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Biomedical subjects

G Benichou

Publications and source records attributed to G Benichou.

At least 37 records · Page 2Linked to original sources

Indirect T-cell allorecognition: perspectives for peptide-based therapy in transplantation.

Indirect allorecognition is an important component of allotransplant rejection. Although the initial indirect alloresponse is limited to a few dominant determinants on donor major histocompatibility complex (MHC) molecules, subsequent spreading to additional determinants on recipient and donor antigens is common. Gilles Benichou and colleagues discuss the mechanisms by which immunodominance is acquired or disrupted in indirect alloresponses, and examine the implications for the design of peptide-based selective immunotherapy in transplantation.

Animals↗

T cell tolerance is influenced by concomitant T cell recognition of cross-reactive self-peptides.

Although the current dogma of T cell recognition stresses its exquisite specificity, T cell clones selected for a given peptide can recognize other sequentially or structurally related peptides. Here, we have examined the immunogenicity and tolerogenicity of various self-peptides derived from region 61-80 of different MHC class I proteins co-expressed in the same mouse. Following immunization of B10.A mice (K(k), A(k), E(k), L(d), D(d)) with self-L(d) 61-80 peptide, vigorous MHC class II-restricted T cell proliferation was elicited after restimulation with either the immunogen or with self-K(k) 61-80 but not with self-D(d) 61-80. Furthermore, adult B10.A mice, tolerized with L(d) 61-80 prior to immunization with L(d) 61-80 did not respond to challenge with L(d) 61-80 and the cross-reactive K(k) 61-80. However, following K(k) 61-80 immunization, L(d) 61-80-tolerized mice responded to K(k) 61-80 but not to L(d) 61-80. Thus, tolerance induction to L(d) 61-80 resulted in the elimination/inactivation of L(d) 61-80-reactive T cells including the subpopulation that cross-reacted with K(k) 61-80. However, T cells that recognized K(k) 61-80 exclusively were preserved. Moreover, we showed that immunization with K(k) 61-80 resulted in tolerance breakdown to the cross-reactive, dominant self-peptide D(b) 61-80 in B10.A(4R) mice (K(k), A(k), L(d),D(b)). Together, these results show that the autoimmune T cell repertoire is influenced by the concomitant recognition of different cross-reactive self-peptides within the same individual.

Amino Acid Sequence↗

Induction of T cell responses to a self-antigen following allotransplantation.

T cell tolerance to self-antigens is established through the recognition by immature T cells of dominant self-peptides presented in association with self-MHC molecules in the developing thymus (negative selection). The self-peptide Dd 61-80 is dominant in syngeneic BALB/c mice (H2d). T cell tolerance to Dd 61-80 in this mouse strain resulted in the absence of T cell proliferation following in vivo priming with Dd 61-80 peptide. Here, we show that transplantation of BALB/c mice with allogeneic B10.A (H2a) splenocytes led to an autoimmune T cell response toward the dominant self-peptide Dd 61-80. No T cell responses to Dd 61-80 peptide were observed after transplantation of C57BL/6 (H2b) splenocytes into BALB/c recipients. In addition, we provide evidence indicating that the breakdown of tolerance to Dd 61-80 self-peptide resulted from the presentation of the donor crossreactive peptide Kk 61-80 at the surface of recipient antigen-presenting cells. Taken together, our results suggest that following allotransplantation, T cell responses to donor antigens could spread to crossreactive determinants on self-proteins, thus perpetuating and amplifying the rejection process and presumably initiating tissue-specific autoimmune disorders.

Amino Acid Sequence↗

Self determinant selection and acquisition of the autoimmune T cell repertoire.

