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S P Schoenberger

Publications and source records attributed to S P Schoenberger.

18 recordsLinked to original sources

Stimulation via CD40 can substitute for CD4 T cell function in preventing reactivation of a latent herpesvirus.

Reactivation of latent herpesviruses is a particular problem in immunocompromised individuals, such as AIDS patients, who lack effective CD4 T helper cell function. An important question is whether residual immune defenses can be mobilized to combat such opportunistic infections, in the absence of CD4 T cells. In the present study, we used a mouse model of opportunistic infection to determine whether stimulation via CD40 could substitute for CD4 T cell function in preventing reactivation of a latent herpesvirus. Treatment with an agonistic antibody to CD40 was highly effective in preventing reactivation of latent murine gammaherpesvirus (MHV-68) in the lungs of CD4 T cell-deficient mice. CD8(+) T cells were essential for this effect, whereas virus-specific serum antibody was undetectable and IFN-gamma production was unchanged. This demonstration that immunostimulation via CD40 can replace CD4 T cell help in controlling latent virus in vivo has potential implications for the development of novel therapeutic agents to prevent viral reactivation in immunocompromised patients.

3T3 Cells↗

The roles of MHC class II, CD40, and B7 costimulation in CTL induction by plasmid DNA.

DNA-based vaccines generate potent CTL responses. The mechanism of T cell stimulation has been attributed to plasmid-transfected dendritic cells. These cells have also been shown to express plasmid-encoded proteins and to become activated by surface marker up-regulation. However, the increased surface expression of CD40 and B7 on these dendritic cells is insufficient to overcome the need for MHC class II-restricted CD4(+) T cell help in the priming of a CTL response. In this study, MHC class II(-/-) mice were unable to generate a CTL response following DNA immunization. This deficit in CTL stimulation by MHC class II-deficient mice was only modestly restored with CD40-activating Ab, suggesting that there were other elements provided by MHC class II-restricted T cell help for CTL induction. CTL activity was also augmented by coinjection with a vector encoding the costimulatory ligand B7.1, but not B7.2. These data indicate that dendritic cells in plasmid DNA-injected mice require conditioning signals from MHC class II-restricted T cells that are both CD40 dependent and independent and that there are different roles for costimulatory molecules that may be involved in inducing optimal CTL activity.

Adjuvants, Immunologic↗

Naïve CTLs require a single brief period of antigenic stimulation for clonal expansion and differentiation.

In defense of the host, the immune system must often raise an effective cytotoxic T lymphocyte (CTL) response from a small number of clonal precursors. The degree to which activation stimuli regulate the expansion and differentiation of naïve CTLs, however, remains unknown. Using an engineered antigen-presenting cell (APC) system that allows control over antigenic stimulation, we studied the signaling duration requirements for priming and clonal expansion of naïve CTLs. We found that naïve CTLs become committed after as little as 2 h of exposure to APCs and that their subsequent division and differentiation can occur without the need for further antigenic stimulation of the daughter cells, whether priming is in vitro or in vivo. These data show that after a brief interaction with stimulatory APCs, naïve CTLs initiate a program for their autonomous clonal expansion and development into functional effectors.

Animals↗

Functional cooperation between T helper cell determinants.

The immune response to T helper (Th) cell determinants of a variety of antigens is often poor and limits severely the potential efficacy of current therapeutic measures through vaccination. Here, we report that an immunologically silent tumor determinant can be rendered immunogenic if linked with a dominant determinant of a parasite antigen, suggesting the existence of functional Th-Th cooperation in vivo. This phenomenon could be mimicked in part by signaling either through CD40 to the antigen-presenting cells or through OX40 to the tumor-determinant reactive T cells, with maximal effects obtained by combined anti-CD40 and anti-OX40 treatment in vivo. The data suggest that CD4 T cells reactive with a dominant determinant provide help to other CD4 T cells through up-regulating the costimulatory ability of antigen-presenting cells, in much the same way as help for CD8 cells. CD4 help for CD4 T cells represents a new immunological principle and offers new practical solutions for vaccine therapy against cancer and other diseases in which antigenic help is limiting.

Amino Acid Sequence↗

Cross-presentation of glycoprotein 96-associated antigens on major histocompatibility complex class I molecules requires receptor-mediated endocytosis.

