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Biomedical subjects

L Boumsell

Publications and source records attributed to L Boumsell.

At least 19 recordsLinked to original sources

Detection of membrane-bound HLA-G translated products with a specific monoclonal antibody.

A monomorphic anti-HLA-G monoclonal antibody (mAb) was obtained by immunization of HLA-B27/human beta 2-microglobulin double-transgenic mice with transfected murine L cells expressing both HLA-G and human beta 2-microglobulin. This mAb, designated BFL.1, specifically recognizes, by flow cytometry analysis, the immunizing HLA-G-expressing cells, whereas it does not bind to parental untransfected or to HLA-B7- and HLA-A3-transfected L cells, suggesting that it distinguishes between classical HLA-A and -B and nonclassical HLA-G class I molecules. This was further assessed by the absence of BFL.1 reactivity with a number of human cell lines known to express classical HLA class I proteins. In addition, we showed that the BFL.1 mAb also labels HLA-G-naturally-expressing JEG-3 and HLA-G-transfected JAR human choriocarcinoma cell lines as well as a subpopulation of first-trimester placental cytotrophoblast cells. Further biochemical studies were performed by immunoprecipitation of biotinylated membrane lysates: BFL.1, like the monomorphic W6/32 mAb, immunoprecipitated a 39-kDa protein in HLA-G-expressing cell lines, a size corresponding to the predicted full-length HLA-G1 isoform. However, in contrast to W6/32, which immunoprecipitates both classical and nonclassical HLA class I heavy chains, BFL.1 mAb does not recognize the class Ia products. Such a mAb should be a useful tool for analysis of HLA-G protein expression in various normal and pathological human tissues and for determination of the function(s) of translated HLA-G products.

Animals

Activation signals are delivered through two distinct epitopes of CD100, a unique 150 kDa human lymphocyte surface structure previously defined by BB18 mAb.

We have previously reported the identification of a glycoprotein dimer, now termed CD100, at the lymphocyte cell surface using a mAb termed BB18. In the present study we isolated a second mAb, termed BD16, recognizing another epitope of this 150 kDa structure. We show that interaction with individual mAb triggers differential functional effects on peripheral blood lymphocytes (PBL) and purified T cells. In particular and of the utmost interest, BD16 mAb strongly inhibits CD3 induced PBL proliferation while it dramatically increases the CD2 induced proliferation. In contrast, after T cell purification, BD16 mAb increases both CD2 and CD3 induced proliferation. It has to be noted that perturbation of the same 150 kDa surface molecule with BB18 mAb exerts no effect on CD2 and CD3 induced proliferations, while inducing a strong lymphocyte proliferation in the presence of submitogenic concentrations of phorbol myristate acetate.

Antibodies, Monoclonal

Langerhans' cell histiocytosis. Definitive diagnosis with the use of monoclonal antibody O10 on routinely paraffin-embedded samples.

The histological and immunohistochemical findings of 34 biopsy specimens from patients with Langerhans' cell histiocytosis (LCH) are reported, with special emphasis on the findings with CD1a mouse monoclonal antibody (MAb) O10 using paraffin-embedded material. Eighteen patients were treated in an adult hospital (mean age, 26.3 years), and the 16 others were children (mean age, 3 years) from a pediatric center. Specimens included 17 bone, 14 skin, two lung, and one lymph node. Tissue was fixed in formalin or Bouin's, and most bone samples were decalcified in nitric acid. Frozen sections were available for 16 cases and electron microscopy for one. Light microscopy was suggestive of LCH in all cases, characterized by large mononucleated cells with abundant eosinophilic cytoplasm and "coffee bean" nucleus. In 33 of the 34 paraffin-embedded LCH samples, mononucleate cells were stained by MAb O10. As controls, we investigated seven tumors expressing S-100 protein (three nevi, two melanomas, two neurofibromas): all were negative with MAb O10. Five non-Langerhans' cell histiocytoses (three juvenile xanthogranulomas and two Rosai-Dorfman lymphadenopathies) were also negative with MAb O10. The results show that in most cases a definitive diagnosis of LCH can be assessed on paraffin-embedded tissue specimens with the help of immunohistochemistry using MAb O10.

