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T Hercend

Publications and source records attributed to T Hercend.

At least 55 records · Page 3Linked to original sources

Analysis of T cell receptor variability in tumor-infiltrating lymphocytes from a human regressive melanoma. Evidence for in situ T cell clonal expansion.

Malignant melanomas are often infiltrated by T lymphocytes. It is postulated that the presence of tumor-infiltrating lymphocytes (TIL) reflects ongoing immune responses against transformed cells. Such "responses" appear generally inefficient with the potential exception of infrequent clinical situations characterized by spontaneous tumor regression. We have characterized here the molecular structure of the T cell receptor beta chain expressed by TILs in a case of regressive melanoma. Advantage was taken of the PCR technology to study T lymphocytes directly without cell culture. Experimentally validated V beta subfamily specific primers were used to evaluate the V beta usage in TILs and control samples. Our results reveal that clonal T cell populations, precisely defined by their V-D-J junctional sequences, are amplified at the tumor site. The existence of such local antigen-driven selections support the hypothesis that antitumor responses may indeed take place in regressive melanoma.

Aged↗

Analysis of T-cell receptor variability in transplanted patients with acute graft-versus-host disease.

T lymphocytes play a pivotal role in graft-versus-host disease (GVHD) and largely contribute to the graft-versus-leukemia (GVL) effect. Most mature T lymphocytes specifically recognize antigens through the alpha/beta T-cell receptor (TCR). Each alpha/beta TCR chain includes a constant region and a variable region, the latter being encoded by V-J alpha or V-D-J beta rearranged gene segments. To better characterize T cells involved in GVHD, V alpha and V beta gene segment usage was analyzed, after cDNA amplification, in peripheral blood mononuclear cells (PBMC) and skin samples from three patients with grade II cutaneous GVHD. At time of GVHD diagnosis (days 11, 22, and 25), when first signs of engraftment were detectable, virtually all V alpha and V beta subfamilies were represented in PBMC RNAs of the three recipients. These results suggest that diversified TCR gene segment expression is observed early after allogenic bone marrow transplantation (alloBMT). Lymphocytes infiltrating GVHD skin also expressed a large series of V alpha and V beta subfamily specificities. However, analysis of the V alpha and V beta amplified products showed substantial differences between PBMC and the skin lymphocyte RNAs. These observations indicate that a large variety of T lymphocytes are present at the disease site, while some of them may be specifically amplified or decreased in response to minor histocompatibility antigens (miHA). Further characterization of the latter T-cell subpopulations should lead to a better understanding of human in vivo responses directed at miHA.

Acute Disease↗

Analysis of T-cell receptor alpha/beta variability in lymphocytes infiltrating a melanoma metastasis.

Multiple experimental and clinical studies have suggested that the immune system may, to some extent, control the development of melanomas. The presence of tumor-infiltrating lymphocytes could reflect an in situ immune reaction directed to the malignant cells. The characterization of T-cell receptor (TCR) expressed by tumor-infiltrating lymphocytes is one way to precisely analyze these local T-cell responses. In this study, we have assessed the TCR alpha/beta variability in tumor-infiltrating lymphocytes from a subcutaneous metastasis of a melanoma patient. Using the anchored-polymerase chain reaction 268 TCR alpha and 266 TCR beta chain transcripts have been cloned and sequenced. Their analysis shows that the T-cell infiltrate is extremely diverse, with no preferential TCR gene segment usage.

Adult↗

Characterization of the lymphocyte activation gene 3-encoded protein. A new ligand for human leukocyte antigen class II antigens.