Heat shock proteins (HSPs) like glycoprotein (gp)96 (glucose-regulated protein 94 [grp94]) are able to induce specific cytotoxic T lymphocyte (CTL) responses against cells from which they originate. Here, we demonstrate that for CTL activation by gp96-chaperoned peptides, specific receptor-mediated uptake of gp96 by antigen-presenting cells (APCs) is required. Moreover, we show that in both humans and mice, only professional APCs like dendritic cells (DCs), macrophages, and B cells, but not T cells, are able to bind gp96. The binding is saturable and can be inhibited using unlabeled gp96 molecules. Receptor binding by APCs leads to a rapid internalization of gp96, which colocalizes with endocytosed major histocompatibility complex (MHC) class I and class II molecules in endosomal compartments. Incubation of gp96 molecules isolated from cells expressing an adenovirus type 5 E1B epitope with the DC line D1 results in the activation of E1B-specific CTLs. This CTL activation can be specifically inhibited by the addition of irrelevant gp96 molecules not associated with E1B peptides. Our results demonstrate that only receptor-mediated endocytosis of gp96 molecules leads to MHC class I-restricted re-presentation of gp96-associated peptides and CTL activation; non-receptor-mediated, nonspecific endocytosis is not able to do so. Thus, we provide evidence on the mechanisms by which gp96 is participating in the cross-presentation of antigens from cellular origin.

Adenovirus E1B Proteins↗

Role of antigen-presenting cells in mediating tolerance and autoimmunity.

The mechanisms that determine whether receptor stimulation leads to lymphocyte tolerance versus activation remain poorly understood. We have used rat insulin promoter (RIP)-gp/P14 double-transgenic mice expressing the lymphocytic choriomeningitis virus (LCMV) glycoprotein (gp) on pancreatic beta-islet cells together with T cells expressing an LCMV-gp-specific T cell receptor to assess the requirements for the induction of autoimmunity. Our studies have shown that administration of the gp peptide gp33 leads to the activation of P14-transgenic T cells, as measured by the upregulation of activation markers and the induction of effector cytotoxic activity. This treatment also leads to expansion and deletion of P14 T cells. Despite the induction of cytotoxic T lymphocyte activity, peptide administration is not sufficient to induce diabetes. However, the administration of gp peptide together with an activating anti-CD40 antibody rapidly induces diabetes. These findings suggest that the induction of tolerance versus autoimmunity is determined by resting versus activated antigen-presenting cells.

Animals↗

Melanoma immunotherapy by targeted IL-2 depends on CD4(+) T-cell help mediated by CD40/CD40L interaction.

The induction of tumor-protective immunity against malignancies remains a major challenge in cancer immunotherapy. A novel, humanized anti-ganglioside-GD(2)-IL-2 immunocytokine (hu14.18-IL-2) induced CD8(+) T cells to eradicate established pulmonary metastases of B78-D14 murine melanoma, in a process that required help by CD4(+) T cells and was mediated by the CD40/CD40 ligand (CD40L) interaction. The anti-tumor effect was diminished in mice deficient in CD4(+) T-cells. Three lines of evidence show that CD4(+) T-cell help was mediated by CD40/CD40L interaction but not by endogenous IL-2 production. First, the hu14.18-IL-2-induced anti-tumor response is partially abrogated in C57BL/6J CD40L knockout (KO) mice in contrast to C57BL/6J IL-2 KO animals, in which the immunocytokine was completely effective. Second, partial abrogation of the anti-tumor effect is induced with anti-CD40L antibodies to the same extent as with CD4(+) T-cell depletion. Third, a complete anti-tumor response induced by hu14.18-IL-2 can be reconstituted in C57BL/6J CD40L KO mice by simultaneous stimulation with an anti-CD40 mAb. These results suggest that help provided by CD4(+) T cells via CD40/CD40L interactions in our tumor model is crucial for effective immunotherapy with an IL-2 immunocytokine.

Animals↗

CD40 activation in vivo overcomes peptide-induced peripheral cytotoxic T-lymphocyte tolerance and augments anti-tumor vaccine efficacy.

