonance technology, which avoids several pitfalls of conventional binding assays, we recently reported that rat CD2 binds rat CD48 with a very low affinity (Kd 60-90 microM) and dissociates rapidly (koff > or = 6 s-1) [van der Merwe, P. A., Brown, M. H., Davis, S. J., & Barclay, A. N. (1993) EMBO J. 12, 4945-4954]. In contrast, a study using conventional equilibrium binding methods reported a much higher affinity (Kd 0.4 microM) for human CD2 binding CD58 which suggested that the weak binding of rat CD2 to CD48 may not represent a typical CAM interaction. In the present study we have used surface plasmon resonance to obtain definitive affinity and kinetic data on the interactions of a soluble, recombinant form of human CD2 with soluble forms of CD58, CD48, and CD59. Binding of CD2 to CD58 was readily detected but we were unable to detect any direct interaction between CD2 and either CD59 or CD48 under conditions in which very low affinity interactions (Kd approximately 0.5 mM) would have been detected. In contrast to previous reports we found that human CD2 bound CD58 with a very low affinity (Kd 9-22 microM) and dissociated with an extremely fast dissociation rate constant (koff > or = 4 s-1). The association rate constant (kon) could not be measured directly but was calculated to be > or = 400,000 M-1s-1. Taken together, these results provide conclusive evidence that CAM interactions can have very low affinities and extremely fast dissociation rate constants.

Antigens, CD↗

Subsets of CD4+ T cells and their roles in autoimmunity.

The CD4 molecule has a very restricted tissue distribution being found at high levels only on subpopulations of thymocytes and peripheral T cells. This finding implicated the molecule in the specialized actions of these cells and provided the impetus for studies directed at determining the function of the CD4 molecule itself and of those T cells that expressed it. The first part of this paper reviews briefly some of the earlier work in this field in which Alan Williams played such a major role. The paper concludes with an account of more recent findings which reveal that CD4+ T cells are themselves phenotypically heterogeneous and that the different subsets that can be identified mediate markedly different immunological functions. In particular studies with laboratory rats have shown that one subset plays an essential role in the prevention of autoimmunity. This finding indicates that self tolerance cannot be accounted for entirely in terms of the deletion or irreversible inactivation of autoreactive T cells and raises a number of questions about how the immune response to self antigens is actively regulated and how possible deficiencies in this regulation may give rise to autoimmune disease.

Animals↗

Physical association of the cytoplasmic domain of CD2 with the tyrosine kinases p56lck and p59fyn.

In T lymphocytes, CD2 forms part of a loosely associated membrane complex which includes the T cell receptor (TcR) for antigen, the CD3 subunits, CD4 or CD8, CD5 and the protein tyrosine kinases p56lck and p59fyn. The interaction of CD2 with tyrosine kinases in this complex provides a possible mechanism for transmembrane signal transduction by CD2. We have investigated whether the interaction of CD2 with the kinases is dependent on other known members of the complex, or whether an independent association can be observed. Using in vitro kinase assays with immune complexes precipitated from cell lysates, we demonstrate that CD2 can associate with p56lck and p59fyn in a rat thymoma line that does not express CD4 or CD8, and in a TcR-negative Jurkat cell line. In TcR-positive Jurkat cells that express rat CD2, interaction of CD2 with p56lck and p59fyn was clearly seen, but it was absent in cells where the cytoplasmic tail of CD2 is truncated, indicating that the interactions are mediated by the cytoplasmic region of CD2. Furthermore, using cells expressing CD2 molecules with partial truncations in the cytoplasmic domain, we show that the association of CD2 with p56lck is progressively lost as the cytoplasmic domain is shortened, and that the capacity of the mutants to associate with p56lck correlates with their capacity to transduce transmembrane signals.

Animals↗

Targeting autoantigen to B cells prevents the induction of a cell-mediated autoimmune disease in rats.

Immunization protocols that induce high levels of delayed-type hypersensitivity are often associated with low levels of antibody production, whereas alternative immunization strategies can produce the opposite effect. This reciprocal relationship appears to depend, at least in part, on the fact that T cell-derived lymphokines that are predominantly involved in one type of response inhibit the development of those T cells that promote the alternative one. Such a regulatory mechanism is likely to be bistable in that whenever one form of response is established, spontaneous development of the alternative one will be inhibited. We have applied this concept to the control of a cell-mediated autoimmune disease in rats. By covalently linking the autoantigen to anti-IgD antibody, we have targeted it to B cells for presentation to antigen-specific T cells. This form of presentation favors antibody production and may be expected to antagonize the cell-mediated disease-inducing response to the same antigen. To test this hypothesis, use was made of the fact that experimental allergic encephalomyelitis (EAE), when induced with the encephalitogenic peptide of guinea pig myelin basic protein, is purely a cell-mediated disease. The experiments show that Lewis rats, immunized with the peptide in its encephalitogenic form, were protected from disease when simultaneously injected with the peptide coupled to anti-IgD monoclonal antibodies. Control experiments showed that neither peptide nor anti-IgD alone were protective, and the peptide covalently coupled to irrelevant antibodies also failed to protect. Spleen cells from animals protected from disease by the anti-IgD-peptide conjugate, when activated in vitro with the encephalitogen, were able to transfer EAE to naive recipients. The results demonstrate that a cell-mediated immune response can be controlled by appropriate targeting of the specific antigen without inducing T cell anergy and suggest a potential strategy for preventing autoimmune diseases that are essentially cell-mediated in type.