Autologous proteins are continuously processed and presented in the form of peptides associated with self major histocompatibility (MHC) molecules at the surface of antigen-presenting cells for interaction with autoreactive T cells. During thymic selection, the presentation of self peptides is an essential element in the establishment of the T cell repertoire. Developing T cells which recognize self peptide/self MHC complexes with sufficient affinity are clonally deleted. However, we and others have recently demonstrated that a variety of self peptides, despite their high binding affinity to MHC molecules, never reach the threshold of presentation to ensure negative selection (cryptic self peptides). This mechanism may have been selected to avoid excessive purging of T cell repertoire during ontogeny. However, T cells directed to cryptic self determinants represent a continuous threat for the initiation of autoimmunity in adults. Supporting this view, recent studies have documented the involvement of cryptic self peptide presentation in different autoimmune diseases. In this article, we examine the factors that govern the selection of self peptides for presentation to autoreactive T cells in vivo and discuss their contribution to both the induction and the maintenance of self tolerance. In addition, we analyze the mechanisms by which the hierarchy of determinants on a self protein can be disrupted, thereby leading to the presentation of previously cryptic self peptides and the induction of an autoimmune T-cell-mediated process.

Animals↗

Direct evidence for in vivo induction of CD8+ cytotoxic T cells directed to donor MHC class I peptides following mouse allotransplantation.

There is accumulating evidence indicating that the T cell response to donor major histocompatibility complex (MHC) peptides plays a crucial role in graft rejection. We and others previously demonstrated the involvement of MHC class-II-restricted recognition of donor MHC class I and II peptides by alloreactive CD4+ T helper cells in graft rejection. Here we studied the in vivo induction of CD8+ cytotoxic T lymphocytes (CTL) directed to donor MHC class I peptides following allotransplantation in the mouse. To address this question, BALB/c irradiated splenocytes (H-2d) (Kd, A(d), E(d), Ld, Dd) were injected into Ld-deficient BALB/c-dm2 (dm2) mutant mice (Kd, A(d), E(d), -, Dd). Nine days after allogeneic cell transplant, recipient lymph node T cells were tested for cytolytic activity using peritoneal macrophages as targets. We observed that in addition to BALB/c targets, dm2 macrophages could also be lysed but only when incubated with a dominant peptide on donor Ld molecule, Ld 61-80. This response was abolished by anti-CD8 but not anti-CD4 monoclonal antibodies. In addition, after immunization of dm2 mice with the peptide Ld 61-80, alloreactive CTL were generated in vivo and shown to destroy allogeneic donor BALB/c target cells in the absence of exogenously added peptide. We conclude that after allotransplantation, concomitant in vivo priming of alloreactive CD8+ CTL by donor MHC class I peptides occurs through both direct and indirect pathways of allorecognition.

Animals↗

Presentation of a self-peptide for in vivo tolerance induction of CD4+ T cells is governed by a processing factor that maps to the class II region of the major histocompatibility complex locus.

Self-proteins are regularly processed for presentation to autoreactive T cells in association with both class I and class II major histocompatibility complex (MHC) molecules. The presentation of self-peptides plays a crucial role in the acquisition of T cell repertoire during thymic selection. We previously reported that the self-MHC class I peptide Ld 61-80 was immunogenic in syngeneic B10.A mice (H-2a). We showed that despite its high affinity for self-MHC class II molecules, Ld 61-80 peptide failed to induce elimination of autoreactive CD4+ T cells, presumably due to incomplete processing and presentation in the B10.A's developing thymus (cryptic-self peptide). In this report, we showed that the cryptic phenotype was not an intrinsic property of the self-peptide Ld 61-80 since it was found to be naturally presented and subsequently tolerogenic in BALB/c mice (H-2d) (dominant self-peptide). In addition, the self-peptide Ld 61-80 was found to be immunogenic in different H-2a mice while it was invariably tolerogenic in H-2d mice regardless of their background genes. We observed that Ld 61-80 bound equally well to H-2d and H-2k MHC class II molecules. Also, no correlation was found between the quantity of self-Ld protein and the tolerogenicity of Ld 61-80. Surprisingly, Ld 61-80 was not naturally presented in (H-2d x H-2a) F1 mice, indicating that the H-2a MHC locus contained a gene that impaired the presentation of the self-peptide. Analyses of T cell responses to the self-peptide in several H-2 recombinant mice revealed that the presentation of Ld 61-80 was controlled by genes that mapped to a 170-kb portion of the MHC class II region. This study shows that (a) endogenously processed self-peptides presented by MHC class II molecules are involved in shaping the CD4+ T cell repertoire in the thymus; (b) The selection of self-peptides for presentation by MHC class II molecules to nascent autoreactive T cells is influenced by nonstructural MHC genes that map to a 170-kb portion of the MHC class II region; and (c) the MHC locus of H-2a mice encodes factors that prevent or abrogate the presentation by MHC class II molecules of the self-peptide Ld 61-80. These findings may have important implications for understanding the molecular mechanisms involved in T cell repertoire acquisition and self-tolerance induction.

