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S Ferrini

Publications and source records attributed to S Ferrini.

At least 91 records · Page 5Linked to original sources

Induction of functional activities of human lymphocytes by monoclonal antibodies.

Monoclonal antibodies (MoAbs) specific for surface molecules involved in lymphocyte activation, represent an useful tool for the analysis of the activation pathways of different effector lymphocytes. We have analyzed the ability of MoAbs directed against "triggering" surface molecules, such as CD3/TCR, CD2 and CD16 to induce activation of the lytic machinery in T and NK lymphocytes, using a redirected killing assay. In addition, we have constructed bispecific monoclonal antibodies (BiMoAbs) directed against both the CD3/TCR complex (or the CD16 molecule) and a tumor associated antigen expressed on the surface of ovarian cancer cells. BiMoAbs were constructed by two different approaches: a) conjugation of two distinct MoAbs by a chemical heterobifunctional agent; b) selection of hybrid-hybridomas secreting BiMoAbs. BiMoAbs were able to focus appropriate lymphoid effector cells on tumor cells expressing the relevant antigen, and to induce tumor cell lysis. Therefore, these reagents were able to confer a new specificity for a given antigen to effector lymphocytes, independently from the original one. For these properties, BiMoAbs may represent a suitable tool for new strategies of adoptive immunotherapy, based on the use of effector cells that have been specifically armed by BiMoAbs against the tumor.

Animals↗

Peripheral blood and tumor infiltrating lymphocytes in non-small cell lung cancer: analysis at the population and clonal level.

Tumor infiltrating (TIL) and peripheral blood lymphocytes (PBL) were isolated from 18 patients with non-small cell lung cancer undergoing radical surgery. Surface marker analysis revealed that TILs and PBLs mainly consisted of CD3+ T cells and that TILs generally displayed a lower CD4/CD8 ratio. Differences were found in the expression of CD25 (IL-2 receptor) and DR (MHC class II) antigens, which were increased in TILs, and in the percentage of CD16+ natural killer (NK) cells, which was reduced in TILs as compared to PBLs. Accordingly, the NK activity of TILs was lower than that of PBLs, whereas neither TILs nor PBLs expressed spontaneous cytolytic activity against fresh autologous tumor cells, melanoma cells and the "NK-resistant" A549 lung carcinoma cell line. After 4 days of culture in medium with recombinant-interleukin-2 (rIL-2), TILs and PBLs acquired cytolytic activity against all cell targets, but TILs expressed higher levels of cytotoxicity than autologous PBLs only in 3 patients out of 16 tested. More importantly, both TILs and PBLs displayed similar levels of cytotoxic activity against autologous tumor cells. TILs and PBLs from 8 patients were also analyzed by a limiting dilution microculture system. Cloning efficiency was remarkably lower in TILs, and surface marker analysis of T cell clones confirmed that an accumulation of CD8+ lymphocytes, which displayed cytolytic activity in a lectin-dependent assay, occurred at the tumor site. The non-MHC-restricted cytolytic activity of TIL- and PBL-derived T cell clones against K562, A549, and allogeneic melanoma cells and the cytolytic activity against autologous tumor cells showed no significant differences. Only 53% of TIL clones released IL-2 in response to PHA + TPA stimulation, whereas 68% of PBL-derived clones were IL-2 producers. Moreover, most PBL- and TIL-derived clones released tumor necrosis factor alpha in response to mitogen stimulation.

Aged↗

Specific recognition of human CD3-CD16+ natural killer cells requires the expression of an autosomic recessive gene on target cells.

