Search PubMed⌕ Search

Biomedical subjects

C Clayberger

Publications and source records attributed to C Clayberger.

At least 37 records · Page 2Linked to original sources

Immunologic tolerance: tailored antigen.

In summary, synthetic peptides corresponding to linear sequences of HLA class I molecules can inhibit T-cell responses in vitro and in vivo. These peptides induce immunologic tolerance by binding to hsp-70 family members, causing an increase in intracellular calcium, and down-regulating the nuclear factor of activated T cells, NF-AT. We suggest that heat shock proteins may function as novel immunophilins (Fig 2). Like cyclophilins and FK 506 binding proteins, heat shock proteins are ubiquitous, are involved in protein folding and trafficking, and bind exogenous drugs. Cyclosporine and FK 506 exert immunosuppressive effects by binding immunophilins, which as a result interrupt the phosphatase activity of calcineurin. Although the precise pathways involved in the synthetic HLA peptide effects are not as well worked out, it seems likely that peptide binding to heat shock protein is disrupting normal events in T-cell activation, giving rise to an apparently permanent state of anergy.

Amino Acid Sequence↗

Immunomodulation by HLA class I-derived peptides.

Synthetic peptides corresponding to linear sequences of HLA class I molecules have profound immunomodulatory effects in vitro and in vivo. Recent clinical trials confirm their potential as the therapeutics for transplantation and for a variety of immune-mediated diseases. These peptides also inhibit NK responses in vivo in humans. The importance of the carboxy end of the alpha 1 alpha helix in negative signaling to both T cells and NK cells focuses attention on new targets for immunotherapy.

Amino Acid Sequence↗

In vivo studies of the maintenance of peripheral transplant tolerance after cyclosporine. Radiosensitive antigen-specific suppressor cells mediate lasting graft protection against primed effector cells.

Cellular mechanisms responsible for maintenance of peripheral transplant tolerance in a rodent model were evaluated. Donor-specific tolerance was established in ACI rats given a vascularized heterotopic cardiac allograft followed by a 10-day course of cyclosporine. Tolerance was associated with a reduction in donor-specific cytotoxic T lymphocyte precursors and the presence within the spleen of cells capable of transferring suppression in adoptive transfer assays. Experiments using thymectomized animals revealed that the establishment and maintenance of tolerance occurred peripherally, independently of the thymus. Adoptive transfer experiments demonstrated that ongoing graft tolerance was mediated by suppressor cells that were antigen-restricted, radiosensitive, and capable of preventing allograft rejection by naive as well as sensitized cells in vivo. Studies designed to disrupt tolerance demonstrated a remarkable durability of graft protection once established, and give insight into the identity and mechanism of action of suppressor cells generated in this model.

Animals↗

Prolongation of allogeneic heart graft survival in rats by administration of a peptide (a.a. 75-84) from the alpha 1 helix of the first domain of HLA-B7 01.

Allospecific T lymphocytes mediate graft rejection through specific, direct or indirect, recognition of processed determinants of foreign MHC class I molecules. Small synthetic peptides derived from highly conserved sequences of the alpha 1 helix of the first domain of certain MHC class I molecules have been shown to inhibit CTL responses in vitro and to prolong graft survival in rats when combined with subtherapeutic doses of cyclosporine. Here, we report that the survival of LEW.1W heart allografts was significantly prolonged when transplanted into congenic LEW.1A recipients treated only with a peptide corresponding to residues 75-84 of the human HLA-B7-01 molecule (B7.75-84) before transplantation. The experimental value for mean survival time (+/- SD) in untreated recipients was 13 +/- 6 days and in peptide-treated recipients was 42 +/- 27 days (P < 0.002). A total of 64% of treated recipients had a functioning graft at 30 days, while grafts were rejected in all rats belonging to the control group within this time. Within graft-infiltrating leukocytes (GIL) in B7.75-84-treated animals, the proportion of T cells was significantly lower and that of CD5-/TCR alpha beta-/CD16-/CD8+ and MHC class II+ cells concomitantly increased, as compared with nontreated animals. GIL from B7.75-84-treated animals also exhibited a dramatic decrease (approximately 70%) of allospecific and spontaneous (NK) cytotoxic activity, whereas their proliferation and IL-2 production were similar in both experimental groups. The IFN-gamma, IL-2, and IL-10 mRNA levels from GIL from peptide-treated recipients were similar to levels of controls, reflecting a state of activation of GIL. Perforin and granzyme A mRNA, the level of which may be modulated parallel to impaired cytotoxic functions, were at similar levels in both experimental groups. These data demonstrate that B7.75-84 significantly prolongs graft survival in LEW.1A rats when given as a single agent and suggests that a specifically decreased cytotoxic response (allospecific and spontaneous) plays a major role.

