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[Expression of the costimulatory CD28 antigen on peripheral blood CD8+ T lymphocytes in patients with chronic hepatitis C].

Virus-specific activation of the CD8+ cytotoxic T lymphocytes, which may affect the extension of histopathological damage in chronic hepatitis C, is closely related to the role of the so called "costimulatory antigens", particularly CD28, allocated on the surface of the T lymphocytes. This study evaluated the display of CD28 antigen on circulating T lymphocytes CD8+ in patients with chronic hepatitis C. The eventual correlation between CD28 expression, viral load, aminotransferase levels and degree of histological damage was also studied. According to our data, the prevalence of circulating TCD8+ CD28+ cells didn't differ among anti-HCV positive, HBV positive subjects and healthy controls. In HCV-positive subjects, prevalence of TCD8+ CD28+ cells was higher in patients with chronic persistent hepatitis than in chronic active cases with a significant negative correlation with the Knodell histological "score". Further studies are required to ascertain the role of CD28+ expression in those subjects with severe hepatic histological damage due to chronic hepatitis C.

Adult↗

Down-regulation of KOLT-2 antigen (CD28) by interleukin 2; role of IL-2R (p70).

Using KOLT-2 monoclonal antibody (mAb) recognizing a 44,000 molecular weight (MW) T-cell activation antigen (CD28), we observed the co-expression of KOLT-2 (CD28) antigen and Tac (CD25) antigen, associated with a 55,000 MW chain of the interleukin-2 receptor (IL-2R) complex. IL-2R (p55), on several T-cell lines transformed by human T-lymphotropic virus-I (HTLV-I), as well as several subclones of the natural killer (NK)-like cell line YT. When YT cells (YTC3T, YT5.1) and IL-2-dependent HTLV-I+ T-cell line cells (ED, ATL35C) expressing both IL-2R (p55) and IL-2R (p70) chains were cultured with recombinant IL-2 (rIL-2), KOLT-2 antigen was down-regulated in 24 hr. However, KOLT-2 antigen on HPB-ALL (Kurume) cells expressing neither of the IL-2R chains was unaffected by IL-2. IL-2 also failed to down-regulate KOLT-2 antigen on MT-1 cells bearing IL-2R (p55)/Tac without IL-2R (p70). To clarify the role of IL-2R (p70) in the IL-2-induced down-regulation of KOLT-2 antigen, we analysed the effect of IL-2 on a Tac- subclone of YT (YT2C2) that expresses IL-2R (p70). As was the case with Tac+ YT cells, KOLT-2 antigen was down-regulated by IL-2, and this down-regulation was inhibited by anti-IL-2R (p70) mAb but not by anti-Tac mAb. These results show that the signalling through the IL-2/IL-2R system down-regulates KOLT-2 (CD28) antigen by way of the interaction between IL-2 and IL-2R (p70), irrespective of IL-2R (p55)/Tac. Possible involvement of the IL-2/IL-2R system in the CD28-mediated mitogenic mechanism is discussed.

Antigens, Differentiation, T-Lymphocyte↗

T-cell antigen CD28 mediates adhesion with B cells by interacting with activation antigen B7/BB-1.

Studies using monoclonal antibodies (mAbs) have implicated the homodimeric glycoprotein CD28 as an important regulator of human T-cell activation, in part by posttranscriptional control of cytokine mRNA levels. Although the CD28 antigen has functional and structural characteristics of a receptor, a natural ligand for this molecule has not been identified. Here we show that the CD28 antigen, expressed in Chinese hamster ovary (CHO) cells, mediated specific intercellular adhesion with human lymphoblastoid and leukemic B-cell lines and with activated primary murine B cells. CD28-mediated adhesion was not dependent upon divalent cations. Several mAbs were identified that inhibited CD28-mediated adhesion, including mAb BB-1 against the B-cell activation antigen B7/BB-1 and some mAbs against major histocompatibility complex class I antigens. B7/BB-1 expression correlated closely with CD28-mediated adhesion, but class I expression did not. Transfected COS cells expressing the B7/BB-1 antigen adhered to CD28+ CHO cells; this adhesion was blocked by mAbs to CD28 and B7/BB-1. The specific recognition by CD28 of the B-cell activation antigen B7/BB-1 represents a heterophilic interaction between members of the immunoglobulin superfamily that may serve to regulate T-cell cytokine levels at sites of B-cell activation.