The lymphocyte activation gene 3 (LAG-3), expressed in human activated T and natural killer (NK) cells, is closely related to CD4 at the gene and protein levels. We report here the initial characterization of the LAG-3-encoded protein. We have generated two monoclonal antibodies after immunization of mice with a 30-amino acid peptide that corresponds to an exposed extra loop region present in the LAG-3 immunoglobulin-like first domain. The reactivity of these reagents is directed against LAG-3 since they recognize both membrane-expressed and soluble recombinant LAG-3 molecules produced in a baculovirus expression system. The two antibodies are likely to react with the same or closely related epitope (termed LAG-3.1) exposed on the LAG-3 first domain extra loop, as assessed in competition experiments on LAG-3-expressing activated lymphocytes. Cellular distribution analysis indicated that the LAG-3.1 epitope is expressed on activated T (both CD4+ and CD8+ subsets) and NK cells, and not on activated B cells or monocytes. In immunoprecipitation experiments performed on activated T and NK cell lysates, a 70-kD protein was detected after SDS-PAGE analysis. 45-kD protein species were also immunoprecipitated. Both the 70- and 45-kD proteins were shown to be N-glycosylated. In Western blot analysis, only the former molecule was recognized by the anti-LAG-3 antibodies, demonstrating that it is LAG-3 encoded. These anti-LAG-3 antibodies were used to investigate whether the LAG-3 protein interacts with the CD4 ligands. By using a high-level expression cellular system based on COS-7 cell transfection with recombinant CDM8 vectors and a quantitative cellular adhesion assay, we demonstrate that rosette formation between LAG-3-transfected COS-7 cells and human leukocyte antigen (HLA) class II-bearing B lymphocytes is specifically dependent on LAG-3/HLA class II interaction. In contrast to CD4, LAG-3 does not bind the human immunodeficiency virus gp120. This initial characterization will guide further studies on the functions of this molecule, which may play an important role in immune responses mediated by T and NK lymphocytes.

Amino Acid Sequence↗

An experimentally validated panel of subfamily-specific oligonucleotide primers (V alpha 1-w29/V beta 1-w24) for the study of human T cell receptor variable V gene segment usage by polymerase chain reaction.

We report here the characterization of a series of T cell receptor (TcR) V alpha or V beta subfamily-specific oligonucleotide primers. Criteria that have guided the design of each oligonucleotide include appropriate thermodynamic parameters as well as differential base-pairing scores with related and unrelated target sequences. The specificity of the oligonucleotides for each V alpha or V beta subfamily was tested by polymerase chain reaction (PCR) on both a series of TcR encoding plasmid DNA and clonal T cell populations. Unexpected cross-reactivities were observed with plasmid cDNA sequences corresponding to unrelated subfamily gene segments. This led to the synthesis of additional series of oligonucleotides to obtain a relevant panel. A series of V alpha 1-w29/V beta 1-w24 TcR subfamily-specific oligonucleotides was eventually selected which generates little, if any, cross-reactivity. The use of C alpha or C beta primers for the amplification of internal positive control templates (i.e. C beta for the V alpha series and C alpha for the V beta series) has been tested in PCR performed with cDNA derived from peripheral blood lymphocytes; it was shown not to alter the amplification of the V subfamily-specific DNA fragments. This panel of oligonucleotides will be helpful in the study of TcRV gene segment usage and, thus, may lead to a better characterization of T cell responses in physiological and pathological situations.

Base Sequence↗

Studies on NK cell purification by negative selection in human peripheral blood.

We have attempted to improve negative selection procedures for the large scale purification of human CD-3 CD56+ NK cells. In a series of experiments, purifications of NK cells from 10(8) PBMC were performed by T cell depletion using either direct or indirect anti-CD3 labeling and the Magnetic Activated Cell Separation (MACS) procedure. Contaminating CD3+ cells were still present using either one of these two different T cell depletion protocols as shown by phenotyping IL-2 supplemented cell cultures on day 12. A second cycle of purification was therefore added. When MACS and Dynabeads were compared as complementary procedures to the first MACS cycle starting with 10(8) cells, the Dynabeads method was found to be superior to the MACS with regard to the elimination of residual T cells. Starting from 10(9) PBMC, we showed that this MACS+Dynabeads procedure gave similar satisfactory results when compared to the scaling-up of a previously established two steps procedure using Dynabeads. These two approaches (MACS+Dynabeads and 2 cycles of Dynabeads) have been also tested in a clinical setting to purify NK cells from cancer patients prior to in vitro expansion. The results indicate that the two methods are equivalent with respect to purity and recovery rate; a slight advantage in terms of feasibility was found in favor of 2 cycles of Dynabeads.

Animals↗

CD3.TCR1, a human CD3 epitope expressed on viable gamma/delta lymphocytes exclusively.

