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I M Roitt

Publications and source records attributed to I M Roitt.

At least 19 recordsLinked to original sources

A thyroxine-containing peptide can induce murine experimental autoimmune thyroiditis.

A synthetic peptide based on a sequence containing thyroxine at position 2553 in thyroglobulin (Tg), and already shown to be recognized by two clonotypically distinct murine Tg autoreactive T cell hybridomas, can trigger primed lymph node cells to transfer thyroiditis to naive recipients. Donor lymph node cells could be prepared from mice immunized either with intact mouse Tg or with this peptide itself. After a second exposure to the priming antigen in vitro, both these populations induced 100% thyroiditis in recipient animals. The importance of the T4 residue in the development of disease was demonstrated by the failure of Tg tryptic peptides depleted of T4 to stimulate pathogenic effectors in vitro, even when the lymph node cells had been taken from mice primed with whole Tg. We conclude that this T4-containing 12mer sequence is a major thyroiditogenic epitope in CBA/J mice although we cannot exclude the possibility that there are other pathogenic epitopes present in the whole Tg molecule.

Animals

The forces driving autoimmune disease.

There are two classes of autoimmune disease, organ-specific and non-organ specific or systemic. That cells producing autoantibodies are selected by antigen is strongly suggested by the presence of mutations and high affinity antibody. T-cells are pivotal in all forms of autoimmunity as evidenced by the therapeutic benefit of anti-T-cell monoclonals such as anti-CD4, and the frequent development of high affinity IgG autoantibodies. The production of anergic T-cells by the use of non-depleting anti-CD4 in the presence of antigen is discussed with particular reference to its potential for immunological intervention in autoimmune disease. It is possible to identify T-cell epitopes in organ-specific autoimmunity using pathogenic T-cell clones or hybridomas to identify the peptide sequences which are reactive. Antigen-specific therapy may ultimately be based on such peptide epitopes. The specificity of the T-cells in systemic autoimmunity is still obscure, but there is some evidence that reactivity with certain germ-line idiotypes can lead to the development of systemic autoimmunity. The possibility of stimulating B-cells specific for auto-antigens such as DNA becomes feasible if a complex of antibody and DNA is taken up by these specific B-cells and processed idiotype is presented to T-helpers specific for those idiotype epitopes. Evidence is presented that there may be pre-existing defects in the target organ in certain organ-specific disorders, and the evidence for a glycosylation defect in the IgG in patients with rheumatoid arthritis is explored. It is noted that the spouses of probands with rheumatoid arthritis is explored. It is noted that the spouses of probands with rheumatoid arthritis also tend to have this glycosylation defect and this raises the possibility of an effect due to an environmental factor, such as a microbial infection. Molecular mimicry of autoantigens by microbes can stimulate autoreactive cells by their cross-reactivity. It is emphasized that cross-reaction which gives rise to the priming of autoreactive T-cells could give rise to the establishment of a chronic autoimmune state. In animals with normal regulatory immune systems, such induced autoimmunity is ultimately corrected and it is only in animals where there are defects in regulation, that autoimmunity persists. Thus, there are many factors giving rise to autoimmunity, and the diseases are rightly regarded as multifactorial in origin.

Amino Acid Sequence

Lymphocytes from patients with rheumatoid arthritis produce agalactosylated IgG in vitro.

The percentage of oligosaccharide chains lacking galactose was measured in IgG obtained from pokeweed mitogen-activated cultures of blood lymphocytes from patients with rheumatoid arthritis and controls. Secreted IgG from rheumatoid arthritis lymphocytes was deficient in galactose compared with IgG from the lymphocytes of controls. This confirms that agalactosylation is a significant feature of the disease and demonstrates that it can occur at the B cell level and is not merely a post-secretory event.

Adult

Changes in normal glycosylation mechanisms in autoimmune rheumatic disease.

To investigate potential mechanisms controlling protein glycosylation we have studied the interrelationship between lymphocytic galactosyltransferase (GTase) activity and serum agalactosylated immunoglobulin G levels (G(0)) in healthy individuals and patients with rheumatoid arthritis and non-autoimmune arthritis. In RA there was reduced GTase activity and increased G(0). A positive linear correlation between B and T cell GTase was found in all individuals. The relationship between GTase and G(0) was found to be positive and linear in the control population and negative and linear in the RA population. Sulphasalazine therapy maintained normal levels of GTase and caused a reduction in G(0) in the RA population. IgG anti-GTase antibodies (abs) were significantly increased in the RA population, whereas IgM anti-GTase abs were significantly decreased in both the RA and the non-autoimmune arthritis groups. These data describe a defect in RA lymphocytic GTase, with associated abnormal G(0) changes, which is corrected by sulphasalazine. A possible regulatory mechanism controlling galactosylation in normal cells is suggested, in which there is parallel control of B and T cell GTase. IgM anti-GTase abs may be integrated into this normal regulatory process. This is disrupted in RA, where the positive feedback between GTase and G(0) is lost and there is an associated increase in IgG anti-GTase abs, which may result from isotype switching as IgM anti-GTase abs are reduced. We suggest that these mechanisms are of relevance to the pathogenesis of RA, and that their manipulation may form part of a novel therapeutic approach.