Animals↗

Direct helper T cell-induced B cell differentiation involves interaction between T cell antigen CD28 and B cell activation antigen B7.

Cognate interactions between major histocompatibility complex class II antigen (Ag)-reactive CD4+ T helper (Th) and Ag-presenting B cells induce first the activation of B cells and their subsequent differentiation into Ig-secreting cells (IgSC). The Th cell-associated homodimeric glycoprotein CD28 has been implicated as an important regulator of Th activation. Recently, B cell-associated early activation Ag B7 has been identified as a ligand for the CD28 molecule. In this study, we have examined using monoclonal antibodies (mAb) the roles of CD28 and B7 molecules during the Th-B cell cognate interactions leading to the differentiation of B7+ B cells. Anti-CD28 mAb 9.3 specifically inhibited proliferative responses of CD4+ T cells to both allogeneic B cells and soluble Ag-presenting autologous non-T cells. In addition, anti-CD28 mAb 9.3 inhibited Th-induced differentiation of alloantigen-presenting B cells into ISC. Similar inhibition of both Ag-induced Th activation and B cell differentiation into ISC was observed using mAb BB1 which recognizes a B cell-associated molecule B7. In contrast, non-cognate Th-independent exogenous interleukin 6-induced differentiation of B7+ B cells into ISC was not inhibited by mAb to either molecule. These results clearly demonstrate the involvement of CD28 on Th and its ligand B7 on B cells during cognate Th-B interactions leading to the differentiation of B cells. Furthermore, these results also suggest the development of new mAb-based therapeutic approaches for exaggerated B cell activation associated with certain autoimmune diseases such as systemic lupus erythematosus.

Antigens, CD↗

T cell antigen CD28 binds to the GRB-2/SOS complex, regulators of p21ras.

The T cell molecule CD28 provides a co-stimulatory signal that is required for T cell proliferation, and has been implicated in the control of T cell anergy. An important clue to the signaling mechanism of CD28 is the finding that CD28 can bind to phosphatidylinositol 3-kinase (PI 3-kinase) by means of a cytoplasmic phospho-YMNM (pYMNM) motif. A remaining issue concerns whether CD28 can recruit other intracellular signaling molecules. In this study, we show that CD28 uses the same pYMNM motif to recruit a second intracellular protein, GRB-2. CD28-associated GRB-2, as detected by anti-GRB-2 immunoblotting, was found in human peripheral T cells, HPB-ALL and Jurkat cells. As in the case of PI3-kinase, antibody-induced cross-linking of CD28 induces a time-dependent recruitment of GRB-2. Likewise, mutation of the pY-191 residue within the pYMNM motif reduces GRB-2 binding. Peptide binding studies show that the SH2 domain of GRB-2 binds to the pYMNM motif with an affinity comparable to GRB-2/SHC, but some 10- to 100-fold lower than the CD28/PI 3-kinase. Despite this, CD28/GRB-2 and CD28/PI 3-kinase complexes are found to co-exist in peripheral T cells. Finally, immunoblotting shows that CD28 also associates with the gene product of the human homolog of the Drosophila Son of sevenless gene (SOS), a GRB-2-complexed guanine nucleotide exchange factor responsible for converting p21ras to a GTP-bound active state. CD28-associated GRB2/SOS is likely to serve an important link in the regulation of p21ras and lymphokine expression mediated by CD28.