The outcome of antigen recognition by naive CD8+ cytotoxic T lymphocytes (CTLs) in the periphery is orchestrated by CD4+ T-helper cells, and can either lead to priming or tolerization. The presence of T-helper cells favors the induction of CTL immunity, whereas the absence of T-helper cells can result in CTL tolerance. The action of T helper cells in CTL priming is mediated by CD40-CD40 ligand interactions. We demonstrate here that triggering of CD40 in vivo can considerably enhance the efficacy of peptide-based anti-tumor vaccines. The combination of a tolerogenic peptide vaccine containing a minimal essential CTL epitope with an activating antibody against CD40 converts tolerization into strong CTL priming. Moreover, CD40 ligation can provide an already protective tumor-specific peptide vaccine with the capacity to induce therapeutic CTL immunity in tumor-bearing mice. These findings indicate that the CD40-CD40 ligand pair can act as a 'switch', determining whether naive peripheral CTLs are primed or tolerized, and support the clinical use of CD40-stimulating agents as components of anti-cancer vaccines.

Adenovirus E1A Proteins↗

Cross-priming of CTL responses in vivo does not require antigenic peptides in the endoplasmic reticulum of immunizing cells.

It has been proposed that the cross-priming of CTL responses in vivo involves the transfer to host APCs of heat shock protein glycoprotein 96-chaperoned antigenic peptides released from the endoplasmic reticulum (ER) of dying or infected cells. We have tested this possibility directly using TAP-deficient cell lines lacking antigenic ER peptides derived from two model Ags, the human adenovirus type 5 early regions E1A and E1B. Although both proteins were well expressed, the cells were not recognized by E1A- or E1B-specific CTLs unless the relevant epitope was either provided exogenously as a synthetic peptide or targeted to the ER in a TAP-independent fashion. Despite the absence of these ER peptides, the TAP1-/- cells were able to efficiently cross-prime E1A- and E1B-specific CTLs following immunization of syngeneic mice. These results indicate that, although purified peptide/glycoprotein 96 complexes are potent immunogens, the mechanism of CTL cross-priming in vivo does not depend upon antigenic peptides in the ER of immunizing cells.

Adenovirus E1A Proteins↗

Cryptic open reading frames in plasmid vector backbone sequences can provide highly immunogenic cytotoxic T-lymphocyte epitopes.

Murine tumor cells obtained through transfection of expression plasmids carrying activated cellular and/or viral oncogenes constitute formidable tools for immunological tumor research. As reported previously, mouse embryo cells of C57BL/6 origin, transformed by mutated p53 or human papilloma virus type 16 (HPV16), present, at their surface, MHC-bound peptides that are derived from the p53 and the HPV16 E7 oncoproteins, respectively, which can serve as a target for a highly effective antitumor T-cell response. Here, we describe the identification, through molecular cloning, of an additional, highly immunodominant peptide that is presented by the aforementioned HPV16- and p53-transformed cells. This peptide is encoded by a cryptic open reading frame in the backbone sequences of the plasmids that had been used to generate these cells. Considerable amounts of transcripts encompassing this open reading frame were detected in the cells concerned. These transcripts were the result of the bidirectional nature of the retroviral long terminal repeat (LTR) present in the expression plasmids used for transfection, which resulted in transcription of the gene of interest, as well as in transcription of the vector sequences positioned at the other side of the LTR. Due to this mechanism, all tumor cells harboring LTR-driven expression plasmids expressed the highly immunogenic peptide, whereas cells containing plasmids driven by more unidirectional promoters exhibited lower levels of this peptide. LTR-driven expression plasmids were also shown to encode this peptide epitope when used for DNA vaccination, as mice vaccinated with such a plasmid developed a CTL response against this peptide. Our data show that awareness of plasmid backbone-derived epitopes is of crucial importance for the correct interpretation of preclinical experiments and for the design of DNA vaccines.

Amino Acid Sequence↗

Efficient direct priming of tumor-specific cytotoxic T lymphocyte in vivo by an engineered APC.