Adult

Identification of a thyroxine-containing self-epitope of thyroglobulin which triggers thyroid autoreactive T cells.

Although thyroglobulin (Tg), the thyroid prohormone, is well known as a T cell dependent autoantigen in human and experimental autoimmune thyroid disease, very little is known about the molecular basis of Tg recognition by T cells. In this paper, we have characterized the epitopes recognized by two clonotypically distinct, murine Tg autoreactive T cell hybridomas, CH9 and ADA2. In vitro iodination of a Tg preparation which was deficient in in vivo organified iodine was first used to confirm our previous observation that these T cells recognize iodination-related epitopes in the Tg molecule. Affinity chromatography of tryptic peptides derived from normally iodinated human Tg revealed that these epitopes were exclusively located in thyroxine (T4) containing peptides. Through the use of synthetic T4-containing peptides, representing the four major hormonogenic sites in Tg, we demonstrated that both CH9 and ADA2 recognize an epitope containing the T4 at position 2553 in human Tg. Sets of overlapping 5mer to 12mer peptides around this T4 showed that the most potent peptide was a 9mer beginning at Asp 2551. The T4 was shown to be a critical residue, since its replacement with any of the 20 naturally occurring amino acids produced only nonstimulatory peptides. Since the T cell hybridomas could also be stimulated by major histocompatibility complex class II positive (interferon-gamma-treated) thyroid epithelial cells in vitro, and their parent T cell lines can induce thyroiditis on adoptive transfer, the T4-containing Tg sequence described here is implicated as a pathogenic epitope in murine thyroid autoimmunity.

Amino Acid Sequence

Changes in IgG glycoform levels are associated with remission of arthritis during pregnancy.

It was found that the percentage of IgG-associated agalactosyl N-linked oligosaccharides (G0) falls during normal human pregnancy and rises to values higher than before conception following delivery (n = 10, 39-55 days after delivery). Serial bleeds from a normal pregnant woman showed a fall in the percentage G0 during gestation and a rapid rise post-partum. A similar study on a pregnant arthritic woman with a pathologically elevated percentage G0 also showed a fall in percentage G0 during pregnancy and a rapid rise post-partum. The changes in IgG glycosylation in the pregnant arthritic woman occurred simultaneously with the pregnancy-induced remission and post-partum recurrence of disease. A further seven pregnant women with rheumatoid arthritis were studied and analysis of their G0 values pre- and post-partum confirmed the result. In a further series of experiments using an animal model of rheumatoid arthritis, DBA/1 mice with collagen-induced arthritis were found to have elevated G0 levels compared with control mice. The percentage G0 was found to fall simultaneously with pregnancy-induced remission to the same value as non-arthritic pregnant mice. Post-partum recurrence of arthritis in these mice was also accompanied by a simultaneous and rapid rise in percentage G0. Pseudopregnancy did not result in a change in the percentage G0, confirming the effect of true pregnancy. Since the proportion of agalactosyl IgG is abnormally high in the serum of patients with rheumatoid arthritis these changes in IgG glycoform levels, or the factors which control them, may be related to the mechanisms underlying remission of arthritis in humans during pregnancy.

Acetylglucosamine

Reduction in IgG galactose in juvenile and adult onset rheumatoid arthritis measured by a lectin binding method and its relation to rheumatoid factor.

Glycosylation changes in patients with juvenile chronic and adult onset rheumatoid arthritis have been studied using a novel binding method. Both these major types of arthritis showed decreased galactosylation of serum IgG, which confirms earlier studies using a different, more complex chemical method. No significant correlation between serum IgG, IgM, and IgA rheumatoid factors and age corrected G(o) (percentage of oligosaccharide chains lacking galactose) was found. The possibility that the less glycosylated IgG is preferentially confined to circulating IgM/IgG immune complexes cannot be excluded, however.

Adolescent

In vitro regulation of thyroglobulin (Tg) autoantibody production by Tg-specific T-cell lines and hybridomas.

To define the interactions between self thyroglobulin (Tg)-reactive T and B we co-cultured enriched B cells taken from rat or mouse Tg-primed mice with major histocompatibility complex (MHC) class II-restricted T-cell lines specific for iodinated determinants on self-Tg, or hybridomas derived from those lines. Using two clonally distinct T-cell hybridomas, ADA2 and CH9, in vitro help for Tg autoantibody responses was observed using mouse (M)Tg-primed B cells and a 100 ng/ml MTg challenge. Using rat Tg-primed B cells and the same conditions, only CH9 provided help, indicating that the fine specificity of B cells influences their ability to interact with specific anti-Tg T-cell clones. In contrast to T-cell hybridomas, their parent T-cell lines MTg9B3 and MTg12B suppressed Tg autoantibody responses in vitro, although they augmented bystander proliferation of unprimed B cells. The MTg12B cells also (i) diminished the survival of Tg-primed B cells, and (ii) inhibited the proliferation of an antigen-presenting B-cell hybridoma (LK35.2) in a cytostasis assay. These findings together support the view that their suppressive activity is mediated through cytotoxicity. While the role of class II-restricted cytotoxic cells in thyroid autoimmunity is unknown, the results suggest that such cells may act to suppress autoantibody responses as well as to mediate tissue damage to class II-expressing thyroid cells.