Adaptor Proteins, Signal Transducing↗

Regulation of NF-kappa B nuclear activity in peripheral blood mononuclear cells: role of CD28 antigen.

The NF-kappa B/rel family of transcription factors regulates the expression of a number of genes, including interleukin 2 (IL-2), IL-2 receptor alpha chain (Tac), and others, controlling T lymphocyte activation. The CD28 antigen is involved in regulation of T cell activation. To investigate whether CD28 antigen regulates NF-kappa B factors, we analyzed the effect of an anti-CD28 monoclonal antibody (mAb), CLB-CD28/1, on the nuclear activity of NF-kappa B complexes in resting and CD3-activated peripheral blood mononuclear cells (PBMC) of 11 donors. Cells were incubated with or without the anti-CD3 mAb OKT3 and/or the mAb CLB- CD28/1. Then nuclear extracts were obtained and analyzed for their binding to a 32P-labeled oligonucleotide, corresponding to the NF-kappa B 5'-CAACGGCAGGGGAATCTCCCTCTCCTT-3' consensus sequence in electrophoretic mobility shift assays. PBMC incubated with control medium did not appear to contain significant levels of NF-kappa B nuclear activity. The anti-CD28 mAb did not induce any detectable NF-kappa B nuclear activity in PBMC when used alone, except for two cases. However, cells incubated with the anti-CD3 mAb displayed NF-kappa B nuclear activity in 7 of the 11 cases. The addition of anti-CD28 to the anti-CD3 mAb-stimulated cells enhanced the levels of NF-kappa B activity in eight PBMC, while it did not modify PBMC in one sample and partially inhibited the induction of NF-kappa B in the remaining two samples. The stimulatory effect of anti-CD28 mAb on NF-kappa B nuclear activity was detected also on CD3-stimulated purified T lymphocytes. By analysis with antisera recognizing the p50 and p65 components of the NF-kappa B/rel family, NF-kappa B complexes of CD3+CD28-stimulated PBMC were found to contain both p50 and p65 proteins. An enhanced production of IL-2 was detected in cultures of CD3+CD28-stimulated PBMC. Our results indicate that CD28 triggering can modulate the activity on NF-kappa B nuclear complexes in T lymphocytes stimulated via CD3. Such an effect appeared not to require the presence of accessory cells (AC) or AC-derived cytokines.

Antibodies, Monoclonal↗

T-cell antigen CD28 interacts with the lipid kinase phosphatidylinositol 3-kinase by a cytoplasmic Tyr(P)-Met-Xaa-Met motif.

The T-cell antigen CD28 provides a costimulatory signal that is required for T-cell proliferation. T-cell receptor zeta/CD3 engagement without CD28 ligation leads to a state of nonresponsiveness/anergy, thereby implicating CD28 in the control of peripheral tolerance to foreign antigens or tumors. A key unresolved question has concerned the mechanism by which CD28 generates intracellular signals. Phosphatidylinositol 3-kinase (PI 3-kinase) is a lipid kinase with Src-homology 2 (SH2) domain(s) that binds to the platelet-derived growth factor receptor (PDGF-R), an interaction that is essential for signaling by growth factor. In this study, we demonstrate that CD28 binds to PI 3-kinase by means of a Y(P)MXM motif within its cytoplasmic tail. CD28-associated PI 3-kinase was detected by lipid kinase and HPLC analysis as well as by reconstitution experiments with baculoviral-expressed p85 subunit of PI 3-kinase. CD28 bound directly to the p85 subunit without the need for the associated p110 subunit. Site-directed mutagenesis and peptide competition analysis using Y(P)-MXM-containing peptides showed that PI 3-kinase bound to a Y(P)MXM motif within the CD28 cytoplasmic tail (residues 191-194). Mutation of the Y191 within the motif resulted in a complete loss of binding, while mutation of M194 caused partial loss of binding. Binding analysis showed that the CD28 Y(P)-MXM motif bound to the p85 C- and N-terminal SH2 domains with an affinity comparable to that observed for PDGF-R and insulin receptor substrate 1. In terms of signaling, CD28 ligation induced a dramatic increase in the recruitment and association of PI 3-kinase with the receptor. CD28 is likely to use PI 3-kinase as the second signal leading to T-cell proliferation, an event with implications for anergy and peripheral T-cell tolerance.