Although numerous studies have documented a role for B7-1 (CD80) in the induction of antitumor CTL immunity, it is presently unclear to what extent expression of this costimulatory molecule truly endows tumors with significant in vivo APC (antigen-presenting cell) capacity. Recent studies have, in fact, demonstrated that cross-priming, rather than direct priming, may constitute the major mechanism of CTL induction by B7-1 expressing tumors. We have, therefore, investigated the requirements for antigen density and costimulatory molecules in direct CTL priming with a prototype cell-based vaccine that uses a signal sequence-containing minigene to direct expression of a tumor-specific CTL epitope to the endoplasmic reticulum. This design limits sources of antigen available to professional APC in the host and, thereby, the contribution of cross-priming. Induction of antitumor CTL immunity by our prototype APC was shown to solely involve direct priming, independent of host APC, NKI.1+ cells, and CD4+ T cell help. CTL induction through this mechanism required the engineered APC to express the B7-1 molecule as well as a sufficiently high density of peptide/MHC complexes at its surface. Our data, in contrast to previous studies using modified tumor cells, clearly define the antigenic and costimulatory requirements for a suitably engineered "artificial" APC to directly prime peptide-specific CTL in vivo, and demonstrate that the signal sequence minigene approach allows the engineering of highly effective and well-defined cellular vaccines for activation of CTL against epitopes of choice.

Adenovirus E1A Proteins↗

T-cell help for cytotoxic T lymphocytes is mediated by CD40-CD40L interactions.

Although in vivo priming of CD8+ cytotoxic T lymphocytes (CTLs) generally requires the participation of CD4+ T-helper lymphocytes, the nature of the 'help' provided to CTLs is unknown. One widely held view is that help for CTLs is mediated by cytokines produced by T-helper cells activated in proximity to the CTL precursor at the surface of an antigen-presenting cell (APC). An alternative theory is that, rather than being directly supplied to the CTL by the helper cell, help is delivered through activation of the APC, which can then prime the CTL directly. CD40 and its ligand, CD40L, may activate the APC to allow CTL priming. CD40L is expressed on the surface of activated CD4+ T-helper cells and is involved in their activation and in the development of their effector functions. Ligation of CD40 on the surface of APCs such as dendritic cells, macrophages and B cells greatly increases their antigen-presentation and co-stimulatory capacity. Here we report that signalling through CD40 can replace CD4+ T-helper cells in priming of helper-dependent CD8+ CTL responses. Blockade of CD40L inhibits CTL priming; this inhibition is overcome by signalling through CD40. CD40-CD40L interactions are therefore vital in the delivery of T-cell help for CTL priming.

Animals↗

Enhancement of tumor outgrowth through CTL tolerization after peptide vaccination is avoided by peptide presentation on dendritic cells.

Synthetic peptide-based vaccines have been shown to induce potent protective and therapeutic T cell-mediated immunity in preclinical animal models and are now being evaluated in clinical phase I/II studies for their efficacy against tumors or infectious diseases. However, such vaccines might also specifically tolerize T cells causing enhanced tumor outgrowth, as shown by vaccination with two CTL epitopes derived from the adenovirus type 5 early region 1 (Ad5E1) oncogenes. We now report that modification of the Ad5E1 peptide vaccine either through incorporation of the peptides into liposomes or by ligation of the peptides to lipid tails, another vaccine formulation being tested in the clinic, fails to convert immunosuppression into effective antitumor vaccination. Inclusion of a helper T cell epitope into the vaccine likewise induces enhanced tumor outgrowth and thus does not diminish the capacity of the peptides to tolerize Ad5E1-specific CTL. In contrast, the Ad5E1-derived peptides evoke a strong tumor-protective CTL response when presented on dendritic cells (DC), indicating that the in vivo CTL-tolerizing potential of these peptides is converted to specific immunostimulation when presented on DC. These findings have important implications for the development of peptide-based immune intervention strategies and emphasize the superior nature of Ag-pulsed DC over other peptide-based vaccination protocols as well as the crucial importance of the mode of peptide-Ag delivery in setting the balance between T cell stimulation and tolerization.

Amino Acid Sequence↗

CD40-CD40Ligand interactions and their role in cytotoxic T lymphocyte priming and anti-tumor immunity.

Tumor-specific immunity relies on interactions with the antigen receptors as well as costimulatory molecules, such as those of the CD28/B7 pathway and relatives of the TNFR gene family. Cytotoxic T lymphocytes specific for cellular antigens are in general primed by professional antigen-presenting cells that indirectly present antigens derived from cells in the periphery. This cross-priming of CD8(+) T cells requires signals provided by CD4(+) T helper cells. Although this dependency on [help' for efficient cytotoxic T lymphocyte priming has been well documented, it was only recently that more mechanistic insight into the nature of this event has been obtained. In the absence of the CD4(+) T cells, signalling through CD40 can replace 'help' required for priming of these CD8(+) T cells. These observations indicate that T cell help for cytotoxic T lymphocytes is mediated by CD40-CD40Ligand (L) interactions, most likely through activation of professional antigen-presenting cells that cross-present cellular antigens to these T cells.