Abdomen↗

Prolongation of skin allograft survival in mice following administration of ALLOTRAP.

Recently, Clayberger et al. demonstrated that ALLOTRAP, small synthetic peptides derived from a conserved region of the alpha 1 helix of certain HLA class I molecules, inhibited human CTL responses in vitro. In rats, ALLOTRAP 07 therapy combined with a subtherapeutic dose of cyclosporine led to the permanent acceptance of heart allografts. In the present study, the effect of ALLOTRAP on the survival of skin allografts in mice was studied. The tail skin of male C57B1/6 (H-2b) mice was grafted on the back of male CBA (H-2k) recipients. In untreated animals, the skin graft was rejected after 11.6 +/- 1.13 days (MST +/- SD). Cyclosporine administered orally for 5 days after transplantation prolonged graft survival to 13.1 +/- 2.13 days. ALLOTRAP 2702 prolonged graft survival to 16.57 +/- 2.15 days when administered orally for five days posttransplantation and to 18.86 +/- 0.38 when administered intraperitoneally until rejection. Thus, ALLOTRAP peptides derived from human MHC class I sequences, in addition to inhibiting human T cell responses in vitro, also prolong allograft survival in rats and mice.

Administration, Oral↗

Gamma delta T cell recognition of tumor Ig peptide.

Although gamma delta T cells have been postulated to act as a surveillance mechanism that eliminates transformed or otherwise damaged cells, little is known about tumor recognition by gamma delta T cells, including the Ags that are recognized and the molecules that present them. Previously, we described human gamma delta CTL that recognize the autologous B cell lymphoma. Here we report that these gamma delta CTL lyse heterologous cells transfected with the tumor Ig lambda chain gene. Furthermore, the lambda chain is recognized as processed peptide in an Id-specific manner. T cell recognition does not involve classical MHC molecules, but it could be blocked by Abs directed against the heat shock protein grp75. These findings show a specific gamma delta T cell response to a highly polymorphic Ag such as tumor Id and implicate heat shock protein as a molecule required for recognition.

Amino Acid Sequence↗

Novel tumor-associated accessory molecules involved in the gamma/delta cytotoxic T-lymphocyte-Burkitt's lymphoma interaction.

BACKGROUND: Tumor specific cytotoxic T lymphocytes (CTL) recognize antigen via the T-cell receptor (TCR). In addition, recognition requires accessory molecules involved in adhesion and signal transduction. The authors previously have characterized an autologous, Burkitt's lymphoma specific CTL line that uses the gamma-delta TCR to recognize antigen in a nonclassical context. The current study was undertaken to identify novel accessory molecules involved in this unusual TCR-tumor cell interaction. METHODS: A panel of monoclonal antibodies was generated against a Burkitt's lymphoma cell line and was screened for inhibition of autologous, tumor specific, cytolysis by a gamma-delta CTL line. Proteins identified by these monoclonal antibodies were further characterized by fluorescent-activated cell sorter analysis, Western blot and immunoprecipitation. RESULTS: Three known (CD5, CD43, and CD11a/CD18) and three novel (BAM-1, BAM-2, and BAM-3) cell surface molecules involved in the gamma-delta CTL-Burkitt's lymphoma interaction were identified and characterized. CONCLUSIONS: This study identifies and provides a preliminary characterization of three novel Burkitt's lymphoma-associated molecules involved in the gamma-delta CTL-tumor cell interaction and demonstrates that CD5, CD43, and CD11a/CD18 are involved in this interaction. It is likely that other unidentified accessory molecules are also involved in this and other effector cell-tumor interactions. Identification of such molecules may be useful in the design of new immunotherapeutic approaches.

Animals↗

Overlap in the repertoires of peptides bound in vivo by a group of related class I HLA-B allotypes.