Amino Acid Sequence↗

The murine homologue of the T lymphocyte antigen CD28. Molecular cloning and cell surface expression.

The human T lymphocyte Ag CD28 (Tp44) is a homodimeric glycoprotein expressed on the surface of a majority of human peripheral T cells and thymocytes. Although exposure of T cells to anti-CD28 mAb does not activate T cells, stimulation of CD28 can synergize with signals transmitted through the TCR or other stimuli to augment proliferation and lymphokine production. We have used a portion of the human CD28 cDNA to isolate a homologous murine cDNA from an EL4 T lymphoma library. The murine clone has 61% nucleotide identity with the human cDNA. Both human and murine sequences exhibit homology with members of the Ig supergene family and CTLA-4, a T cell specific murine gene. Many characteristics of the human CD28 molecule are conserved within the putative murine CD28 polypeptide. The murine cDNA sequence encodes a polypeptide of 218 amino acids that has 68% identity with the human sequence. Both the murine and human molecules are integral membrane glycoproteins with hydrophobic signal peptide sequences and transmembrane region. All five potential N-linked glycosylation sites are conserved and six of the seven cysteine residues of the mouse protein are found in the human CD28 polypeptide. The murine cDNA is encoded by a single copy nonrearranging gene whose expression at the mRNA level is restricted to T cells. A rabbit antiserum was raised against a synthetic peptide corresponding to a hydrophilic portion of the translated murine cDNA sequence. This antiserum identifies an 80-kDa homodimer consisting of disulfide-bonded subunits of 40 kDa that is expressed on splenic T cells, thymocytes, and several T cell tumors, but not on B cells. deglycosylation studies indicate that four of the five N-linked glycosylation sites are used and that the mature core protein has a molecular mass of 25 kDa, close to that predicted by the cDNA sequence. Transfection of the murine cDNA into Chinese hamster ovary cells resulted in the expression of an 80-kDa dimeric molecule that was immunoprecipitated by the antipeptide antiserum. Taken together, these data provide strong support that we have identified the murine homologue of CD28.

Amidohydrolases↗

Evidence for an interaction between leptin, T cell costimulatory antigens CD28, CTLA-4 and CD26 (dipeptidyl peptidase IV) in BCG-induced immune responses of leptin- and leptin receptor-deficient mice.

We assessed changes of the enzyme dipeptidyl peptidase IV (DPP IV, CD26) in the context of leptin or leptin receptor deficiency. C57BL/6 mice, Leptin-deficient mice (ob/ob mice, B6.V-Lep ) and Leptin-receptor-deficient mice (db/db mice, B6.Cg-m+/+Lepr) were infected with B. Calmette-Guerin (BCG) and sacrificed three days later. DPP IV activity in serum was higher in ob/ob mice and in db/db mice than in wild-type mice. The expression of DPP IV/CD26 on splenocytes was higher in ob/ob mice than in wild-type animals, and lower in db/db mice, and decreased upon stimulation with BCG in ob/ob mice only. Several T cell antigens including CTLA-4 were expressed aberrantly in ob/ob and in db/db mice. Our observations provide evidence for a relationship between DPP IV and leptin.

Animals↗

Detailed immunophenotype of CD8+ memory cytotoxic T-lymphocytes (CTL) against HIV-1 with respect to expression of CD45RA/RO, CD62L and CD28 antigens.

