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1.
Bettahi I Dasgupta G Renaudet O Chentoufi AA Zhang X Carpenter D Yoon S Dumy P BenMohamed L 《Cancer immunology, immunotherapy : CII》2009,58(2):187-200
Molecularly defined synthetic vaccines capable of inducing both antibodies and cellular anti-tumor immune responses, in a
manner compatible with human delivery, are limited. Few molecules achieve this target without utilizing external immuno-adjuvants.
In this study, we explored a self-adjuvanting glyco-lipopeptide (GLP) as a platform for cancer vaccines using as a model MO5,
an OVA-expressing mouse B16 melanoma. A prototype B and T cell epitope-based GLP molecule was constructed by synthesizing
a chimeric peptide made of a CD8+ T cell epitope, from ovalbumin (OVA257–264) and an universal CD4+ T helper (Th) epitope (PADRE). The resulting CTL–Th peptide backbones was coupled to a carbohydrate B cell epitope based
on a regioselectively addressable functionalized templates (RAFT), made of four α-GalNAc molecules at C-terminal. The N terminus
of the resulting glycopeptides (GP) was then linked to a palmitic acid moiety (PAM), obviating the need for potentially toxic
external immuno-adjuvants. The final prototype OVA-GLP molecule, delivered in adjuvant-free PBS, in mice induced: (1) robust
RAFT-specific IgG/IgM that recognized tumor cell lines; (2) local and systemic OVA257–264-specific IFN-γ producing CD8+ T cells; (3) PADRE-specific CD4+ T cells; (4) OVA-GLP vaccination elicited a reduction of tumor size in mice inoculated with syngeneic murine MO5 carcinoma
cells and a protection from lethal carcinoma cell challenge; (5) finally, OVA-GLP immunization significantly inhibited the
growth of pre-established MO5 tumors. Our results suggest self-adjuvanting glyco-lipopeptide molecules as a platform for B
Cell, CD4+, and CD8+ T cell epitopes-based immunotherapeutic cancer vaccines.
Both I. Bettahi and G. Dasgupta have contributed equally to this work. 相似文献
2.
Matsuzaki J Qian F Luescher I Lele S Ritter G Shrikant PA Gnjatic S Old LJ Odunsi K 《Cancer immunology, immunotherapy : CII》2008,57(8):1185-1195
NY-ESO-1 is frequently expressed in epithelial ovarian cancer (EOC) and elicits spontaneous humoral and cellular immune responses in a proportion of EOC patients. The identification of NY-ESO-1 peptide epitopes with dual HLA-class I and class II specificities might be useful in vaccination strategies for generating cognate CD4+ T cell help to augment CD8+ T cell responses. Here, we describe two novel NY-ESO-1-derived MHC class I epitopes from EOC patients with spontaneous humoral immune response to NY-ESO-1. CD8+ T cells derived from NY-ESO-1 seropositive EOC patients were presensitized with a recombinant adenovirus encoding NY-ESO-1or pooled overlapping peptides. These epitopes, ESO127-136 presented by HLA-A68 molecule, and ESO127-135 restricted by HLA-Cw15 allele, are located within ESO119-143, a promiscuous HLA-class II region containing epitopes that bind to multiple HLA-DR alleles. The novel epitopes were naturally processed by APC or naturally presented by tumor cell lines. In addition, these epitopes induced NY-ESO-1-specific CTL in NY-ESO-1 seropositive EOC patients. Together, the results indicate that ESO119-143 epitope has dual HLA classes I and II specificities, and represents a potential vaccine candidate in a large number of cancer patients. 相似文献
3.
4.