We analyzed the recently defined ability of CD3-CD16+ cells to specifically recognize and lyse normal allogeneic target cells (PHA-induced blasts). The susceptibility to lysis by a given alloreactive natural killer (NK) clone ("1 anti-A") was expressed by PHA blasts derived from 9 of 38 random donors analyzed. In all instances, the specific lysis of "susceptible" target cells was greater than 35% while that of "nonsusceptible" targets was less than 6% at an E/T cell ratio of 5:1. In addition to 1 anti-A, A anti-1 specific CD3-CD16+ clones could also be isolated from the reverse MLC combination. The relationship existing between lysis of normal allogeneic cells or tumor cells by the same CD3-CD16+ effector cell has been investigated: 1 anti-A specific CD3-CD16+ clones lysed PHA blasts of three of six cancer patients, while they lysed fresh tumor cells (ovarian carcinoma) from all six patients. The type of inheritance of the character "susceptibility to lysis" was analyzed in representative families. This analysis revealed that the character is inherited in an autosomic recessive fashion, and it is therefore different from MHC. We further investigated the type of segregation of the opposite character "resistance to lysis" (which is inherited in a dominant mode). The finding that this character segregated in all donors expressing given MHC haplotypes indicated that the gene regulating the expression of the NK-defined alloantigen is present on chromosome 6.

Antibodies, Monoclonal↗

Further analysis of the T cell receptor gamma/delta+ peripheral lymphocyte subset. The V delta 1 gene segment is expressed with either C alpha or C delta.

In the present study, we have characterized the reactivity of two mAbs that are directed at the human TCR-gamma/delta. These reagents, designated anti-A13 and anti-TiV delta 2, were found to recognize antigenic determinants encoded by the TCR V delta 1 and V delta 2 gene segments, respectively. Immunofluorescence analyses performed with the antibodies confirmed that, in the TCR-gamma/delta+ cell subpopulation, the expression of V delta 2+ delta chains is largely predominant, as compared with the V delta 1+ counterparts. However, these experiments led to an apparently discrepant finding. Indeed, the total number of cells recognized by the anti-A13 plus the anti-TiV delta 2 antibodies was often greater than that detected with anti-TCR-delta 1, a reagent specific for a constant epitope of the human delta chain. Further investigation showed that the presence of a sizeable peripheral lymphocyte subset coexpressing the BMA031 and the A13 epitopes. Because the former antibody is known to recognize an invariant antigenic determinant of the TCR-alpha/beta dimer, these results suggested that the V delta 1 gene segment may be expressed with either C delta or C alpha. This hypothesis was confirmed using T2, an IL-2-dependent BMA031+ A13+ polyclonal cell line developed from peripheral blood of a healthy adult donor. Indeed, T2 cells were found to have productively rearranged the V delta 1 gene. Together, results of Northern blot analysis and cDNA cloning indicated that V delta 1 was expressed in these cells as part of a 1.6-kb full-length message including J alpha-C alpha segments.

Animals↗

Human lymphocytes expressing a TCR gamma/delta.

A minor subset of T lymphocytes express a TCR composed of gamma and delta chains. This subset differs from conventional T cells for a number of phenotypic and functional characteristics. TCR gamma/delta + cells simultaneously lack both CD4 and CD8 antigens. Cloning of CD4-8-peripheral blood lymphocytes, under limiting dilution conditions, revealed that they are homogeneously composed of cytolytic cells which efficiently lyse tumor target cells. Formal proofs have been provided that TCR gamma/delta + cells are able to recognize antigens. For example, they proliferated in response to allogeneic mixed lymphocyte culture (MLC), in addition MLC-derived TCR gamma/delta + cells specifically lysed PHA-induced blast cells bearing the stimulating alloantigens. The selection of monoclonal antibodies (MoAbs) specific for TCR gamma/delta molecules allowed to identify two distinct subsets of TCR gamma/delta + cells. These MoAbs, termed BB3 and delta-TCS-1 (or the equivalent A13) respectively, induced specific activation of cloned cells expressing the corresponding antigenic determinants (as assessed by measurements of intracellular Ca2+ and/or lymphokine production of cytolytic activity). Analysis of the distribution of subsets expressing different forms of TCR gamma/delta, showed that the BB3-reactive form is prevalent in the peripheral blood. In contrast, delta-TCS-1-reactive cells are relatively infrequent in peripheral blood, but represent the majority of TCR gamma/delta + in the tissues.

Animals↗

Re-targeting of human lymphocytes expressing the T-cell receptor gamma/delta to ovarian carcinoma cells by the use of bispecific monoclonal antibodies.