T lymphocytes express either the alpha/beta or the gamma/delta receptor (TCR) in a mutually exclusive fashion. Both structures are associated on the cell membrane with the CD3 proteins which are thought to transduce signals resulting from antigen recognition. The CD3 complex is present in both alpha/beta and gamma/delta cells and includes at least five proteins (designated gamma, delta, epsilon, zeta and eta). We have developed here a novel mAb, anti-CD3.TCR1, which immunoprecipitates the CD3 molecules from both alpha/beta and gamma/delta cells lysates following solubilization with Triton X-100. While the SDS-PAGE migration profile of the material recognized by either anti-CD3.TCR1 or anti-OKT3 are superimposable in both cell types, this mAb recognizes viable untreated gamma/delta T lymphocytes exclusively. These findings further support the view that molecular interactions within the TCR/CD3 protein complex are distinct in the two T lymphocyte populations.

Animals↗

In vitro responsiveness to interleukins and theophylline of CD16+, CD56- natural killer cells in a patient with chronic granular lymphocyte disorder.

We report here the case of a 55-year-old patient with chronic granular lymphocyte disorder associated with moderate neutropenia. The majority of peripheral blood lymphocytes displayed a CD3-, CD8-, CD16+, CD56(NKH1)- phenotype. The patient's cells showed high spontaneous cytotoxic activity against K562 targets and developed the ability to kill the natural killer (NK)-resistant target Daudi following activation with interleukin 2 (IL-2). Simultaneously, IL-2 induced proliferation of these cells, albeit to a low level. The effects of IL-2 are likely to be mediated through the IL-2R beta chain (p70) which is expressed on these cells in the absence of the IL-2R alpha chain (p55, Tac). IL-4 was demonstrated to be inhibitory of both the cytotoxic and proliferative effects of IL-2. Thus, despite an unusual CD56- phenotype, the expanded lymphocyte population in this patient display functional and phenotypic properties of normal, non-activated NK cells. These cells probably represent the counterpart of a minor NK cell subpopulation, present in normal individuals at a low frequency, and which has never been fully characterized functionally. In addition, we show that the cytolytic activity of this NK cell population can be blocked in vitro in the presence of a cAMP analog or of theophylline, possibly providing new means of investigating the role of NK cell cytotoxicity on the pathogenesis of associated symptoms in such patients.

Antigens, CD↗

[Human lymphocytes carrying the T gamma/delta receptor].

The structure of the gamma and delta chains of the human T lymphocyte receptor has been studied extensively over the past three years. A directory of gamma/delta lymphocytes in different normal or pathological situations has been developed from the analysis of the different sub-populations of circulating (cytofluorometry) or tissue infiltrating (slice immunohistochemistry) gamma/delta T lymphocytes. It has been shown that the gamma and delta chains do not express a very polymorphic pattern; consequently, 2 or 3 anti-V or anti-V/J gamma or delta monoclonal antibodies are sufficient to evaluate any bias in the expression of this receptor in a given pathological situation. We present the genes coding for the gamma and delta chains, the proteins resulting from their expression, the different antibodies recognizing these proteins, the functions associated with gamma/delta + cells and finally certain pathological situations where an expression bias of the different gamma and delta chains has been described.

Antibodies, Monoclonal↗

Further evidence for a gamma/delta T cell receptor-mediated TCT.1/CD48 recognition.

We have demonstrated recently that a molecule, termed TCT.1 (Blast-1/CD48), is recognized on the surface of target cells by a series of alloreactive gamma/delta T cell clones generated from PBL of one healthy individual (designated E). Southern blot analyses suggested that these clones express a TCR associating a V3-JP2-C2 gamma-chain and V1-D-J1-C delta-chain. In the present study, we have developed from PBL of a second normal donor (designated G) a novel series of gamma/delta cloned T cell lines with similar functional activity (i.e., specific recognition of TCT.1 protein). The TCR gamma- and delta-chain nucleotide sequences of both the E and G clones were determined. Results show that 1) sequences from all the clones are identical in each individual donor, 2) the delta-chains expressed by the E and the G clones are encoded by distinct gene rearrangements including V1-D-J delta 1 and V1-D-J delta 2, respectively, 3) the gamma-chains expressed by the E and the G clones are encoded by the same genomic variable elements, namely V gamma 3 and JP2, whereas the junctional regions are distinct. Because the latter rearrangement is very infrequent in human peripheral blood, these data support the view that TCT.1/CD48 recognition is likely to be TCR dependent.