BACKGROUND: Polymorphism among class I molecules of the major histocompatibility complex (MHC) confers allotypic specificity on the peptides that these molecules bind and present to cytotoxic T lymphocytes. Evolution of new human HLA class I alleles usually involves gene recombination events that replace a segment of one allele with the homologous region of another. In this study, the impact of these evolutionary changes has been assessed by comparison of the peptide-binding specificities of six related HLA-B allotypes. RESULTS: Endogenous peptides bound by HLA-B*5401, HLA-B*5501, HLA-B*5502, HLA-B*5601, HLA-B*6701 and HLA-B*0702 were characterized. Despite differing by 1-9 of the amino-acid residues comprising their peptide-binding sites, all these allotypes share a dominant preference for peptides that have proline at position 2. Polymorphism results in differing selection of carboxy-terminal and secondary anchor residues, but the peptide-binding specificities are sufficiently similar that there is overlap in the repertoires of peptides bound by these allotypes. Complete sequence determination of individual peptides revealed four that could be isolated from two or more allotypes. Members of the closely related HLA-B22 family--HLA-B*5401, HLA-B*5501, HLA-B*5502 and HLA-B*5601--show only minor differences in their peptide-binding specificities. This marked similarity is reflected at the functional level, as alloreactive cytotoxic T lymphocytes generated against HLA-B*5401 and HLA-B*5501 exhibited cross-reactive recognition. CONCLUSION: The isolation of identical endogenously bound peptides from six HLA-B allotypes demonstrates overlap in the repertoires of peptides bound in vivo by different allotypes. We speculate that the shared preference for binding peptides with proline at position 2 reflects a selective pressure to retain this specificity, which may be based upon peptide availability in vivo. Characterization of the overlap between the repertoires of peptides bound by HLA-B allotypes could simplify the development of peptide-based vaccines that are targeted to cytotoxic T cells, as single peptides would be effective for humans of different HLA types.

Amino Acid Sequence↗

HLA-derived peptides as novel immunotherapeutics.

Soluble forms of HLA may be natural immunoregulatory molecules and may explain the "transfusion effect" seen in transplant patients in the precyclosporine era. Synthetic peptides corresponding to short linear sequences of HLA molecules have inhibitory effects on human T lymphocytes in vitro and cause tolerance induction in a rat heterotopic heart transplant model. Recent studies indicate that a subset of these peptides causes an increase in intracellular calcium which appears to account for T cell unresponsiveness and tolerance induction. The peptides bind to members of the heat-shock protein 70 family in a specific manner, depending upon peptide sequence. These studies provide a mechanism to explain the biologic activities of these new immunotherapeutic reagents.

Animals↗

Immunosuppressive peptides corresponding to MHC class I sequences.

The induction of tolerance is a long-standing goal in transplantation. Intact MHC molecules, or fragments of them, are being used to render T cells unresponsive both in vitro and in vivo. Elucidation of the mechanisms underlying the effects of these treatments should aid the design of novel therapies for transplantation.

Crystallization↗

Analysis of bronchoalveolar lavage from human lung transplant recipients by flow cytometry.

Bronchoalveolar lavage (BAL) cells and peripheral blood leucocytes (PBL) from 24 lung transplant recipients were analysed for leucocyte subsets and expression of cell surface antigens. Total and differential white cell counts were performed on BAL, and lymphocyte subsets were evaluated in both BAL and peripheral blood. Measurement of immunofluorescence by flow cytometry was used to assess the percentage of: T cells (CD3+); T-helper cells (CD4+); T-cytotoxic/suppressor cells (CD8+); and activated lymphocytes (HLA-DR+). Lymphocyte subsets in BAL demonstrated marked differences to those in blood. A lower percentage of CD3+ and CD4+ lymphocytes were found in BAL, whereas CD8+ cells were more prevalent in BAL than in PBL. The mean CD4:CD8 ratio was significantly lower in BAL (1:1) than in blood (2.1:1). In the absence of pulmonary infection, there was a trend for a lower CD4:CD8 ratio in BAL associated with acute rejection (1.1:1) and obliterative bronchiolitis (1:1), when compared to the group with no evidence of rejection (1.4:1). In the absence of pulmonary rejection, pulmonary infection was associated with a marginally lower CD4:CD8 ratio in BAL (0.7:1), than when infection was absent (1.4:1). This difference was more evident in cases of cytomegalovirus (CMV) infection with a mean CD4:CD8 ratio of 0.3:1, compared to 1.5:1 in the absence of CMV disease (P < 0.05).

Adolescent↗

Human leukocyte antigen-derived peptides as novel immunosuppressives.

Synthetic peptides corresponding to linear sequences of HLA class I and class II molecules can potently inhibit T lymphocytes responses both in vitro and in vivo. The class I and class II peptides studied to date seem to function by different mechanisms. Nevertheless, several different peptides have been shown to potently induce T cell anergy. Opelz and Terasaki first demonstrated that blood transfusions improved graft survival in transplant patients (19). Data from several sources indicate that blood transfusions are immunosuppressive in: 1) increasing infections in trauma patients who have received transfusions (20), 2) increasing metastases and/or relapses in cancer patients who have been transfused (21), and 3) remissions of autoimmune diseases associated with pregnancy and/or transfusion (22). It is likely that the active constituent of blood transfusions is soluble HLA molecule (23,24). Liver transplants, which are profoundly immunosuppressive in themselves, produce large amounts of soluble HLA (25). Both B and T lymphocytes in culture secrete soluble HLA (26). We hypothesize that soluble HLA is a natural immunoregulatory molecule involved in dampening of the immune response, but, even if this is not the case, synthetic peptides corresponding to HLA sequences have profound effects on T lymphocytes and may prove to be effective for the induction of clinical tolerance in transplant patients.