Animals↗

Molecular cloning of rat interleukin 4 cDNA and analysis of the cytokine repertoire of subsets of CD4+ T cells.

Rat peripheral CD4+ T cells may be subdivided into two functionally distinct subpopulations (OX-22highCD4+ and OX-22lowCD4+) on the basis of their reactivity with the monoclonal antibody MRCOX-22, which recognizes a restricted epitope on the leukocyte common antigen (LCA, CD45). Previous studies have demonstrated the increased activity of the OX-22highCD4+ subset in assays of cell-mediated reactivity, whereas the reciprocal OX-22lowCD4+ subset provides the majority of help for B cells in secondary antibody responses. Analyses of in vivo function have subsequently shown that the autoreactive activity associated with the OX-22highCD4+ subset can be inhibited through a suppressor activity within the OX-22lowCD4+ subset, indicating a further immunoregulatory role for these cells. Since the differential production of lymphokines such as interferon-gamma (IFN-gamma) and interleukin 4 (IL4) is believed to regulate alternative effector responses to a particular antigen, we have compared the lymphokine mRNA profiles of activated OX-22highCD4+ and OX-22lowCD4+ subsets using nucleic acid probes specific for rat IL 2, IFN-gamma and IL4, the latter of which has been isolated by a polymerase chain reaction cloning technique and its sequence is described. A higher frequency of cells expressed IL 2 mRNA in the OX-22high subset, in accordance with the relative levels of IL2 protein produced. In contrast, more IFN-gamma mRNA was detected in the OX-22lowCD4+ subset 24 h after mitogenic stimulation although these cells have consistently been shown to produce less IFN-gamma protein than the OX-22highCD4+ subset. This apparent paradox was resolved by the finding that the IFN-gamma mRNA levels in the OX-22lowCD4+ subset declined rapidly after 24 h while the levels continued to rise in the OX-22highCD4+ population such that at 48 h the relative levels were reversed. We have also demonstrated a higher level of IL4 mRNA expression within the OX-22lowCD4+ subset, which is undoubtedly involved in the increased B cell helper activity mediated by this subpopulation and may be responsible, in part, for their active suppression of cell-mediated immune responses.

Animals↗

The refractory phase of experimental allergic encephalomyelitis in the Lewis rat is antigen specific in its induction but not in its effect.

Rats that have recovered from experimental allergic encephalomyelitis (EAE) are refractory to attempts to induce further episodes of the disease. The specificity of this refractoriness was examined by determining the susceptibility of such animals to the related disease experimental allergic neuritis (EAN). As EAE and EAN are induced respectively by central nervous system myelin basic protein (MBP) and the P2 peptide of peripheral nerve myelin, it was possible to test whether the refractory phase of EAE represented a generalized hyporeactivity to antigenic challenge or was solely a failure to respond to the antigen with which disease was induced. For some experiments the roles of the two antigens were reversed, i.e. the effects of preimmunizing with P2 peptide on the susceptibility to EAE was examined. Animals preimmunized with MBP or P2 peptide became profoundly refractory to EAE and EAN respectively and rats preimmunized with one antigen but challenged with the other were susceptible to the challenge. It is concluded that refractoriness to EAE and EAN is largely antigen specific. Preimmunization with one antigen followed by challenge with a mixture of both suggested that the immunosuppression responsible for refractoriness, although specific in its induction, was non-specific in its effect.

Amino Acid Sequence↗

Microencapsulated dopamine (DA)-induced restitution of function in 6-OHDA-denervated rat striatum in vivo: comparison between two microsphere excipients.

Biodegradable controlled-release microsphere systems made with the biocompatible biodegradable polyester excipient poly [DL lactide-co-glycolide] constitute an exciting new technology for drug delivery to the central nervous system (CNS). The present study describes functional observations indicating that implantation of dopamine (DA) microspheres encapsulated within two different polymer excipients into denervated-striatal tissue assures a prolonged release of the transmitter in vivo. Moreover, in this regard, the results show that there were clear cut temporal differences in the effect of the two DA microsphere formulations compared in this study, probably reflecting variations in the actual composition (i.e., lactide to glycolide ratio) of the two copolymer excipients examined. This technology has considerable potential for basic research with possible clinical application.