Amino Acid Sequence↗

TCT.1, a target molecule for gamma/delta T cells, is encoded by an immunoglobulin superfamily gene (Blast-1) located in the CD1 region of human chromosome 1.

We have recently generated a series of gamma/delta T cell clones able to kill, after in vitro immunization, an Epstein-Barr Virus-transformed B cell line (designated E418) in a non-major histocompatibility complex-requiring fashion. A monoclonal antibody, termed anti-10H3, produced against E418 was selected by its ability to block these cytotoxic interactions. Further analysis indicated that the inhibitory effects of anti-10H3 were highly selective (i.e., no blocking activity with multiple control clones used as effector cells; no alteration of the natural killer-like function mediated by the relevant gamma/delta clones against 10H3+ tumor cells such as Rex). The molecule immunoprecipitated by anti-10H3, termed TCT.1, was characterized as a 43-kD protein broadly distributed in the hematopoietic system. The TCT.1 molecule has been further studied here by protein microsequencing. Results show that the TCT.1-derived peptide sequences are virtually identical to corresponding regions of Blast-1, a previously described surface protein with unknown function. The likely identity of the two molecules has been strengthened by analyzing the susceptibility of TCT.1 to phosphatidylinositol-specific phospholipase C digestion in light of the known anchorage of Blast-1 to the cell membrane through a glycosyl-phosphatidylinositol-containing lipid. The TCT.1/Blast-1-encoding gene is well characterized; it belongs to the immunoglobulin gene superfamily and it is located in the same band of chromosome 1 as the CD1 gene cluster. Together, these data further support the view that proteins distinct from the conventional class I/II histocompatibility molecules are involved in specific T cell recognition.

Amino Acid Sequence↗

Studies on the human T cell receptor alpha/beta variable region genes. I. Identification of 7 additional V alpha subfamilies and 14 J alpha gene segments.

The anchored-polymerase chain reaction has been used to study further the diversity of the human T cell receptor alpha chain. The analysis of 308 cDNA transcripts from human peripheral lymphocytes hybridizing with a C alpha probe led to the identification of a series of additional V alpha and J alpha gene segments. The sequences of seven V alpha gene segments which individually define a novel V alpha subfamily (termed V alpha w23 to V alpha w29) are reported. The sequences of some previously described V alpha 1, V alpha 2, V alpha 5, V alpha 7 and V alpha 22 gene segments are also extended. In addition, we report 14 novel J alpha gene segment sequences. Taken together, these data indicate that the contribution of the alpha chain combinatorial diversity to the human T cell receptor alpha/beta variability has not yet been fully appreciated.

Animals↗

Studies on the human T cell receptor alpha/beta variable region genes. II. Identification of four additional V beta subfamilies.

The human T cell receptor (TcR) beta chain gene segment diversity has been studied using the anchored-polymerase chain reaction. Three hundred and fifty C beta-specific transcripts derived from peripheral lymphocytes were analyzed. Transcripts including V-D beta 1-J beta 2-C2 sequences were found with a high frequency (greater than 10%), suggesting that "illegitimate" joinings may constitute a cis-complementing rearrangement mechanism capable of substantially increasing the TcR beta chain combinatorial diversity. Twelve previously undescribed V beta gene segments have been identified. Five of them delineate four novel V beta subfamilies (V beta w21: two members, V beta w22, 23, 24: one member) which all have a murine homologue. The additional seven gene segments belong to the V beta 5, V beta 6, V beta 12 and V beta 13 subfamilies. In addition, the sequences of two known V beta 7 and V beta 9 gene segments have been extended. Together, the present data support the view that the contribution of the beta chain combinatorial diversity to the TcR alpha/beta variability has not yet been fully appreciated.