Adult

Potential antileukemic effect of gamma delta T cells in acute lymphoblastic leukemia.

The immune response to leukemia is poorly understood. We postulated that nonmalignant T lymphocytes remaining within bone marrow from children with newly diagnosed ALL could be involved in this immune response. T lymphocytes which expressed gamma delta TCR comprised less than 1% of ALL marrow cells. A preferential outgrowth of gamma delta T cells within the CD3 population was observed when marrow cells were cultured with IL-2 alone or with stimulating feeder cells. These results, obtained in a series of 14 patients with precursor B-ALL, were significantly different when compared with expansions from normal marrow cells. In one patient, the clones established from the expanded population displayed different patterns of cytotoxicity against tumoral targets of the B cell lineage. Some clones expressing the TCR V delta 1 segment showed cytotoxic activity against a cell line derived from a pre-B ALL without activity against a LAK-sensitive B cell line. Using PCR amplification, one such clone was detected at high frequency, in the primary expansion of ALL marrow cells. These results suggest a prior activation in vivo of some gamma delta T cells by leukemic cells and provide some evidence on the role of these subsets in the immune response to leukemia.

Adolescent

Two subpopulations of human triple-negative thymic cells are susceptible to infection by human immunodeficiency virus type 1 in vitro.

Some infants infected with human immunodeficiency virus type 1 (HIV-1) rapidly develop a fatal disease characterized by a severe lymphopenia. To explain the immune dysfunction, we proposed a mechanism by which a nongeneration of CD4+ T cells is caused by HIV-1 infection of thymic cells. To examine this hypothesis, we infected primary triple-negative (TN; phenotypically CD3- CD4- CD8-), CD1a- TN, or CD1a+ TN thymic cell subsets. Our data indicate that by flow cytometry, TN, CD1a- TN, and CD1a+ TN cells remain CD4 negative throughout the culture period. We demonstrated that TN and CD1a+ TN thymic cell subsets are susceptible to HIV-1 as is the entire thymic cell population, whereas CD1a- TN cells are not. A limited number of infected TN cells are expressing HIV-1 but the level of transcription is very high in permissive cells, as detected by in situ hybridization. We then performed blocking experiments on TN cells to examine the mechanism of HIV-1 entry into these cells. CD4 (OKT4a) monoclonal antibody blocks their infection. Finally, infection experiments on two subpopulations of TN cells (CD2+ CD7+ and CD2- CD7-) indicate that infected TN cells may correspond to both immature thymocytes and thymic dendritic cells. These data are of particular interest since infection of thymic stromal cells might result in an impairment of T-cell differentiation, which may explain a nongeneration of functional CD4+ T-cell population in the thymus. This phenomenon may play a role in AIDS pathogenesis, in particular in infants born from seropositive mothers.

Antibodies, Monoclonal

Tyrosine phosphorylation and association with phospholipase C gamma-1 of the GAP-associated 62-kD protein after CD2 stimulation of Jurkat T cell.

Numerous substrates are tyrosine phosphorylated upon CD2 stimulation of human Jurkat T cells using a mitogenic pair of CD2 monoclonal antibodies, including the phospholipase C (PLC)gamma-1-p35/36 complex. Most of these substrates are identically tyrosine phosphorylated after CD3 ligation, suggesting that both stimuli share the same biochemical pathway. We show, however, in this report that a 63-kD protein is specifically phosphorylated on tyrosine residues after ligation of the CD2 molecule. The tyrosine phosphorylation of p63 can be induced independently of other substrates when using a single CD2 mAb recognizing the D66 epitope of the molecule. Importantly, this CD2-induced tyrosine phosphorylation of p63 can also occur in the absence of the CD3 zeta chain membrane expression, and is also distinct from the protein tyrosine kinases p56lck and p59fyn. We demonstrate, moreover, that p63 is physically linked with PLC gamma-1 and p35/36 upon CD2 stimulation. Finally, we also show that a 62-kD protein coimmunoprecipitating with the p21ras GTPase activating protein (GAP) is heavily tyrosine phosphorylated only after CD2 stimulation. This ultimately suggests that p63 may represent in fact the 62-kD protein that associates with GAP after tyrosine phosphorylation. Taken together, these results demonstrate the occurrence in Jurkat cells of a tyrosine kinase pathway specifically coupled to the CD2 molecule. They also suggest a function of the p62-GAP-associated protein as a link between PLC gamma-1 and p21ras activation pathways after CD2 activation.