TcR gamma/delta+ lymphocytes represent a small subset homogeneously composed of cytolytic T cells displaying unique motility and homing properties. Since the lytic machinery of these cells can be efficiently triggered by monoclonal antibodies (MAbs) directed to the TcR gamma/delta, such MAbs were used for the construction of bispecific MAbs in conjunction with an MAb specific for ovarian carcinoma cells. Hybrid hybridomas were obtained by fusing the Mov19 MAb (IgG2a)-producing hybridoma with either GI (IgG2a) or A13 (IgG1) hybridomas, secreting MAbs specific for 2 peripheral blood subsets of TcR gamma/delta+ lymphocytes. Hybrid hybridomas producing bispecific MAbs were screened according to their ability to induce ovarian carcinoma (IGROVI) target cell lysis by GI+ or A13+ T cell clones, respectively. The GI-derived GM33.9 bispecific MAb induced selective lysis of Mov19+ ovarian carcinoma target cells only by GI+ clones, whereas the A13-derived AM18.4 MAb was effective only in combination with A13+ clones. Neither the anti-TcR gamma/delta nor the Mov19 parental MAbs (used alone or in combination) induced target-cell lysis. The hybrid nature (IgG1/IgG2a) of the AM18.4 bispecific MAb was indicated by 2-color immunofluorescence experiments. Thus, both ovarian carcinoma and A13+ effector cells were double stained by AM18.4 bispecific MAb followed by PE-conjugated anti-IgG1 and FITC-conjugated anti-IgG2a second reagents. Polyclonal TcR gamma/delta+ cells were obtained by direct stimulation of peripheral blood mononuclear cells with Sepharose bead-conjugated anti-TcR gamma/delta MAbs and IL-2. The lines so obtained contained more than 90% of TcR gamma/delta+ cells after 4 weeks of culture, with an increase in TcR gamma/delta+ cell numbers ranging from 200 to 1,000-fold. These TcR gamma/delta+ cell lines efficiently lysed ovarian carcinoma target cells in the presence of bispecific MAb and may therefore represent a suitable source of effector cells for induction of ovarian carcinoma cell lysis.

Antibodies, Monoclonal↗

Monoclonal antibodies which react with the T cell receptor gamma/delta recognize different subsets of CD3+WT31- T lymphocytes.

A polyclonal CD3+4-8-WT31- cell line (termed SFG) was utilized for mice immunization in order to produce monoclonal antibodies (mAb) specific for the T cell receptor (TcR) gamma/delta. Hybrid supernatants were screened for their ability to induce SFG cells (but not conventional TcR alpha/beta + CTL lines) to kill the murine Fc receptor-positive P815 target cell line. Three hybrids, termed G1, A13 and F11, were isolated according to this screening. By indirect immunofluorescence G1 mAb reacted with 65% of SFG cells, while A13 stained 26% and F11 75% of cells. Double-fluorescence analysis revealed that G1 and A13 mAb identify two distinct, non-overlapping subsets of cells present in the SFG cell line. The reactivity of the mAb was also analyzed on a panel of representative TcR gamma/delta clones. G1 mAb reacted with 5 clones, that were also stained by the previously described BB3 mAb (recognizing the disulfide-linked form of TcR gamma/delta). These clones failed to react with A13 and delta-TCS-1 mAb (the latter of which is known to react with a non-disulfide-linked form of TcR gamma/delta). Out of six clones that reacted with A13 mAb, four were also delta-TCS-1+, whereas two were delta-TCS-1- and none of them reacted with G1, (or BB3) mAb. In contrast to the mAb above, F11 brightly stained the G1+A13- clones and more weakly the G1-A13+ clones. Moreover, F11 efficiently triggered both types of clones to kill the P815 target cells while G1 and A13 were able to trigger only G1+ or A13+ clones, respectively. None of the mAb above reacted with a large number of CD3+WT31+ clones. Antibody-induced surface antigen modulation experiments indicated that molecules recognized by G1, A13 and F11 were physically associated on cell surface with CD3 determinants. In addition, immunoprecipitation followed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis (performed on 125I-surface-labeled TcR gamma/delta+ clones) revealed that molecules recognized by G1, A13 and F11 displayed an apparent mol. wt. corresponding to that of CD3-associated TcR molecules, immunoprecipitated by anti-CD3 mAb from the same clones.