Ratai EM Pilkenton S He J Fell R Bombardier JP Joo CG Lentz MR Kim WK Burdo TH Autissier P Annamalai L Curran E O'Neil SP Westmoreland SV Williams KC Masliah E Gilberto González R 《Journal of medical primatology》2011,40(5):300-309
Background Simian immunodeficiency virus (SIV) infection and persistent CD8+ lymphocyte depletion rapidly leads to encephalitis and neuronal injury. The objective of this study is to confirm that CD8 depletion alone does not induce brain lesions in the absence of SIV infection. Methods Four rhesus macaques were monitored by proton magnetic resonance spectroscopy (1H‐MRS) before and biweekly after anti‐CD8 antibody treatment for 8 weeks and compared with four SIV‐infected animals. Post‐mortem immunohistochemistry was performed on these eight animals and compared with six uninfected, non‐CD8‐depleted controls. Results CD8‐depleted animals showed stable metabolite levels and revealed no neuronal injury, astrogliosis or microglial activation in contrast to SIV‐infected animals. Conclusions Alterations observed in MRS and lesions in this accelerated model of neuroAIDS result from unrestricted viral expansion in the setting of immunodeficiency rather than from CD8+ lymphocyte depletion alone. 相似文献
5.
Maness NJ Walsh AD Rudersdorf RA Erickson PA Piaskowski SM Wilson NA Watkins DI 《Immunogenetics》2011,63(9):587-597
The presentation of identical peptides by different major histocompatibility complex class I (MHC-I) molecules, termed promiscuity,
is a controversial feature of T cell-mediated immunity to pathogens. The astounding diversity of MHC-I molecules in human
populations, presumably to enable binding of equally diverse peptides, implies promiscuity would be a rare phenomenon. However,
if it occurs, it would have important implications for immunity. We screened 77 animals for responses to peptides known to
bind MHC-I molecules that were not expressed by these animals. Some cases of supposed promiscuity were determined to be the
result of either non-identical optimal peptides or were simply not mapped to the correct MHC-I molecule in previous studies.
Cases of promiscuity, however, were associated with alterations of immunodominance hierarchies, either in terms of the repertoire
of peptides presented by the different MHC-I molecules or in the magnitude of the responses directed against the epitopes
themselves. Specifically, we found that the Mamu-B*017:01-restricted peptides Vif HW8 and cRW9 were also presented by Mamu-A2*05:26
and targeted by an animal expressing that allele. We also found that the normally subdominant Mamu-A1*001:01 presented peptide
Gag QI9 was also presented by Mamu-B*056:01. Both A2*05:26 and B*056:01 are molecules typically or exclusively expressed by
animals of Chinese origin. These data clearly demonstrate that MHC-I epitope promiscuity, though rare, might have important
implications for immunodominance and for the transmission of escape mutations, depending on the relative frequencies of the
given alleles in a population. 相似文献
6.
Takushi Nomura Hiroyuki Yamamoto Naofumi Takahashi Taeko K. Naruse Akinori Kimura Tetsuro Matano 《Biochemical and biophysical research communications》2014
Virus-specific CD8+ T-cell responses are crucial for the control of human immunodeficiency virus (HIV) and simian immunodeficiency virus (SIV) replication. Multiple studies on HIV-infected individuals and SIV-infected macaques have indicated association of several major histocompatibility complex class I (MHC-I) genotypes with lower viral loads and delayed AIDS progression. Understanding of the viral control mechanism associated with these MHC-I genotypes would contribute to the development of intervention strategy for HIV control. We have previously reported a rhesus MHC-I haplotype, 90-120-Ia, associated with lower viral loads after SIVmac239 infection. Gag206–216 and Gag241–249 epitope-specific CD8+ T-cell responses have been shown to play a central role in the reduction of viral loads, whereas the effect of Nef-specific CD8+ T-cell responses induced in all the 90-120-Ia+ macaques on SIV replication remains unknown. Here, we identified three CD8+ T-cell epitopes, Nef9–19, Nef89–97, and Nef193–203, associated with 90-120-Ia. Nef9–19 and Nef193–203 epitope-specific CD8+ T-cell responses frequently selected for mutations resulting in viral escape from recognition by these CD8+ T cells, indicating that these CD8+ T cells exert strong suppressive pressure on SIV replication. Results would be useful for elucidation of the viral control mechanism associated with 90-120-Ia. 相似文献
7.