Amino Acid Sequence↗

Immunogenicity and safety of a new inactivated hepatitis A vaccine in a comparative study.

A multicentre, controlled, randomised, open, comparative trial including 839 healthy adult volunteers was carried out in order to compare the immunogenicity and reactogenicity of two vaccines against hepatitis A virus (HAV) during primary immunization and after booster injection. The first vaccine was produced by Pasteur Mérieux (PM), and the second vaccine by Smith-Kline Beecham (SKB). The vaccination schedule consisted of 2 doses (months 0, 6) for PM and 3 doses (months 0, 1, and 6) for SKB. Two weeks after the first dose, the seroconversion rates among initially HAV seronegative subjects (n = 608) were 93.4% and 76.1% for the PM and SKB vaccines, respectively, the corresponding geometric mean titres (GMTs) were 59.0 mIU/ml versus 30.8 mlU/ml (modified RIA HAVAB assay, Abbott Laboratories). Two months after the beginning of immunization (one dose versus two doses) the GMTs were 138.4 and 161.6 mlU/ml, respectively. At month 7, the seroconversion rates were 100% for both vaccines, and the GMTs were 4,189 and 3,163 mlU/ml, respectively. After the first dose of vaccine, 24.6% and 19.6% of the PM and SKB vaccines reported local reactions. The rates for systemic reactions were 27.2% and 25.0%, respectively. Lower rates for local and systemic reactions were seen after booster injections and statistical differences were not observed between the two vaccines. The study also demonstrated that vaccination was as well tolerated in subjects with anti-HAV antibodies as in HAV seronegative subjects. Logistic regression analysis revealed a significant vaccine effect on seroconversion rates only at week 2 (P < 10(-4). The same conclusions were drawn from the analysis of GMT by multivariate regression.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Limited T cell response to donor MHC peptides during allograft rejection. Implications for selective immune therapy in transplantation.

Previously, we have demonstrated that during allograft rejection, MHC molecules of the donor are processed and presented to alloreactive CD4+ T lymphocytes in the form of peptides associated with the MHC class II molecules of the recipient. There is an increasing body of evidence that this indirect pathway of allorecognition may play a major role in allograft rejection. Herein, we have used a series of overlapping MHC peptides progressing along the sequence of the donor MHC molecule in single residue steps. We have mapped all potential MHC Ag determinants to which T cell responses could be generated after s.c. injection of allogeneic splenocytes. We have shown that splenic T cell proliferative responses to the beta 1 domains of donor Ak, Ad, and A(s) mouse MHC class II molecules were directed toward a single immunodominant determinant in each of three donor/recipient combinations. Interestingly, after allogeneic spleen cell transplantation, an additional determinant on donor MHC could be detected in the draining lymph nodes. This result shows that the fine specificity of T cell response to donor transplantation Ags can differ between lymphoid organs. Then, we investigated whether limitation of T cell response to donor MHC peptides applies to the clinical situation of a graft. We have shown that after an allogeneic skin graft, self-restricted alloreactive T cells proliferated to the same determinant on the donor MHC molecule. These results indicate that immune intervention, such as tolerance induction to the dominant T cell determinant on donor MHC molecules, may be developed for the prevention of allograft rejection.

Amino Acid Sequence↗

Inhibition of interferon-gamma-mediated immune functions by oligonucleotides. Suppression of human T cell proliferation by downregulation of IFN-gamma-induced ICAM-1 and Fc-receptor on accessory cells.