Animals↗

Morphologic and functional characterization of human peripheral blood T cells expressing the T cell receptor gamma/delta.

The morphologic and functional characteristics of cells freshly isolated from human peripheral blood and bearing a T cell receptor (TcR) gamma/delta were analyzed. Cell preparations highly enriched for TcR gamma/delta+ cells were obtained by treatment of E rosette-forming lymphocytes with anti-CD4 and anti-CD8 monoclonal antibodies (mAb) and complement. These preparations consisted of 64-82% TcR gamma/delta+ lymphocytes, as indicated by the sum of cells reacting with the BB3 and A13 mAb which define two distinct, nonoverlapping, TcR gamma/delta+ cell subsets in the peripheral blood. TcR gamma/delta cells were able to form conjugates with the natural killer-sensitive K-562 and with the natural killer-resistant HL-60-R tumor cell lines. The cytochemical localization of lysosomal acid hydrolases showed that 95%-98% of the cells in the TcR gamma/delta+ preparations had the morphologic features of granular lymphocytes. Moreover, electron microscopy analyses showed that TcR gamma/delta+ cells had electron-dense granules dispersed in the cytoplasm and a variety of smooth vesicles, a morphology identical to that of other CD3- or CD3+ granular lymphocyte subsets. Freshly isolated TcR gamma/delta+ cells were unable to lyse K-562 and natural killer-resistant targets, such as HL-60-R and P815. However, low levels of target cell lysis were observed upon triggering of the effectors by anti-CD3 TcR mAb or by lectin. After short-term culture with interleukin 2, TcR gamma/delta+ cells acquired a strong cytolytic activity against K-562 and HL-60-R target cells in the absence of triggering stimuli, and also displayed high levels of cytolytic activity against P815 in the presence of anti-CD3/TcR mAb.

Antigens, Differentiation, T-Lymphocyte↗

Transcription of unrearranged T cell receptor delta genes in CD3- major histocompatibility complex-unrestricted cytotoxic cells.

Transcription of the T cell receptor (TcR) delta gene was detected in clones and in enriched populations of CD3- major histocompatibility complex-unrestricted cytotoxic cells. The transcripts were derived, at least in part, from unrearranged TcR delta genes, as shown by hybridization to a synthetic oligonucleotide probe corresponding to germ-line sequences just upstream of J delta 1. Transcripts from unrearranged TcR delta genes are similar in size to those from productively rearranged genes. The fact that the bulk of delta transcripts was derived from unrearranged genes was supported by the observation that TcR delta gene rearrangements were not detected in DNA isolated from an enriched CD3- cytotoxic cell population. Transcription of the TcR delta gene in CD3- cytotoxic cells is consistent with the notion that these cells belong to a T cell lineage.

Antigens, Differentiation, T-Lymphocyte↗

Retargeting of T-cell-receptor gamma/delta+ lymphocytes against tumor cells by bispecific monoclonal antibodies. Induction of cytolytic activity and lymphokine production.

We have recently selected MAbs specific for different molecular forms of the TCR gamma/delta (expressed by distinct cell subsets), able to activate TCR gamma/delta+ cells. Two of these reagents (G1 and A13) were used for the construction of bispecific MAbs in conjunction with a MAb (Mov19) directed to ovarian carcinoma cells, using the hybrid hybridoma technique. The G1-derived bispecific MAb GM33.9 efficiently induced lysis of Mov19+ ovarian carcinoma cell lines (IGROVI and SW626) by G1+ clones in a 4-hr 51Cr-release assay. On the other hand, it was ineffective when Mov19- target cells were used. Comparable results were obtained with the A13-derived AM18.4 bispecific MAb when A13+ clones were used as effector cells. Bispecific MAbs were also able to induce secretion of IL-2 and TNF-alpha by TCR gamma/delta+ clones when Mov19+ target cells were present.