Cristina Maccalli Samantha Scaramuzza Giorgio Parmiani 《Cancer immunology, immunotherapy : CII》2009,58(5):801-808
Innate and adaptive immune responses have many interactions that are regulated by the balance of signals initiated by a variety of activatory and inhibitory receptors. Among these, the NKG2D molecule was identified as expressed by T lymphocytes, including most CD8+ cells and a minority of CD4+ cells, designated TNK cells in this paper. Tumor cells may overexpress the stress-inducible NKG2D ligands (NKG2DLs: MICA/B, ULBPs) and the NKG2D signaling has been shown to be involved in lymphocyte-mediated anti-tumor activity. Aberrant expression of NKG2DLs by cancer cells, such as the release of soluble form of NKG2DLs, can lead to the impairment of these immune responses. Here, we discuss the significance of NKG2D in TNK-mediated anti-tumor activity. Our studies demonstrate that NKG2D+ T cells (TNK) are commonly recruited at the tumor site in melanoma patients where they may exert anti-tumor activity by engaging both TCR and NKG2D. Moreover, NKG2D and TCR triggering was also observed by peripheral blood derived T lymphocyte- or T cell clone-mediated tumor recognition, both in melanoma and colorectal cancer (CRC) patients. Notably, heterogeneous expression of NKG2DLs was found in melanoma and CRC cells, with a decrease of these molecules along with tumor progression. Therefore, through the mechanisms that govern NKG2D engagement in anti-tumor activity and the expression of NKG2DLs by tumor cells that still need to be dissected, we showed that NKG2D expressing TNK cells are a relevant T cell subtype for immunosurveillance of tumors and we propose that new immunotherapeutic interventions for cancer patients should be aimed also at enhancing NKG2DLs expression by tumor cells. This paper is a focused research review based on a presentation given at the sixth annual meeting of the Association for Immunotherapy of Cancer (CIMT), held in Mainz, Germany, 15–16 May 2008. 相似文献
8.
Functional CD8<Superscript>+</Superscript> T cells infiltrate into nonsmall cell lung carcinoma 总被引:1,自引:0,他引:1
Verdegaal EM Hoogstraten C Sandel MH Kuppen PJ Brink AA Claas FH Gorsira MC Graadt van Roggen JF Osanto S 《Cancer immunology, immunotherapy : CII》2007,56(5):587-600
Infiltration of CD3(+)CD8(+) cytotoxic T cells was analyzed by multiparameter confocal laser microscopy in a panel of 16 randomly selected stage I nonsmall cell lung carcinomas. T-cell infiltration was observed in the stroma (range 57-2,093 T cells/mm(2)) but also in the tumor epithelium (range 21-892 T cells/mm(2)) and showed wide variation between individual tumors. Interestingly, a significantly higher percentage of CD3(+)CD8(+) T cells was detected in the tumor epithelium compared to the stroma illustrating that cytotoxic T cells may preferentially migrate into tumor epithelium. Aberrant HLA class I antigen expression was observed in 69% of the nonsmall-cell lung carcinoma (NSCLC) tumors. One tumor of a squamous cell lung carcinoma patient with the highest number of tumor infiltrating CD3(+) and CD3(+)CD8(+) cells was studied in detail and the majority (90%) of these cells were shown to be functionally activated granzyme B-positive cytotoxic T cells. DNA oligotyping of a lung carcinoma cell line established from this tumor revealed loss of one HLA haplotype corresponding with a translocation involving chromosome 6, as observed by COBRA-FISH. HLA class I-restricted tumor specific T cells could be isolated from PBMC. One further characterized cytotoxic CD8(+) T cell clone, that released TNF-alpha, IFN-gamma, and granzyme B upon co-incubation with the autologous tumor cells, was shown to be restricted by the remaining HLA-A11 allele, which was also shown to be expressed in the tumor tissue. Our data indicate that, despite HLA-haplotype loss a vigorous antitumor immune response mediated by CD8(+ )T-cells can be present in NSCLC offering possibilities for specific immunotherapy. 相似文献
9.