Antibodies, Monoclonal

A novel 80-kD cell surface structure identifies human circulating lymphocytes with natural killer activity.

Human lymphocytes with natural killer (NK) activity, including most activated gamma/delta+ T lymphocytes, recognize and lyse tumor target cells without requiring recognition of major histocompatibility complex antigen. However, unlike gamma/delta+ T lymphocytes, NK cells do not express CD3/T cell receptor (TCR) molecules, and the receptors involved in cell-mediated cytotoxicity are unknown. To further delineate circulating NK cells, we developed monoclonal antibodies (mAbs) against the human NK leukemia YT2C2. We report the isolation of a mAb termed BY55, recognizing at the cell surface a novel 80-kD protein with restricted expression. In addition to the immunizing cell line, this mAb binds to circulating NK cells, gamma/delta+ cells, and a minor subset of alpha/beta+ T lymphocytes. Expression of the BY55 mAb-reactive epitope/molecule is regulated by activation, as short-term culture of peripheral blood lymphocytes (PBL) with phorbol ester induced its downmodulation. Furthermore, BY55 mAb reactivity was found neither with the NK nor with the TCR alpha/beta+ gamma/delta+ clones tested. Biochemical studies as well as phenotypic analysis revealed that this structure is different from all previously identified molecules on the lymphocyte cell surface. Interestingly, we found that BY55+ cells exert most NK activity obtained with fresh circulating lymphocytes. We report that within fresh E rosette-positive PBL only a subset of the CD16+, CD56+, and CD57+ cells coexpressed BY55 molecule, indicating that BY55 mAb defines a unique subset mediating NK activity of circulating PBL.

Antibodies, Monoclonal

Immunohistochemical detection of CD1A antigen in formalin-fixed and paraffin-embedded tissue sections with monoclonal antibody 010.

The immunoreactivity of a CD1a monoclonal antibody (MAb), denoted 010, was investigated by means of the streptavidin-biotin-peroxidase method in formalin-fixed and paraffin-embedded tissues from 47 cases. The samples comprised reactive lymphoid proliferations of skin, tonsil, and lymph node including dermatopathic lymphadenopathy and Langerhans' cell histiocytosis, Hodgkin's and non-Hodgkin's lymphomas, and thymomas. Interdigitating and dermal dendritic cells, veiled cells, Langerhans' cells, and also cortical thymocytes and their neoplastic counterparts displayed immunostaining with MAb 010 in paraffin sections. These results are identical to previous ones reported for other CD1a MAbs in fresh or frozen specimens. The findings suggest that the binding site of 010 is a fixation-resistant epitope of CD1a antigen which has not been previously identified.

Antibodies, Monoclonal

Antibodies to the CD5 molecule in normal human immunoglobulins for therapeutic use (intravenous immunoglobulins, IVIg).

IVIg are increasingly used for the treatment of autoimmune diseases. In the present study, we show that IVIg contain antibodies directed against CD5, a cell surface molecule of T cells which is also a marker of the autoantibody-producing CD20+ ('B-1') subset of B lymphocytes. Antibodies to the CD5 molecule were demonstrated in IVIg by the ability of therapeutic preparations of IVIg to inhibit the binding of labelled CD5 MoAb to the CD5-expressing human T cell line H9. Preincubation of H9 cells with IVIg or with F(ab')2 fragments prepared from IVIg resulted in dose-dependent inhibition of the binding of CD5 antibody. The presence in IVIg of antibodies to the CD5 molecule was further confirmed by the binding of IVIg to mouse L cells that expressed human CD5 molecules following a stable transfection with CD5 cDNA. Human CD5 antibodies in IVIg provide therapeutic immunoglobulin preparations with the potential of modulating T cell functions through CD5, and of regulating the expression of B cell subsets expressing CD5. This may have implications for the treatment of autoimmune diseases.