Antibodies, Monoclonal↗

Human T lymphocytes expressing gamma/delta T cell antigen receptor.

The majority of mature T lymphocytes express CD3-associated antigen receptor molecules (TCR) formed by alpha and beta chains. Recently, a minor subset has been identified that expresses a different CD3-associated heterodimer composed of gamma and delta chains. The TCR gamma/delta+ cell subset differs from conventional T cells for a number of phenotypic and functional characteristics. The simultaneous lack of both CD4 and CD8 antigens allows to greatly enrich TCR gamma/delta+ cells (by monoclonal antibodies and complement). Cloning of CD4-8- peripheral blood lymphocytes, under limiting dilution conditions, revealed that they are homogeneously composed of cytolytic cells which, in most instances, lyse tumor target cells. The formal proof has been provided that TCR gamma/delta+ cells are able to recognize antigens. Indeed they proliferated in response to allogeneic cells in mixed lymphocyte culture (MLC) and MLC-derived TCR gamma/delta+ cells specifically lysed PHA-induced blast cells bearing the stimulating alloantigens. The use of different monoclonal antibodies specific for TCR gamma/delta molecules allowed to identify two distinct subsets which bound BB3 and delta-TCS-1 mAbs, respectively. The BB3-reactive TCR molecules were represented by C gamma 1-encoded disulfide-linked heterodimers, whereas delta-TCS-1 reacted with C gamma 2-encoded nondisulfide-linked molecules. Both BB3 and delta-TCS-1 mAb induced activation of cloned cells expressing the corresponding antigenic determinants (as assessed by measurements of intracellular Ca2+ and lymphokine production or cytolytic activity). Analysis of the unfrequent delta-TCS-1+ clones which express surface CD8 molecules revealed that the "heavy" 55 kDa form of (C gamma 2-encoded) gamma chain is selectively expressed by this cell type. Analysis of the distribution of subsets expressing different TCR gamma/delta isotypes showed that the C gamma 1-encoded, BB3-reactive form is prevalent in the peripheral blood, but virtually absent in the thymus. In contrast, cells expressing the C gamma 2-encoded, delta-TCS-1 reactive form are relatively unfrequent in peripheral blood, but represent the majority of TCR gamma/delta+ thymocytes. In addition, upon culture in rIL-2, approximately half of the delta-TCS-1+ thymocytes expressed CD8 antigen, thus providing further evidence that major differences exist in the distribution of TCR gamma/delta+ subsets in thymus and in peripheral blood.

Antibodies, Monoclonal↗

Human T cells expressing the gamma/delta T-cell receptor (TcR-1): C gamma 1- and C gamma 2-encoded forms of the receptor correlate with distinctive morphology, cytoskeletal organization, and growth characteristics.

BB3 and delta-TCS1 monoclonal antibodies identify two distinct nonoverlapping populations of T-cell receptor (TcR) gamma/delta (TcR-1)-positive cells, which express a disulfide-linked and a nondisulfide-linked form of TcR, respectively. BB3+ cells represented the majority of circulating TcR-1+ cells, but they were virtually undetectable in the thymus. On the other hand, delta-TCS1+ cells were largely predominant among TcR-1+ thymocytes but represented a minority in peripheral blood (PB). Similar distributions were observed by clonal analysis of thymocytes or PB TcR-1+ populations. The use of joining region (J)-specific probes indicated that BB3+ and delta-TCS1+ clones displayed different patterns of J rearrangement. Thus, the disulfide-linked form of TcR-1 (BB3+ clones) was associated with the expression of J segments upstream to the C gamma 1 gene segment, whereas the nondisulfide-linked form (delta-TCS1+ clones) was associated with the expression of J segments upstream to C gamma 2. delta-TCS1+ clones, in most instances, exhibited a growth pattern different from that of BB3+ or conventional TcR alpha/beta+ clones as they adhered promptly to surfaces, spread, and emitted long filopodia ending with adhesion plaques. Ultrastructural analyses showed, exclusively in delta-TCS1+ cells, nuclear deformations, uropod formation, and abundant cytoskeletal structures. In addition, immunofluorescence studies of this subset of TcR-1+ cells revealed the presence of abundant microtubules, intermediate filaments, and submembranous microfilaments. Thus, our findings suggest that delta-TCS1+ cells are capable of active motility.