Kreiter S Konrad T Sester M Huber C Türeci O Sahin U 《Cancer immunology, immunotherapy : CII》2007,56(10):1577-1587
Assessment of antigen-specific T-cell responses has been greatly facilitated by development of ELISPOT and intracellular cytokine flow cytometry (CFC) assays. The use of autologous antigen presenting cells transfected with in vitro transcribed RNA as stimulators allows in principle quantification of antigen-specific T-cells independent of the knowledge of the epitopes. We describe here a cytokine secretion assay that enables simultaneous assessment of both antigen-specific CD4+ as well as CD8+ T-cells directly from clinical samples without the need for generation of dendritic cells. To this aim, bulk PBMCs were electroporated with RNA encoding the antigen fused to trafficking signal sequences derived from a MHC class I molecule and used as stimulators. With human cytomegalovirus (HCMV) phosphoprotein 65 (pp65) as antigen we show that for measuring ex vivo T-cell responses in ELISPOT and CFC such stimulators are superior or at least equivalent to a pool of overlapping peptides representing the entire pp65 sequence as well as to untagged pp65 encoding RNA. This approach avoids the time consuming generation of dendritic cells as immune stimulators and, in particular when used in the context of the CFC, is robust, broadly applicable and fast. 相似文献
10.
Background
Administration of recombinant G-CSF following cytoreductive therapy enhances the recovery of myeloid cells, minimizing the risk of opportunistic infection. Free G-CSF, however, is expensive, exhibits a short half-life, and has poor biological activity in vivo.Methods
We evaluated whether the biological activity of G-CSF could be improved by pre-association with anti-G-CSF mAb prior to injection into mice.Results
We find that the efficacy of G-CSF therapy can be enhanced more than 100-fold by pre-association of G-CSF with an anti-G-CSF monoclonal antibody (mAb). Compared with G-CSF alone, administration of G-CSF/anti-G-CSF mAb complexes induced the potent expansion of CD11b+Gr-1+ myeloid cells in mice with or without concomitant cytoreductive treatment including radiation or chemotherapy. Despite driving the dramatic expansion of myeloid cells, in vivo antigen-specific CD8+ T cell immune responses were not compromised. Furthermore, injection of G-CSF/anti-G-CSF mAb complexes heightened protective immunity to bacterial infection. As a measure of clinical value, we also found that antibody complexes improved G-CSF biological activity much more significantly than pegylation.Conclusions
Our findings provide the first evidence that antibody cytokine complexes can effectively expand myeloid cells, and furthermore, that G-CSF/anti-G-CSF mAb complexes may provide an improved method for the administration of recombinant G-CSF.11.
Angelika Schwanninger Birgit Weinberger Daniela Weiskopf Dietmar Herndler-Brandstetter Stephan Reitinger Christoph Gassner Harald Schennach Walther Parson Reinhard Würzner Beatrix Grubeck-Loebenstein 《Immunity & ageing : I & A》2008,5(1):14
Old age is associated with characteristic changes of the immune system contributing to higher incidence and severity of many
infectious diseases. Particularly within the T cell compartment latent infection with human Cytomegalovirus (CMV) is contributing
to and accelerating immunosenescence. However, latent CMV infection and reactivation usually does not cause overt symptoms
in immunocompetent elderly persons indicating immunological control of disease. Little is still known about the clonal composition
of CMV-specific T cell responses in donors of different age. We therefore analyzed CD8+ T cells specific for an immunodominant pp65-derived nonamer-peptide (NLVPMVATV; CMVNLV) in different age-groups. Independent of donor age CMVNLV-specific CD8+ T cells preferentially use the V beta family 8. This family has monoclonal expansions in the majority of donors after stimulation
of CD8+ T cells with the peptide. By sequencing the CDR3 region of the T cell receptor we demonstrated that CMVNLV-specific, BV8+ CD8+ T cells share the conserved CDR3-sequence motif SANYGYT in donors of all age groups. Interestingly, a second conserved clonotype
with the CDR3-sequence motif SVNEAF appears in middle-aged and elderly donors. This clonotype is absent in young individuals.
The age-related clonotype SVNEAF binds to the pMHC-complex with higher avidity than the clonotype SANYGYT, which is predominant
in young adults. The dominance of this high avidity clonotype may explain the lack of overt CMV-disease in old age. 相似文献
12.