We have previously reported that circulating effector cytotoxic CD8+ T-lymphocytes (CTLs) against HIV-1 express CD38 and HLA-DR activation antigens. In this study, we performed two series of FACS sorts to phenotype and characterize precursors of CTL effectors. First we looked at memory CTL activity against HIV-1 stimulated by antigen as well as CTL activity stimulated by CD3 mAb with regard to whether the precursors expressed CD45RA and/or CD62L. We found that the precursor cells that could be stimulated with antigen to become effectors within 7 days predominated in the CD45RA CD62L subset. However. in donors with low levels of CD8+ T-cell activation as measured by CD38 antigen expression, memory cells could also be found in the CD45RA+ CD62L+ subset. Our data indicate that reversion of memory cells to the CD45RA+ CD62L+ phenotype can occur in humans, especially in donors with low levels of virus replication and minimal CD8 + T-cell activation. Next, we looked at CD28 expression with regard to antigen specific memory cells and again found that the level of virus replication and CD8+ T-cell activation influenced the subset that contained the memory cells. In donors with high levels of virus replication, our results indicated that CTL were being actively recruited from both CD28+ and CD28 subsets, while in donors with undetectable levels of viral replication, the memory cells were entirely in the CD28 compartment.

CD28 Antigens↗

Downregulation of CD28 surface antigen on CD4+ and CD8+ T lymphocytes during HIV-1 infection.

A progressive significant decrease of CD28 surface antigen expression on CD4+ (mean, 90, 86, 79, 68% in stages I, II, III, and IV, respectively, versus 96% in normals), as well as on CD8+ T lymphocytes (mean, 38, 32, 31, and 29% in stages I, II, III, and IV, respectively, versus 47% in normals) was observed during HIV-1 infection. The increase of cytotoxic/suppressor T cells, in both percentage and absolute numbers, that was observed in almost all HIV-1 patients, was associated with an increase of the CD8+ cells lacking the CD28 surface antigen. The loss of CD28 antigen expression was parallel to the increase of CD38, human leukocyte antigen (HLA)-DR, and CD45RO antigen expression on T lymphocytes throughout the disease. Furthermore, a positive significant correlation within the CD4+ but not the CD8+ subset was observed between the percentage of cells lacking the CD28 antigen and the percentage of cells expressing the HLA-DR and CD38 antigens, a finding suggesting that the loss of CD28 antigen expression on CD4+ lymphocytes may be associated with T-lymphocyte activation. Patients treated with zidovudine showed no significant differences in the percentages of either CD4+CD28+ or CD8+CD28+ T-cell subsets when compared to untreated patients. These phenotypic changes may be associated with the functional defects of T lymphocytes in HIV-1 infected individuals.

Adult↗

Homing of transgenic gammadelta T cells into murine vaginal epithelium.

The vaginal epithelium of normal mice contains lymphocytes of fetal thymic origin that express an invariant Vgamma4/Vdelta1 TCR. The apparent lack of other gammadelta TCR species suggests that a selection mechanism might operate to regulate the localization of gammadelta T cells at this anatomical site. Selection might be connected to the Vgamma4/Vdelta1 TCR or to some homing characteristic of the fetal thymic lineage that appears at day 17-18 of embryonic life. In the present studies, we investigated whether transgenic gammadelta cells expressing a TCR species characteristic of the subpopulation of gammadelta T cells found in the blood, spleen and lymph would translocate to the vaginal epithelium. We found that the transgenic Vgamma2 TCR+ cells did accumulate in the vagina of transgenic mice. Furthermore, like normal vaginal gammadelta T cells, the transgenic vaginal gammadelta T cells expressed the phenotype of recently activated memory/effector T cells (CD44(hi), CD62L-, CD45RB(lo), CD69+). Vaginal gammadelta T cells in normal mice do not express the CD2 and CD28 antigens, but both of these markers are present on transgenic vaginal gammadelta T cells. We observed that a small fraction of splenic transgenic gammadelta T cells had the same surface phenotype as the vaginal transgenic gammadelta T cells, raising the possibility that the gammadelta T cells present in the vaginal epithelium of transgenic mice originated from the peripheral lymphoid organs. Data in support of this possibility came from experiments in which co-incubation of splenic transgenic gammadelta T cells with vaginal epithelial cell suspensions induced the vaginal gammadelta phenotype on the splenic gammadelta T cells. The finding of transgenic gammadelta T cells in the vaginal epithelium suggests that homing of gammadelta T cells to this site is not restricted to gammadelta T cells that express the V4/NS1 invariant TCR. Furthermore, these findings imply that retention of gammadelta T cells in the vaginal epithelium of normal mice is affected by a Vgamma4/Vdelta1-specific mechanism. The finding of a significant level of apoptosis in the transgenic vaginal gammadelta T cells, but not in the normal vaginal gammadelta T cells, could reflect that the mechanism of retention of Vgamma4/Vdelta1 + in the vaginal epithelium involves selective survival at the site.