Animals↗

Efficient loading of HLA-DR with a T helper epitope by genetic exchange of CLIP.

The HLA class II-associated invariant chain (Ii)-derived peptide (CLIP) occupies the peptide binding groove during assembly in the endoplasmic reticulum, travels with HLA class II to endosomal compartments, and is subsequently released to allow binding of antigenic peptides. We investigated whether the exchange of CLIP with a known T helper epitope at the DNA level would lead to efficient loading of this helper epitope onto HLA class II. For this purpose, a versatile Ii-encoding expression vector was created in which CLIP can be replaced with a helper epitope of choice. Upon supertransfection of HLA-DR1-transfected 293 cells with an Ii vector encoding a known T helper epitope (HA307-319), predominantly length variants of this epitope were detected in association with the HLA-DR1 molecules of these cells. Moreover, this transfectant was efficiently recognized by a peptide-specific T helper clone (HA1.7). The results suggest that this type of Ii vector can be used to create potent class II+ cellular vaccines in which defined T cell epitopes are continuously synthesized.

Amino Acid Sequence↗

Activation or frustration of anti-tumor responses by T-cell-based immune modulation.

Many types of tumors (e.g. virus-induced tumors, melanomas, tumors over-expressing certain oncogenes) often express antigens that can induce T-cell-mediated tumor-specific immune responses. Nonetheless, many such tumors manage to circumvent the induction of an effective anti-tumor T-cell response, as is apparent from the many tumor-bearing patients. Therefore, optimally designed vaccination protocols may evoke a more powerful and competent T-cell-mediated anti-tumor response, allowing the host to effectively deal with at least some cancers. These vaccination approaches might include immunization with whole (tumor) cell-based vaccines, entire tumor antigens or selected T-cell epitopes derived from tumor antigens. This survey is an update of several anti-tumor vaccination approaches employed, and on novel possibilities to target the anti-tumor immune response to preselected tumor-derived T-cell epitopes.

Adenoviridae↗

Harnessing self-reactivity in cancer immunotherapy.

Recent years have witnessed a significant advance in our understanding of the immune response to cancer through the identification of human tumor antigens at the molecular level. The growing list of normal self proteins recognized on tumors by T cells of cancer patients is consistent with the existence in humans of a self-reactive T-cell repertoire analogous to that described in murine models of autoimmune disease. The presence of these cells in normal individuals reveals the benign self-reactivity which lies dormant in the T-cell repertoire of humans. These autoreactive T cells, although pathogenic when activated in autoimmune disease, could be directed towards a beneficial effect in tumor immunotherapy. Potential targets for such a limited anti-self/anti-tumor immune response include overexpressed proteins, tissue-specific differentiation antigens and developmental proteins expressed aberrantly in tumor cells. Depending on the determinant chosen, recruitment of these self-directed T cells may require overcoming some degree of non-deletional peripheral tolerance. By specifically targeting immune responses to subdominant and cryptic determinants from these proteins, it may be possible to maximize the anti-tumor effect resulting from self-directed immunity while minimizing unwanted damage to normal tissue.

Animals↗

Tumor rejection antigens and tumor specific cytotoxic T lymphocytes.

In several tumor models and in certain types of human malignancies, T cell mediated immune responses can be involved in the host's defences against cancer. Adoptively transferred tumor-specific T cells can mediate complete tumor regression in several animal models and the first effective therapeutic interventions with adoptively transferred (virus-specific) CTL in man have been reported. With the identification of tumor rejection antigens new antigen specific therapeutic approaches come into sight. The development of anti-tumor vaccines based upon known tumor rejection antigens might take off rapidly in the near future, since only the first few tumor rejection antigens of an enormous potential have been reported. This development will go hand in hand with the utilization of cytokines in these vaccines. Cytokines might promote T cell activity or antigen presentation, but can also be used to counteract tumor immune escape mechanisms. Escape from immune surveillance and T cell mediated elimination by tumor cells might account for the failure of the immune system to eradicate or prevent the outgrowth of many types of tumors. The identification of tumor rejection antigens and tumor-specific immune responses, together with a better understanding of the mechanisms by which tumors escape from T cell mediated immunity brings fresh encouragement in the field of tumor immunology.

Animals↗