Animals

Evidence that granulocyte macrophage-colony-stimulating factor regulates the distribution and differentiated state of dendritic cells/Langerhans cells in human lung and lung cancers.

GM-CSF has been shown to be important for the survival and function of cells of dendritic cell/Langerhans cell (LC) lineage in vitro. Since these cells have been demonstrated to infiltrate human lung and some lung carcinomas, we hypothesized that the production of GM-CSF in the lung could be important in their recruitment and differentiation. Using both immunohistochemistry and in situ hybridization, we have shown that: (a) GM-CSF was produced by normal bronchiolar epithelium, the only site were CD1a+ LC are observed in the normal lung, whereas neither GM-CSF production nor LC were identified in normal alveolar epithelium. (b) In inflamed pulmonary tissue, hyperplastic alveolar cells produced GM-CSF, and CD1a+ LC accumulated adjacent to these cells. (c) Some, but not all, lung carcinomas produced this cytokine, and a close correlation was found between the production of GM-CSF and the number of CD1a+ LC infiltrating these tumors. Since GM-CSF was produced at all sites where CD1a+ LC are known to accumulate, but not at other locations within the lung, these data suggest that the local production of GM-CSF by certain lung cells may play an important role in determining the distribution and differentiated state of dendritic cell/LC in the human lung.

Adenocarcinoma

Increased surface expression of a newly identified 150-kDa dimer early after human T lymphocyte activation.

Lymphocyte activation induces or increases the expression of several surface structures, some of which are directly involved in cell growth such as receptors for IL-2 or transferrin. In order to identify new structures characteristic of activated lymphocytes, we developed a series of mAb against functionally defined human T cell clones. In the present study we report the isolation of a mAb termed BB18 recognizing, at the cell surface, a novel 150-kDa glycoprotein dimer whose expression on T lymphocytes increases readily after their activation with various stimuli including lectins. In contrast, in the presence of PMA, cell-surface expression of this 150-kDa structure is down-regulated even earlier than CD3 molecules. Biochemical studies as well as phenotypic analysis revealed that this structure is different from all previously identified molecules on the lymphocyte cell surface. Furthermore, functional studies showed that triggering this disulfide-linked dimer through BB18 epitope in the presence of submitogenic concentrations of PMA induced strong lymphocyte proliferation. This proliferative response require E+ cells and accessory cells, and this even after immobilization of BB18 mAb.

Animals

The CD39 molecule defines distinct cytotoxic subsets within alloactivated human CD8-positive cells.

Lymphocyte activation induces or increases the expression of several surface structures, none of which is characteristic of an activated cell subset. In particular, structures such as CD45RO, CD25, CD26, CD49b, CD54, CD71 are expressed by the vast majority of lymphocytes at various times following in vitro activation. CD39 molecules were originally identified on activated B lymphocytes and have recently been described on activated T cell clones. In the present report, we have characterized phenotypically and functionally defined cell subsets generated during an in vitro allostimulation. Results indicated that the percentage of CD39+ cells reached a maximum at day 6 and remained stable thereafter. We demonstrate that CD39 expression allows the identification within the allosensitized CD8+ cytotoxic cells of distinct subsets of cells mediating allo cytotoxic T lymphocyte or natural killer (NK)-like reactivity. More precisely, CD8+CD39+ alloactivated cells mainly mediate specific killer activity, whereas CD8+CD39- alloactivated cells predominantly exhibit NK-like reactivity. Further, we show a high functional correlation associated with the lack of CD39 expression on NK-like alloactivated CD8+ cells, while there is no association with CD56 or CD57 NK-associated structures.

Adenosine Triphosphatases

TCR gamma delta bearing T lymphocytes infiltrating human primary cutaneous melanomas.