Animals

Cellular infiltration in induced rat thyroiditis: phenotypic analysis and relationship to genetic restriction.

We have investigated the responsiveness to thyroglobulin (Tg) plus complete Freund's adjuvant (CFA) and B. pertussis in a variety of inbred and MHC congenic strains of rats in terms of both Tg-autoantibody titres and histological thyroiditis index. Severity of thyroiditis was strongly Tg-dependent and closely related to the RT.1-MHC haplotype. Phenotypic examination of the inflammatory thyroid infiltrate using single and double indirect immunofluorescence techniques revealed a high proportion of macrophages and T lymphocytes, mainly of the cytotoxic/suppressor subset, in the high responder strains. Thyroid epithelial class II MHC expression although not prominent was strain-restricted and related to the amount of Ia+ leukocyte infiltrate.

Animals

Galactosylation of IgG associated oligosaccharides: reduction in patients with adult and juvenile onset rheumatoid arthritis and relation to disease activity.

The prevalence of agalactosyl N-linked oligosaccharides on serum IgG was determined for patients with juvenile onset and with adult rheumatoid arthritis. A significant difference in the prevalence of these structures from age matched controls was found in both types of arthritis. In patients with adult onset rheumatoid arthritis, the results showed a strong correlation between the prevalence of IgG-associated agalactosyl oligosaccharides and disease activity. A correlation between disease activity and agalactosyl structures was also seen in a retrospective analysis of serial IgG samples from patients with juvenile onset disease. The finding that childhood onset arthritis and adult rheumatoid arthritis share a defect of glycosylation of serum IgG suggests that there may be a greater similarity between these two varieties of rheumatoid arthritis than has been hitherto considered. The observation that the incidence of agalactosyl oligosaccharides on IgG fluctuates with disease activity provides indirect evidence for a seminal role for this change of glycosylation in the inflammatory process which, in rheumatoid arthritis, is focused on the synovial tissues and results in bone erosions and joint destruction.

Adolescent

Phenotypic characteristics of cells involved in induced suppression to murine experimental autoimmune thyroiditis.

Suppression of induced experimental autoimmune thyroiditis can be consistently transferred with spleen cells to syngeneic recipients, provided they are first treated with 200 rads irradiation. Treatment with anti-Thy-1 in vivo immediately prior to transfer abrogates the suppression, while depleting B cells has no effect. The in situ induced tolerance can be prevented by treatment with monoclonal antibodies to the Ly-1 or L3T4 molecules either prior to or post tolerization. Anti-Ly-2 treatment has no effect. In the transfer, again treatment of donors with anti-L3T4 prior to transfer prevents the demonstration of suppression in the recipients, while anti-Ly-2 does not affect suppression. These data suggest that the suppression is being mediated either by a CD4+ T suppressor cell or a CD4+ suppressor inducer cell. Preliminary experiments do not support the possibility of a CD8+ suppressor cell being activated in the recipient.

Animals

An investigation of the nature of induced suppression to experimental autoimmune thyroiditis.

When mice are pretreated with soluble mouse thyroglobulin (MTg), subsequent induction of autoantibodies in experimental allergic thyroiditis (EAT) is suppressed. This suppression can be reproducibly transferred to low-level irradiated syngeneic recipients and is specific for MTg. Injection of normal cells does not reverse this tolerance, also indicative of an active suppression. Neither can the induced unresponsiveness be overcome by immunization with cross-reactive xenogeneic Tg; although antibodies are formed which will bind to MTg, these are not to epitopes to which antibodies are normally formed on immunization or towards which tolerance is induced. This implies that tolerance might be induced at least at the B-cell level, a view supported by the inability of DNP to provide a new carrier to break tolerance when conjugated to MTg. The poorer response to DNP in these animals also suggests anergy of the MTg-specific T helpers.

Animals

Epitope specificity of spontaneous and induced thyroglobulin autoantibodies in the rat.

We have investigated the epitope specificities of rat thyroglobulin (Tg) autoantibodies arising either spontaneously in BB hybrid and BB rats or following induction in normal rats with thyroglobulin and adjuvant. Using a panel of thyroglobulins from different animal species it was possible to identify three different patterns of reactivity. These were: 1) recognition of all species of thyroglobulin; (2) recognition restricted to rat and mouse thyroglobulins and 3) recognition biased towards dog, rat and mouse thyroglobulins. Furthermore, using human thyroglobulin manifesting different levels of iodination, it was possible to show that sera with recognition pattern 1 recognized the iodination site of thyroglobulin and that this was inhibitable by thyroxine. Taken together these data provide evidence of restricted epitope recognition by Tg autoantibodies in the rat.

Animals