Animals↗

Peptides corresponding to the CD8 and CD4 binding domains of HLA molecules block T lymphocyte immune responses in vitro.

CD4 and CD8 are cell surface glycoproteins that serve as co-receptors for Ag with the TCR. Recent studies have shown that both CD4 and CD8 interact with conserved regions of MHC class II and class I, respectively. To investigate further the roles of CD4 and CD8 in the immune response, we prepared synthetic peptides corresponding to the HLA sequences with which CD4 and CD8 are thought to interact. The peptide corresponding to residues 222 to 235 of the HLA class I heavy chain blocked the differentiation of human CTL precursors into active effect cells but affected neither the ability of PBLs to proliferate in response to mitogen nor the cytotoxic activity of established CTLs. In contrast, the peptide corresponding to residues 134 to 152 of the HLA-DR beta-chain inhibited the differentiation of CTL precursors, the proliferative response of freshly isolated PBL, and the proliferation of an established alloreactive CD4+ T cell clone to Ag. The inhibitory effect of the DR.134-152 peptide on CTL differentiation could be overcome by addition of exogenous IL-2 to the limiting dilution cultures, whereas the effect of the HLA-1.222-235 peptide was unaffected by exogenous IL-2. These results directly demonstrate a functional role for these regions of MHC molecules and underscore the central role of both CD4 and CD8 in the effective initiation of a CTL response.

Base Sequence↗

Tissue-specific differences in the establishment of tolerance. Tolerogenic effects of lung allografts in rats.

With the increasing frequency of transplantation of two or more organs into a single recipient, it has become evident that different organs are rejected with different kinetics. In this study the kinetics of skin, lung, and heart allograft rejection were compared in a rodent model. To study the influence of different allografts on the recipient's immune system, simultaneous or sequential skin, lung, or heart transplants were performed in various combinations, using DA rats as recipients for PVG allografts. Recipients receiving primary allografts were treated postoperatively with ten doses of cyclosporine (CsA) or preoperatively with 4 doses of rabbit antirat thymocyte globulin (ATG). Subsequent transplants were performed a minimum of 40 days later without additional immunosuppression. All primary skin allografts and 60% of primary lung allografts were rejected, while 100% of the heart allografts were accepted indefinitely. Recipients of primary skin allografts rejected subsequent skin, lung, or heart allografts with accelerated kinetics. Recipients of primary heart allografts accepted subsequent skin, lung, and heart allografts indefinitely without further immunosuppression. Surprisingly, animals that had rejected a primary lung allograft accepted subsequent skin or heart allografts indefinitely. Simultaneously transplanted skin and lung allografts were concordantly rejected. However, these animals accepted a subsequent heart allograft indefinitely, suggesting a strong tolerizing effect of lung allografts. Our results indicate that tissue-specific differences are critical, not only in determining acceptance or rejection of a primary allograft but also in determining the fate of subsequent allografts.

Animals↗

Induction of allograft tolerance in rats by an HLA class-I-derived peptide and cyclosporine A.

T cell recognition of MHC molecules initiates a cascade of events resulting in allograft rejection. CTLs damage the graft by targeting nonself-MHC class I molecules. We and others have previously shown that small synthetic peptides corresponding to regions of certain MHC class I molecules can inhibit the CTL response against MHC class I alloantigens in vitro. Here we report that rat heart allografts survived survived indefinitely when transplanted into recipients treated with a synthetic peptide corresponding to residues 75-84 of (B7.75-84) in combination with a subtherapeutic dose of cyclosporine A. Furthermore, this treatment induced long-term donor-specific tolerance that was mediated by anergic cells, indicating that such peptides may have potential as therapeutics for human organ transplantation.

Amino Acid Sequence↗

Prospects for induction of tolerance in renal transplantation.

Immunological tolerance is the ultimate goal of transplantation immunobiology. Current therapies involve nonspecific immunosuppression with concomitant risks for infection, malignancy, and drug-specific side effects. By inducing specific immune unresponsiveness to the graft it should be possible to maintain transplants without the need for chronic drug administration and without the risk of nonspecific immunosuppression. This review highlights recent progress in the understanding of immunological tolerance, with special attention to the long-term prospects for successful induction of tolerance in renal transplant patients.

Age Factors↗