Blotting, Southern↗

Phenotypic and functional characterization of T cell clones following allogeneic bone marrow transplantation.

T cell clones (n = 456) were derived from 9 patients following allogeneic bone marrow transplantation (BMT) with or without acute graft versus host disease (aGVHD) and from 4 healthy donors. The cloning efficiency was 63.2% in controls, 13.2% and 12.1% in patients with or without aGVHD. Once established, T cell clones were typed for surface markers (CD3, CD4, CD8) and tested for production of IL-2 and expression of cytolytic activities in a lectin-dependent cellular cytotoxicity assay (LDCC) and against the K562 target cell line to detect natural killer activity. We found the expected imbalance of CD4/CD8 clones in BMT patients, as compared to controls. A higher proportion of IL-2-producing clones was observed in patients with aGVHD (83.5%; P less than 0.02) as compared to patients without aGVHD (64.8%) and controls (68.5%). No major differences were found in terms of LDCC, whereas an increased percentage of clones with NK-like activity was found in patients with aGVHD (34.7%, P less than 0.05) as compared to patients without aGVHD (29.5%) and controls (21.3%). The clones were also tested for inhibition of IL-2 production mediated by cyclosporine. Such inhibition could be obtained in virtually all clones both in patients with or without aGVHD, suggesting that the latter is probably not due to the emergence of CsA-resistant clones. In conclusion, this study demonstrates a low cloning efficiency in BMT patients associated with the well-known CD4/CD8 imbalance. A higher production of IL-2, an increased NK activity, but not the presence of CsA-resistant clones appear to differentiate patients with from patients without aGVHD.

Antigens, Surface↗

Phenotypic and functional analysis at the clonal level of infiltrating T lymphocytes in papillary carcinoma of the thyroid: prevalence of cytolytic T cells with natural killer-like or lymphokine-activated killer activity.

We investigated the phenotype and function of thyroid tumor-, metastatic lymph node-, and peripheral blood-derived T lymphocytes of four patients with papillary thyroid cancer. Both phenotypic analysis of freshly isolated cells and clonal analysis, using a high efficiency cloning technique, were performed. For comparison, intrathyroid and peripheral blood T lymphocytes derived from patients with autoimmune thyroid diseases (Graves' disease and Hashimoto's thyroiditis) have been studied. In papillary cancer, the phenotype of thyroid and lymph node-derived T lymphocytes did not differ from that of peripheral blood lymphocytes of the same patients or lymphocytes from normal peripheral blood. At variance with respect to autoimmune thyroid disease, activation markers were poorly represented. The functional analysis of T cell clones showed similar proportions of interleukin-2-producing (helper-inducer) clones in thyroid, lymph node, and peripheral blood, slightly lower than in Hashimoto's thyroiditis and slightly higher than in Graves' disease. With regard to effector function, we found lower proportion of clones with cytolytic activity in a lectin-dependent assay compared to that in Hashimoto's thyroiditis. Interestingly, however, the proportions of cytolytic clones displaying cytolytic activity against the neoplastic cell line K562 (natural killer-like activity) or fresh unrelated tumor cells (lymphokine-activated killer activity) were relatively high in thyroid cancer infiltrates.

Adult↗

Human peripheral blood lymphocytes bearing T cell receptor gamma/delta. Expression of CD8 differentiation antigen correlates with the expression of the 55-kD, C gamma 2-encoded gamma chain.