Animals↗

Loss of encephalitogenicity of a myelin basic protein-specific T cell line is associated with a phenotypic change but not with alteration in production of interleukin-2, gamma-interferon or tumour necrosis factor.

Continued stimulation of a CD4+ myelin basic protein-specific T cell line led to loss of in vivo encephalitogenic activity but no alteration in ability of the line to produce interleukin-2, gamma-interferon or tumour necrosis factor. Loss of encephalitogenicity was, however, associated with an increased presence of CD4+ CD8+ cells which likely represents preferential outgrowth of this population. The possible in vivo relevance of these findings is discussed.

Animals↗

Studies on the refractoriness to reinduction of experimental allergic encephalomyelitis in Lewis rats that have recovered from one episode of the disease.

Lewis rats immunized with myelin basic protein (MBP) in Freund's complete adjuvant (FCA) suffer from a single episode of paralysis from which they recover spontaneously and become refractory to induction of further episodes of paralysis by reimmunization with MBP in FCA. We show that there is a transient period immediately after recovery when a second episode of paralysis can be induced in some animals by reimmunization with MBP in FCA, or soluble MBP prior to the development of complete refractoriness. We also show that rats that are refractory to the induction of experimental allergic encephalomyelitis (EAE) by active immunization with MBP in FCA are also refractory to the adoptive transfer of EAE by in vitro-activated MBP-primed lymphocytes.

Animals↗

The role of serum factors in the suppression of experimental allergic encephalomyelitis: evidence for immunoregulation by antibody to the encephalitogenic peptide.

Lewis rats immunized with myelin basic protein (MBP) in Freund's complete adjuvant (FCA) suffer from a single episode of paralysis from which they recover spontaneously. Subsequent to recovery, further episodes of paralysis cannot normally be induced by reimmunization with MBP in FCA. It is well established that serum, obtained from rats in the refractory state, can suppress the induction of experimental allergic encephalomyelitis (EAE) when given to animals from the time of immunization with MBP in FCA. Here it is shown that treatment with some such sera from Day 7 after immunization also suppressed the disease. However, not all convalescent sera were suppressive, indicating that rats immunized with MBP in FCA could become refractory to EAE without assayable levels of suppressive activity in their sera. In the context of this result it was notable that a correlation was found between the level of antibody specific for the encephalitogenic peptide in sera and the ability to suppress EAE. An inverse relationship was also shown between the amount of anti-encephalitogenic peptide antibody produced after immunization and the severity of EAE induced. Spleen cells from animals treated with Lewis anti-MBP serum after immunization with MBP in FCA could be activated to transfer EAE by in vitro culture with MBP despite the absence of any clinical signs in the donor animals, i.e. the serum inhibited the expansion or differentiation of these cells rather than preventing their priming or bringing about clonal deletion.

Animals↗

Spontaneous recovery of rats from experimental allergic encephalomyelitis is dependent on regulation of the immune system by endogenous adrenal corticosteroids.

Lewis rats with experimental allergic encephalomyelitis (EAE), induced either by the subcutaneous injection of guinea pig myelin basic protein (MBP) or by the adoptive transfer of MBP-primed spleen cells, suffer from a single episode of paralysis from which they recover spontaneously. Animals developing EAE were found to have greatly elevated levels of corticosterone in the blood. This endogenous increase in steroid production was accompanied by lymphopenia and depressed delayed-type hypersensitivity responses to OVA, indicating that rats with EAE are immunosuppressed in an antigen-nonspecific fashion. Adrenalectomized rats given subcutaneous implants of corticosterone to maintain basal steroid levels invariably died when EAE was induced. However, if the steroid replacement therapy was adjusted to mimic the hormone levels that were observed in intact rats developing EAE, then the disease followed a nonfatal course closely resembling that seen in the nonadrenalectomized controls. Replacement therapy that achieved serum corticosterone levels slightly higher than those found in intact rats with EAE virtually suppressed the disease completely. It is concluded that endogenous corticosterone release in rats with EAE plays an essential role in the spontaneous recovery that is observed in this condition. However, the subsequent refractory phase that is characteristic of rats that have recovered from EAE induced by active immunization with MBP is not associated with chronically elevated corticosterone levels. This finding is discussed in the light of other data that suggest that unlike the spontaneous recovery, the refractory state has an immunological basis rather than an endocrinological basis.

Adrenal Glands↗

Implantable microencapsulated dopamine (DA): a new approach for slow-release DA delivery into brain tissue.

Biodegradable controlled-release systems constitute an exciting new technology for drug delivery to the central nervous system (CNS). The present study describes functional and histochemical observations, indicating that implantation of DA microcapsules into striatal tissue assures a prolonged release of the transmitter in situ. This technology has considerable potential for basic and possibly also clinical research.

Animals↗