In situ immunophenotypic studies show that tumor infiltrating T lymphocytes from six of 11 fresh cutaneous primary melanomas tested contain T-cell receptor gamma delta expressing cells whereas those from 8 metastatic melanomas did not. In three cases these cells represent an unexpectedly high proportion of the lymphocytic infiltrate, ranging from 15 to 25%. This elevated percentage is maintained when tumor infiltrating lymphocytes are propagated in vitro for 2 or 3 weeks in the presence of recombinant interleukin 2 and autologous tumor cells. Functional studies reveal that gamma delta lines or clones developed from lymphocytes infiltrating primary melanoma display, in addition to their natural killer-like activity, a potent autologous tumor cell cytotoxic activity that does not seem to be restricted by major histocompatibility complex gene products.

Humans

Proliferation of resting lymphocytes is induced by triggering T cells through an epitope common to the three CD18/CD11 leukocyte adhesion molecules.

LFA-1, Mac-1, and p150,95 are a family of functionally important leucocyte integrins that share a common beta-subunit and participate in cellular adhesion. Monoclonal antibody to LFA-1 were described to block T-cell-mediated killing by inhibiting adhesion to target cells and to decrease T cell responses by preventing cell-cell contact. Recently it was demonstrated that LFA-1 molecule was involved in signal transduction. We report here that a monoclonal antibody termed 6.7 reacting with the three members of the leucocyte integrins is able in the presence of monocytes to directly induce the proliferation of resting peripheral blood T cells obtained from normal individuals. These results suggest the possibility that LFA-1 molecules could trigger T lymphocyte activation in addition to their role in homing, growth, and differentiation.

Antibodies, Monoclonal

Expression of VLA-alpha 2, VLA-alpha 6, and VLA-beta 1 chains in normal mucosa and adenomas of the colon, and in colon carcinomas and their liver metastases.

'Very late antigen' (VLA) proteins are members of the integrin superfamily with cell-surface receptor function and are involved in the cell-cell matrix interaction. They are heterodimers with a common beta 1 chain and different alpha chains counted through VLA-1 to VLA-6. The VLA-2 complex (alpha 2/beta 1) was found to act as collagen receptor on platelets and the VLA-6 complex (alpha 6/beta 1) as laminin receptor. Using monoclonal antibodies and an indirect immunoperoxidase method, we investigated the expression of VLA-alpha 2, VLA-alpha 6, and VLA-beta 1 chains in 20 normal colonic mucosa samples, in 20 colonic adenomas, and in 96 carcinomas together with 10 accompanying liver metastases. All three proteins were expressed throughout the colonic epithelium, except for VLA-alpha 2, which was present in the cryptic gland but was absent on the mucosal surface in some cases. In general, adenomas were strongly positive for the VLA proteins but 3 of 20 cases showed focal VLA-alpha 2-negative areas. The carcinomas revealed considerable heterogeneity of VLA-alpha 2 expression; ie, 59 tumors were completely positive, 35 tumors revealed a focal loss of antigen, and 2 cases were negative. This reduced antigen expression was statistically associated with Dukes' stage C/D (P = 0.003). VLA-alpha 6 was expressed throughout in all tumors. VLA-beta 1 was found extensively expressed in 77 carcinomas, partially expressed in 17 carcinomas, and was absent in 2 carcinomas. As compared to their primary tumors, liver metastases showed roughly corresponding patterns of antigen expression. The down regulation/loss of VLA proteins in a subset of epithelial colon tumors might cause a disturbed cell-cell/cell-matrix interaction that might augment the invasive property of their cells.

Adenoma

In vitro differentiation from a pluripotent human CD4+CD8+ thymic cloned cell into four phenotypically distinct subsets.

Human thymic cell differentiation is almost totally unknown. In the present study we developed an in vitro system using human thymic cloned cells to analyze precursor-progeny relationship. We obtained several CD4+CD8+ double positive thymic clones that could give rise after several weeks in culture only to either CD4 or CD8 single positive clones. By contrast we isolated a unique pluripotent thymic double positive clone, termed B12, which differentiated into four phenotypically distinct T cell clones, namely double-positive CD4+CD8+, double-negative CD4-CD8- or either single-positive phenotype. We derived stable subclones representative of each phenotype and we showed by molecular analysis that they expressed the same TCR. Utilization of either CD3 or anticlonotypic mAb revealed that this TCR expressed by the four subclones was functional.

Antigens, CD