We analyzed the CD3-associated molecules present on peripheral blood-derived TCR-gamma/delta+ clones that express CD8 surface antigens. Clones were derived by limiting dilution from CD3+WT31- FACS-purified populations derived from several donors. Eight of greater than 300 TCR-gamma/delta+ clones analyzed expressed CD8 and reacted with delta-TCS-1 mAb. Cell numbers suitable for more detailed analyses could be obtained from four clones, including one derived from thymus. Analysis of CD3-associated TCR molecules immunoprecipitated by anti-Leu-4 (anti-CD3) mAb under conditions that preserve the CD3/TCR association (1% digitonin) showed a predominant 55-60-kD molecule both under reducing and nonreducing conditions. On the other hand, the delta-TCS-1-reactive molecules immunoprecipitated from 25 CD3+ delta-TCS-1+ CD8- clones, in all instances, displayed a 40-44-kD mol mass. In two-dimensional PAGE, TCR-gamma molecules precipitated from delta-TCS-1+ CD8+ clones appeared more acidic than those of BB3+ or delta-TCS-1+ CD8+ clones. Southern analysis confirmed that this type of non-disulphide-linked TCR-gamma/delta is also coded for by the C gamma 2 gene segment.

Antigens, Differentiation, T-Lymphocyte↗

Two subsets of human T lymphocytes expressing gamma/delta antigen receptor are identifiable by monoclonal antibodies directed to two distinct molecular forms of the receptor.

Two mAbs directed to the TCR-gamma/delta were analyzed for their pattern of reactivity with CD3+WT31- cell populations or clones. In normal individuals, the BB3 mAb reacted with approximately 2/3 of peripheral blood CD3+WT31- lymphocytes, whereas delta-TCS-1 stained approximately 1/3 of such cells. In addition, the sum of the percentages of BB3+ and delta-TCS-1+ cells approximated the percentages of peripheral blood CD3+WT31- lymphocytes in seven normal donors tested. Also, in peripheral blood-derived polyclonal CD3+WT31- populations, cultured in IL-2, cells reacting with one or another mAb accounted for the whole cell population. On the other hand, only delta-TCS-1-reactive cells, but not BB3+ cells, could be detected in unfractionated as well as in CD4-8-thymocyte populations. Analysis of peripheral blood-derived CD3+WT31- clones showed that 70% of 72 clones analyzed reacted with BB3 mAb, but not with delta-TCS-1 mAb. On the other hand, delta-TCS-1 mAb stained the remaining BB3- clones. Five clones expressing medium-low amounts of CD8 antigen were BB3- delta-TCS-1+. Both types of clones lysed the Fc gamma receptor-bearing P815 target cell in the presence of anti-CD3 mAb (but not of mAb directed against HLA-DR, CD7 molecules, or TCR-alpha/beta). In this cytolytic assay, BB3 mAb induced target cell lysis only by BB3+ clones, whereas delta-TCS-1 mAb was effective only with delta-TCS-1+ clones. The CD3-associated surface molecules expressed by BB3+ or delta-TCS-1+ clones were analyzed after cell surface iodination and immunoprecipitation with the corresponding anti-TCR mAb or with anti-CD3 mAb (in digitonin-containing buffer). In SDS-PAGE, molecules immunoprecipitated from 13 BB3+ clones displayed, under nonreducing conditions, a molecular weight of 80 kD (in some cases, a minor 38-kD band could be detected). Under reducing conditions, two major components of 44 and 41 kD (and a minor component of 38 kD) were detected. On the other hand, TCR molecules immunoprecipitated from 11 different delta-TCS-1+ clones appeared as a diffuse band of 41-44 kD, both under reducing and nonreducing conditions (under non-reducing condition, an additional 38-kD band was present). Therefore, BB3+ cells express a disulphide-linked form of TCR-gamma/delta whereas delta-TCS-1+ cells express a non-disulphide-linked form.(ABSTRACT TRUNCATED AT 400 WORDS)

Antibodies, Monoclonal↗

A monoclonal antibody specific for a common determinant of the human T cell receptor gamma/delta directly activates CD3+WT31- lymphocytes to express their functional program(s).