Major histocompatibility complex (MHC) class II genes, which play a major role in the immune system response, are some of the most polymorphic genes in vertebrates. We developed polymerase chain reaction primers for part of the second exon of an expressed MHC class II gene in the common frog, Rana temporaria. We genotyped this locus in five frog populations in southeast England and detected eight alleles in 215 individuals. Five or six alleles were detected in each population with a maximum of two alleles per individual, indicating that only a single locus was amplified. We also inferred the possible existence of a null allele. There were 23 variable nucleotide sites (out of 136) and 13 variable amino acid sites (out of 44), many of which corresponded to amino acids involved in antigen recognition. We detected a significant excess of nonsynonymous substitutions at antigen binding sites, indicating that this gene is under positive selection. The level of variation we found was similar to that in other amphibian MHC class II loci, such as those in Bombina bombina, Xenopus laevis and Ambystoma tigrinum. 相似文献
13.
14.
John S. Cho Jeffrey V. Hsu Sherie L. Morrison 《Cancer immunology, immunotherapy : CII》2009,58(7):1057-1069
The systemic administration of an agonist antibody against glucocorticoid-induced tumor necrosis factor receptor related (GITR)
protein has been shown to be effective in overcoming immune tolerance and promoting tumor rejection in a variety of murine
tumor models. However, little is known regarding the functional consequence of ligation of GITR with its natural ligand (GITR-L)
in the context of regulatory T cell (Treg) suppression in vivo. To determine the mechanism of GITR-L action in vivo, we generated
a panel of tumor cell clones that express varying levels of GITR-L. The ectopic expression of GITR-L on the tumor cell surface
was sufficient to enhance anti-tumor immunity and delay tumor growth in syngeneic BALB/c mice. Within the range examined,
the extent of anti-tumor activity in vivo did not correlate with the level of GITR-L expression, as all clones tested exhibited
a similar delay in tumor growth. The localized expression of GITR-L on tumor cells led to a significant increase in CD8+ T cell infiltration compared to the levels seen in control tumors. The increased proportion of CD8+ T cells was only observed locally at the tumor site and was not seen in the tumor draining lymph node. Depletion studies
showed that CD8+ T cells, but not CD4+ T cells, were required for GITR-L mediated protection against tumor growth. These studies demonstrate that signaling between
GITR-L and GITR in the tumor microenvironment promotes the infiltration of CD8+ T cells, which are essential for controlling tumor growth.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
15.
High prevalence of non-AIDS-defining illnesses in treated HIV-infected patients is associated with increased peripheral CD8+ T cell counts. Hepatitis C virus (HCV) coinfection is an additional risk factor for the development of non-AIDS events. We found that, in HIV/HCV coinfection, the increased proportion of CD8+ T lymphocytes is due to the effector memory and terminal effector T cells gain. Moreover, in these patients, the accumulation of highly differentiated forms of CD8+ T lymphocytes was associated with increased concentrations of inflammatory indices. 相似文献
16.
Ogata K Jaramillo A Cohen W Briand JP Connan F Choppin J Muller S Wodak SJ 《The Journal of biological chemistry》2003,278(2):1281-1290
An automatic protein design procedure was used to compute amino acid sequences of peptides likely to bind the HLA-A2 major histocompatibility complex (MHC) class I allele. The only information used by the procedure are a structural template, a rotamer library, and a well established classical empirical force field. The calculations are performed on six different templates from x-ray structures of HLA-A0201-peptide complexes. Each template consists of the bound peptide backbone and the full atomic coordinates of the MHC protein. Sequences within 2 kcal/mol of the minimum energy sequence are computed for each template, and the sequences from all the templates are combined and ranked by their energies. The five lowest energy peptide sequences and five other low energy sequences re-ranked on the basis of their similarity to peptides known to bind the same MHC allele are chemically synthesized and tested for their ability to bind and form stable complexes with the HLA-A2 molecule. The most efficient binders are also tested for inhibition of the T cell receptor recognition of two known CD8(+) T effectors. Results show that all 10 peptides bind the expected MHC protein. The six strongest binders also form stable HLA-A2-peptide complexes, albeit to varying degrees, and three peptides display significant inhibition of CD8(+) T cell recognition. These results are rationalized in light of our knowledge of the three-dimensional structures of the HLA-A2-peptide and HLA-A2-peptide-T cell receptor complexes. 相似文献
17.