Recent progress in gene therapy may provide a new strategy for prevention of allograft rejection. Oligonucleotides have been shown to inhibit specific gene transcription in both cell-free and living-cell systems. In our previous studies, a 26-mer oligonucleotide (T2) designed to form a triple helix with the X/X2 box promoter region of human MHC class II (DRA) gene was shown to prevent the induction by IFN-gamma of HLA-DR molecules. Here, we show that this oligonucleotide downregulates two other IFN gamma-inducible molecules, the adhesion molecule ICAM-1 and the Fc receptor for IgG on the surface of human cells. T2 has no effect on TNF alpha- and IL-1-mediated ICAM-1 upregulation, showing its specificity for IFN gamma. T2 oligonucleotide is shown to inhibit IFN gamma-mediated induction of Fc receptor on human blood monocytes as assessed by flow cytometry. Furthermore, pretreatment of monocytes with T2 resulted in suppression of anti-CD3-mediated peripheral blood T cell proliferation. The presented data suggest that oligonucleotide T2 blockade of IFN gamma-induction of different immune receptors on accessory cells is associated with inhibition of T cell proliferative responses.

Antigen-Presenting Cells↗

Disruption of the determinant hierarchy on a self-MHC peptide: concomitant tolerance induction to the dominant determinant and priming to the cryptic self-determinant.

The presentation of self-peptides in a self-restricted manner plays a critical role in the complex positive and negative selective process of T cell recognition of self-determinants. The population of determinants comprises (i) a dominant set which is efficiently presented and induces clonal elimination or inactivation of the corresponding autoreactive T cells, and (ii) a cryptic set which is not processed efficiently enough to reach the threshold of presentation to make an impact on the T cell repertoire during thymic selection. Here we have studied a self-MHC peptide, Ld 61-85, which as shown in earlier work was able to induce vigorous T cell proliferation in syngeneic animals. Despite the fact that this peptide as a whole is 'cryptic', the fine specificity of the class II restricted response was complex, in that there were three distinct and overlapping T cell determinants: the dominant determinant, Ld 65-80, flanked by two cryptic determinants, Ld 61-75 and Ld 73-85, all of which compete for stimulating in vivo autoreactive T cell proliferative responses. The hierarchy of these determinants bears an interesting relationship to tolerance. Ld 61-85 or Ld 61-80 priming induces proliferation only to Ld 65-80; likewise, tolerance induction to Ld 61-80 prevents elicitation of a subsequent response to Ld 61-80 or Ld 65-80 in the local lymph nodes. However, in the Ld 61-80 tolerant mice, in vivo challenge with Ld 61-80 induces a strong T cell proliferative response directed towards cryptic Ld 61-75.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Dominance and crypticity of T cell antigenic determinants.

In this review, we first consider the inherent structural constraints for binding of a peptide to MHC class II molecules. Such parameters at the site of TCR recognition are dependent upon the efficient generation of the antigenic determinant during natural processing of the whole protein antigen. Strikingly, only a minor fraction of such potential determinants on an antigen are presented in an immunodominant manner, while the remaining peptides are silent (cryptic). Why one determinant is selected while the majority are neglected is still unresolved, but we review the experimental evidence pertaining to this choice. Thus, features of the antigen remote from the actual determinant can either steer processing toward disclosure or revelation of a determinant, or interfere with the binding of peptides to MHC (hinderotopy). The evidence is reviewed for "MHC-guided processing," where the unfolding antigen binds at an early stage to an MHC molecule through its most available and affine agretope and then is trimmed down to final size, while the rest of the molecule, including cryptic determinants, is discarded. Different MHC molecules can compete for determinants at an early stage of processing when the antigen is close to its original length. There are shifts in the hierarchy of display of dominant and cryptic determinants, and these shifts relate to local inflammatory states, to changes in the state or composition of the APC population, and to aspects of exogenous vs endogenous processing. The impact of this differential display of determinants on tolerance and autoimmunity is discussed.

Animals↗

Donor major histocompatibility complex (MHC) peptides are presented by recipient MHC molecules during graft rejection.