In an attempt to select mAbs specific for human TCR-gamma/delta, a polyclonal CD3+ 4-8-WT31- (TCR-gamma/delta+) cell line (MV1) was used for mice immunization. An mAb, termed BB3, reacted with MV1 cells but not with a large panel of CD3+ WT31+ (TCR-alpha/beta+) cell populations or clones. In addition, BB3 mAb reacted with the majority of CD3+ WT31- clones derived from six different donors. Double-color fluorescence experiments and FACS analysis showed that BB3+ cells were restricted to the CD3+ fraction of peripheral blood lymphocytes; in addition, in several donors the percentages (0.5-8% of total PBL) of BB3+ cells paralleled those of CD3+ WT31- cells. Surface molecules recognized by BB3 were susceptible to antibody-induced modulation; in addition, cell treatment with either BB3 or anti-CD3 mAb caused the simultaneous downregulation of the two molecules. That BB3 molecules are physically linked to CD3 antigen was further supported by immunoprecipitation experiments. Thus, under conditions that preserve the TCR-CD3 association, both BB3 and anti-CD3 mAb precipitated from 125I-labeled MV1 cells the same set of molecules. These consisted in the 18-28-kD CD3 molecules and in three bands of approximately 44, 42, and 38 kD under reducing conditions. When cell lysis was performed in 1% NP-40, the molecules immunoprecipitated by BB3 mAb were represented by an 80-kD band under nonreducing conditions, which resolved, under reducing conditions, in the three 44-, 42-, and 38-kD bands. Similar disulphide-linked forms of the TCR molecules were revealed in all of the other eight CD3+ WT31- BB3+ clones analyzed. Analysis of TCR molecules by electrophoresis (NEPHGE) showed that BB3 or anti-CD3 precipitated a 44-kD molecule displaying a basic PI (approximately 7.5) and two more acidic proteins (PI approximately 6) with a mol mass of 42 and 38 kD. Studies aimed to define whether stimuli directly acting on TCR-gamma/delta could induce CD3+ WT31- cell activation revealed that (a) In the presence of PMA, soluble BB3 mAb induced IL-2 production by MV1 cell line and by three other CD3+ WT31- BB3+ clones analyzed. (b) BB3 mAb-producing hybridoma used as triggering target, was efficiently lysed by CD3+ WT31- BB3+ effector cells (but not by CD3+ WT31+ BB3- conventional CTL). (c) Soluble BB3 mAb induced CD3+ WT31- BB3+ effector cells to lyse the Fc receptor-positive P815 target cells. (d) BB3-TCR-gamma/delta interaction on CD3+ WT31- BB3+ cells induced a rapid increase of [Ca2+]i levels, similar to that observed in response to anti-CD3 mAbs.

Animals↗

Human cytolytic cell clones lacking surface expression of T cell receptor alpha/beta or gamma/delta. Evidence that surface structures other than CD3 or CD2 molecules are required for signal transduction.

We have analyzed the transmembrane signaling operating in human cytolytic lymphocytes lacking surface expression of the CD3/TCR complex. Peripheral blood lymphocytes were fractionated into CD3+ and CD3- on the FACS and cloned under limiting conditions in the presence of PHA and IL-2. Approximately 90% CD3+ and 10% CD3- cells underwent clonal expansion. Clones obtained from the CD3- fraction belonged to two main phenotypic groups: CD2+ CD7+ and CD2- CD7+. Several clones were expanded and analyzed for surface phenotype and function. All of the five clones selected for detailed analysis did not express CD4, CD8, and CD28 antigens and did not release IL-2, whereas they displayed cytolytic activity against NK-sensitive, NK-resistant, and fresh tumor target cells. After stimulation with anti-CD2 mAbs or PHA a rapid increase in [Ca2+]i was detected in CD3- CD2+ CD7+ clones. This increment was caused by the release of Ca2+ from intracellular stores and by the influx from the extracellular compartment. Signaling in response to PHA did not appear to be dependent upon surface expression of CD2 molecules since antibody-induced modulation of CD2 did not prevent PHA-induced signal transduction. Similarly, in CD3- CD2- CD7+ clones [Ca2+]i increments and inositol phosphate formation occurred after stimulation with PHA. These data indicate that the functional PHA-binding structures, expressed in both groups of CD3- clones, are distinct from CD3/TCR complex and CD2 molecules.

Antibodies, Monoclonal↗