Wooldridge L van den Berg HA Glick M Gostick E Laugel B Hutchinson SL Milicic A Brenchley JM Douek DC Price DA Sewell AK 《The Journal of biological chemistry》2005,280(30):27491-27501
The off-rate (k(off)) of the T cell receptor (TCR)/peptide-major histocompatibility complex class I (pMHCI) interaction, and hence its half-life, is the principal kinetic feature that determines the biological outcome of TCR ligation. However, it is unclear whether the CD8 coreceptor, which binds pMHCI at a distinct site, influences this parameter. Although biophysical studies with soluble proteins show that TCR and CD8 do not bind cooperatively to pMHCI, accumulating evidence suggests that TCR associates with CD8 on the T cell surface. Here, we titrated and quantified the contribution of CD8 to TCR/pMHCI dissociation in membrane-constrained interactions using a panel of engineered pMHCI mutants that retain faithful TCR interactions but exhibit a spectrum of affinities for CD8 of >1,000-fold. Data modeling generates a "stabilization factor" that preferentially increases the predicted TCR triggering rate for low affinity pMHCI ligands, thereby suggesting an important role for CD8 in the phenomenon of T cell cross-reactivity. 相似文献
18.
Petrovas C Mueller YM Yang G Altork SR Jacobson JM Pitsakis PG Mounzer KC Altman JD Katsikis PD 《Apoptosis : an international journal on programmed cell death》2007,12(12):2175-2186
We have recently provided data suggesting a potential role for mitochondria and Bcl-2-family molecules in apoptosis sensitivity
of HIV-specific CD8+ T cells. Here, we report on the role of filamentous (F) actin in this process. Disruption of actin by cytochalasin D (cytD)
or lantrunculin A remarkably reduced CD95/Fas-induced apoptosis of HIV-specific CD8+ T cells while their spontaneous apoptosis was unaffected. This inhibition cannot be attributed to changes of CD95/Fas distribution
or levels in these cells. Furthermore, cytD treatment reduced CD95/Fas-induced apoptosis of CD8+ T cells from HIV+ patients independently of their differentiation status. CD95/Fas-induced apoptosis of both CD38+ and CD38− HIV-specific CD8+ T cells was inhibited by cytD treatment indicating that actin mediates this apoptotic process independently of the activation
level of these cells. CytD was found to reduce the activation of caspase-8 induced by short treatment of purified CD8+ T cells from HIV+ patients with anti-CD95/Fas. Our data reveal actin as a critical mediator of HIV-specific CD8+ T cell apoptosis; further analysis of the molecular mechanisms governing this process may potentially contribute to design
new therapies targeting the enhancement of the immune system in HIV infection. 相似文献
19.
20.
The major histocompatibility complex class I genes play crucial roles in the adaptive immune system of vertebrates against
intracellular pathogens. To date, no class I genes from the giant panda (Ailuropoda melanoleuca) has been reported, even none from species of Ursidae. In this study, we successfully identified three class I genes from
a giant panda bacterial artificial chromosome library and designated them as Aime-128, 152, and 1906, respectively. Pairwise sequence alignments revealed that (1) the Aime-1906 always possessed the lowest identities (52–86%) in different regions compared with the Aime-128 and 152 and (2) the Aime-128 also varied from the Aime-152 in the regions of 5′ untranslated region (UTR), 3′ UTR, and exon1, whose similarities were 83%, 87%, and 91%, respectively.
Comparison of structure characteristics indicated that the Aime-128 possessed all conserved amino acids important to the function of antigen presentation while the Aime-152 and 1906 presented two and five mutated residues. Analysis of phylogenetic trees demonstrated that the Aime-128, 152, and 1906 were clustered into three different branches with 99% or 100% bootstrap values. As a result, these three
kinds of evidence supported that the Aime-1906, 152, and 128 should be derived from different loci. Furthermore, in view of a prestop codon in the exon 7 and patterns
of amino acid replacement within alleles, the Aime-1906 gene is predicted to be a nonclassical locus, which is most closely related to dog leukocyte antigen 79 in the phylogenetic
tree constructed with various mammalian class I loci.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献