Animals↗

CD4+ CD45RA+ T cells from adults respond to recall antigens after CD28 ligation.

The leukocyte common antigen isoforms CD45RA and CD45RO have long been used to discriminate human naive and memory T cells respectively. This model was largely based on the observation that CD45RO+ T cells respond preferentially to and show a higher frequency of precursors specific for recall antigens. However, CD45RA+ T cells have more stringent requirements for stimulation and standard in vitro assays may favour CD45RO+ cells in this respect. We tested the hypothesis that CD45RA+ T cells respond poorly to in vitro stimulation with recall antigens because of inadequate stimulation rather than a lack of precursors. Limiting dilution analyses (LDA) for tetanus toxoid (TT)-specific T cells were performed in the presence or absence of exogenous anti-CD28 antibody. Addition of anti-CD28 yielded no proliferation in the absence of specific antigen. The precursor frequency for TT in the CD4+ CD45RO+ population was approximately 1:4000, while the frequency of CD4+ CD45RA+ T cells specific for TT was 4- to > 20-fold lower. Addition of anti-CD28 antibody did not significantly alter the apparent precursor frequency for CD45RO+ cells but yielded an enhancement of the value for CD45RA+ cells by 3- to > 5-fold. No enhancement of antigen-specific proliferation by anti-CD28 was observed with CD45RA+ T cells derived from cord blood, although phytohemagglutinin responses of these cells were amplified by CD28 antibody. These results indicate that conventional LDA underestimate the true precursor frequency of antigen-specific cells within the adult CD45RA+ population and support the possibility that a small number of cells revert from a primed (CD45RO+) to an unprimed (CD45RA+) state. The majority of memory T cells, however, appear to reside in the CD45RO+ population.

Adult↗

Role of naive and memory T cells in tumor cell lysis mediated by bi-specific antibodies.

Bispecific monoclonal antibodies (Bi-mAb) with specificity for a tumor associated antigen and the CD3 or CD28 antigen on T lymphocytes, respectively, induce activation of resting T lymphocytes and target-specific tumor cell lysis. Former studies had confirmed that T cells expressing the CD45RO "memory" antigen at high levels were the most potent effectors of Bi-mAb-mediated cytotoxicity when compared to their "naive" counterparts expressing the CD45RA antigen. Further analysis of the T cell subpopulations revealed that within the memory T cell pool, CD8+ T cells were the effector cell, population with strongest cytolytic activity. The cytolytic activity was correlated with the expression level of perforin and granzymes B mRNA. Ca2+ complexing agents, which abrogate perforin activity, reduced necrosis, while inhibition of granzyme activity in effector or target-cells had a similar effect on apoptosis. These results confirm the crucial role perforin and granzymes play in target-cell lysis and explain why CD8+CD45RO+ T cells activated by combined CD3 and CD28 antigen triggering represent the T cell pool with highest cytolytic potential.

Antibodies, Bispecific↗