Peptides from donor major histocompatibility complex (MHC) molecules were examined for their activation of allogeneically primed T cells. After immunization with either allogeneic spleen cells or a skin allograft, primed T cells proliferate in response to peptides derived from polymorphic regions of alpha and beta chains of class II allo-MHC molecules. The results demonstrate that presentation of donor-MHC peptides by host-derived antigen-presenting cells is a common event in vivo. Thus, self-restricted T cell recognition of processed alloantigens may play a critical role in transplantation. An in-depth understanding of this response may result in the development of additional molecular therapies to combat allograft rejection.

Animals↗

Respiratory burst in human B lymphocytes. Triggering of surface Ig receptors induces modulation of chemiluminescence signal.

B lymphocytes have been shown to proliferate and release oxygen metabolites when surface Ig is cross-linked and when stimulated with phorbol ester. Biochemical evidence has been provided for the presence of a superoxide generating system in B cells, which seems to be identical to the well-characterized NADPH-oxidase of phagocytes. In this report, we show that normal and EBV-transformed B cells produce superoxide anions after stimulation with phorbol ester and when surface Ig was cross-linked, as detected by lucigenin-dependent chemiluminescence. Anti-surface IgG antibodies induced a significant respiratory burst whereas those directed against surface IgM had no effect on B cell oxidative metabolism. Prestimulated B lymphocytes responded to further triggering by the same or another ligand. Pretreatment with Staphlococcus aureus Cowan I strain (SAC) or anti-IgM antibodies resulted in complete unresponsiveness to subsequent SAC or anti-IgG stimulation, but it did not affect PMA- and ionomycin-mediated B cell chemiluminescence. In contrast to preincubation with anti-IgM antibodies, the pretreatment of B cells with SAC induced a transient inhibitory effect on B cell signaling. In fact, SAC-pretreated B lymphocytes could be restimulated with the same ligand when blast cells were isolated. Furthermore, a 24-h incubation of the pretreated B cells in the absence of SAC completely restored the SAC-mediated respiratory burst. These results suggest that two distinct mechanisms may account for SAC- and anti-IgM-induced inhibition: a transient and reversible modulation of surface Ig, induced by SAC, and a long-lasting desensitization of the surface Ig receptors, respectively. These findings may have interesting implications for understanding the transduction of negative signals in B lymphocytes.

Antibodies, Anti-Idiotypic↗

The dominant self and the cryptic self: shaping the autoreactive T-cell repertoire.

Deletion of autoreactive T cells during the induction of self tolerance has been directly demonstrated. However, it is still relatively easy to detect self reactivity in normal healthy animals. In this article, Guy Gammon, Eli Sercarz and Gilles Benichou speculate on which T cells may escape tolerance induction and discuss how these cells could subsequently be involved in autoimmunity.

Animals↗

Immunogenicity and tolerogenicity of self-major histocompatibility complex peptides.

Mechanisms involved in self-antigen processing and presentation are crucial in understanding the induction of self-tolerance in the thymus. We examined the immunogenicity of determinants from major histocompatibility complex (MHC) molecules that are expressed in the thymus and have tested peptides derived from the polymorphic regions of class I and class II molecules. We found that two peptides corresponding to NH2 termini of the class II alpha and beta chains (Ak alpha 1-18 and Ak beta 1-16) could bind to self-Ak molecules with high affinity and, surprisingly, were immunogenic in that they could elicit strong proliferative T cell responses in B10.A mice (Ak, Ek). Neonatal injection of peptide Ak beta 1-16 resulted in complete unresponsiveness to this peptide at 8 wk of age showing that these T cells were susceptible to tolerance induction. We have also tested certain class I MHC peptides and showed that some can interact efficiently with class II MHC peptides to induce an autoreactive T cell proliferative response. Among these class I peptides is one (Dd 61-85) that has the capacity to bind to self-Ia without being immunogenic, and therefore represents an MHC determinant that had induced thymic self-tolerance. We conclude that some self-MHC molecules can be processed into peptides that can be presented in the context of intact class II molecules at the surface of antigen-presenting cells. Autoreactive T cells recognizing optimally processed self-peptide/MHC complexes are eliminated during development, whereas other potentially autoreactive T cells escape clonal inactivation or deletion. Incomplete tolerance to self-antigens enriches the T cell repertoire despite the fact that such T cells may eventually become involved in autoimmune disease.

Amino Acid Sequence↗