Base Sequence↗

Molecular characterization of human T cell receptor alpha chains including a V delta 1-encoded variable segment.

Previously we have shown that a small fraction of human peripheral T cells expresses a surface receptor recognized both by the BMA031 mAb, specific for a TcR alpha/beta framework epitope, and by the A13 mAb, putatively specific for an epitope encoded by the V delta 1 gene segment. An interleukin 2-dependent polyclonal cell line (termed T2) was derived from such A13+BMA031+ circulating lymphocytes. The molecular characterization of the TcR chains expressed by T2 cells demonstrated indeed that the V delta 1 gene (one of the two major V delta genes) was transcribed with the C alpha gene segment. In the T2 polyclonal cell line, distinct V delta 1/C alpha transcripts were all found to include the same J alpha segment suggesting the existence of "hybrid" TcR alpha/delta chains encoded by unique V delta 1/J alpha rearrangements. The present study was designed to characterize further the V delta 1/J alpha rearranged genes expressed in A13+BMA031+ cells. Three additional cell lines were generated from peripheral blood of distinct adult healthy donors. Using the anchored polymerase chain reaction, it was found that 17 different J alpha segments were used in the 20 V delta 1J alpha C alpha transcripts which have been studied. Together, these data indicate that V delta 1 is a "mixed" (i.e. alpha/delta) TcR V segment which can join with most (if not all) J segments in the alpha/delta locus. In addition, it can be definitely concluded that the A13 mAb recognizes a V delta 1-encoded antigenic determinant and not a V delta 1J epitope (i.e. it can be defined and used as an anti-V delta 1 mAb, as opposed to reagents such as for example delta-TCS-1).

Adult↗

Expression of different CD8 isoforms on distinct human lymphocyte subpopulations.

Human CD8+ lymphocyte subpopulations were analyzed for their expression of CD8 alpha and CD8 beta subunits. Investigations with uncloned peripheral blood lymphocytes as well as cloned human natural killer and T cell subpopulations demonstrate that CD3- natural killer cells, T cell receptor gamma/delta, and CD4+CD8+ T cell clones express exclusively CD8 alpha gene products. Structural analysis of CD8 molecules demonstrates that CD8 alpha+/beta- T lymphocytes surface express 75-kDa CD8 alpha/alpha homodimers whereas CD8 alpha/beta lymphocytes express concomittantly two CD8 isoforms of different molecular masses (67 kDa and 75 kDa, respectively). Peptide mapping of these latter two isoforms suggests that CD8 is expressed as alpha/alpha homodimers and alpha/beta heterodimers on CD8 alpha/beta+ cells. Importantly, we found that the two CD8 isoforms behave functionally different. Thus, in contrast to CD8 alpha/beta+/CD8 alpha/alpha+ T lymphocytes, cytolytic activity of CD8 alpha/beta-/CD8 alpha/alpha+ T cell clones was not inhibited by anti-CD8 monoclonal antibodies and the latter were not induced to proliferate following CD3/CD8 cross-linking.

Antibodies, Monoclonal↗

Clonal analysis of CD4+/CD8+ T cells in a patient with aplastic anemia.

T cell clones were established from peripheral blood of a patient with severe aplastic anemia. 8 of 18 individual clonal T cell populations stably coexpressed CD4 and CD8 molecules, a phenotype characteristic for thymocytes and a minor subpopulation of circulating T lymphocytes. Analysis of T cell receptor genes revealed identical rearrangements of T cell receptor beta chain genes, suggesting clonality of these T cells. CD4+/CD8+ T cells clones were found to be efficiently cytotoxic towards autologous lymphoblasts. Autocytotoxicity could be blocked by a CD3 MAb, a MAb specific for monomorphic MHC class II determinants, and particularly, by an MHC-DP-specific MAb, suggesting specificity for autologous DP molecules. Perhaps more important, CD4+/CD8+ T cell clones inhibited differentiation of autologous progenitor enriched bone marrow cells in vitro by a direct cell-mediated mechanism. These data suggest that circulating cytotoxic CD4+/CD8+ T cell clones specific for autologous MHC-DP determinants may be involved in hematopoietic failure in some cases of aplastic anemia.

Adult↗