In vivo production of Rof and Tof proteins of HTLV type 1: evidence from cytotoxic T lymphocytes.
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Publications and source records attributed to M C Dokhelar.
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The cytoplasmic domains of the transmembrane (TM) envelope proteins (TM-CDs) of most retroviruses have a Tyr-based motif, YXXO, in their membrane-proximal regions. This signal is involved in the trafficking and endocytosis of membrane receptors via clathrin-associated AP-1 and AP-2 adaptor complexes. We have used CD8-TM-CD chimeras to investigate the role of the Tyr-based motif of human immunodeficiency virus type 1 (HIV-1), simian immunodeficiency virus (SIV), and human T-leukemia virus type 1 (HTLV-1) TM-CDs in the cell surface expression of the envelope glycoprotein. Flow cytometry and confocal microscopy studies showed that this motif is a major determinant of the cell surface expression of the CD8-HTLV chimera. The YXXO motif also plays a key role in subcellular distribution of the envelope of lentiviruses HIV-1 and SIV. However, these viruses, which encode TM proteins with a long cytoplasmic domain, have additional determinants distal to the YXXO motif that participate in regulating cell surface expression. We have also used the yeast two-hybrid system and in vitro binding assays to demonstrate that all three retroviral YXXO motifs interact with the micro1 and micro2 subunits of AP complexes and that the C-terminal regions of HIV-1 and SIV TM proteins interact with the beta2 adaptin subunit. The TM-CDs of HTLV-1, HIV-1, and SIV also interact with the whole AP complexes. These results clearly demonstrate that the cell surface expression of retroviral envelope glycoproteins is governed by interactions with adaptor complexes. The YXXO-based signal is the major determinant of this interaction for the HTLV-1 TM, which contains a short cytoplasmic domain, whereas the lentiviruses HIV-1 and SIV have additional determinants distal to this signal that are also involved.
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The envelope protein of the human T-cell leukemia virus type I (HTLV-I) is highly conserved among the isolates sequenced so far, as opposed to what is observed for the human immunodeficiency virus (HIV) envelope. By linker insertion scanning, we have produced 33 random mutations along the HTLV-I envelope gene, cloned into a eukaryotic expression vector. The resulting envelope products were analysed by immunoprecipitation and syncytia formation after transfection into COS-1 cells. We show here that 25 out of 33 mutations result in a non-functional envelope product as assessed by the lack of ability to form syncytia. In the majority of these mutants, the processing of the envelope gp61 precursor into the mature gp45 and gp20 proteins was affected. We propose that conformational constraints for processing and fusion abilities tend to limit the variability of the HTLV-I envelope. In three mutants, processing was observed but no syncytia were formed. These mutations might affect regions important for HTLV-I envelope functions, such as the receptor binding region.
The role of the X region of the genome of the human T-cell leukemia virus type I (HTLV-I) in the immortalization of lymphocytes has been difficult to distinguish from its role in viral replication as this region encodes at least two genes, tax and rex, required for replication and the expression of viral proteins. To determine whether the X region does encode immortalizing functions, a fragment of the HTLV-I provirus capable of expressing known X-region proteins was inserted into the genome of a transformation-defective, replication-competent Herpesvirus saimiri. Infection of fresh mitogen-activated human cord blood and thymocytes yielded immortal T-cell lines that had the same phenotype (CD4+, CD5+, HLA class II+, interleukin 2 receptor alpha-chain +) as lymphocytes transformed by cocultivation with HTLV-I. These experiments demonstrate that the X region encodes the functions of HTLV-I that immortalize a distinct subpopulation of human T cells. The experiments also demonstrate the utility of the H. saimiri vector for the transduction of heterologous genes into human T cells.
The human T cell leukemia/lymphoma virus type I (HTLV-I) encodes two regulatory proteins, a 42 kDa trans-activator protein (p42tax) and a 27 kDa protein (p27rex), required for virus capsid protein synthesis. The experiments described here show that the p27rex protein negatively regulates the expression of the p42tax protein by suppressing the accumulation of the spliced messenger RNA from which the p42tax and p27rex proteins are made. It is proposed that such an interplay between the two regulatory genes results in a homeostatic system that may regulate the rate of viral replication as well as the growth of HTLV-I transformed cells.
The experiments reported here show that the p27 product of the rex gene that is encoded by the 3' end of the human T cell leukemia virus type I (HTLV-I) is required for expression of the virion capsid and envelope proteins. The regulation of virion protein expression occurs via posttranscriptional regulation of viral mRNA. In some contexts, regulation of the virion proteins is achieved by p27rex-dependent accumulation of unspliced or singly spliced mRNAs that specify capsid or envelope proteins. In other contexts, the envelope protein production is dependent upon p27rex even in the presence of accumulation of envelope-specific mRNA. The consequences of p27 regulation for HTLV-I replication are discussed.
Following immunizations of BALB/c mice with K562 cells, we have obtained seven original monoclonal antibodies (MoAbs): (a) One MoAb, GA3, defines an antigen essentially restricted to the red cell series. This antigen is expressed on immature erythroblasts but is not detectable on the surface of early and late erythroid progenitors. GA3 MoAb immunoprecipitates a Mr 105,000 glycoprotein on K562 cells. (b) Two MoAbs, 14B6 and 12B1, react with cells of the monocytic series. MoAb 14B6, which also faintly stains platelets, is reactive with immature myeloid cells and the majority of hematopoietic progenitors. The 14B6 antigen has been immunoprecipitated from 12-O-tetradecanoylphorbol-13-acetate treated K562 cells as a Mr 130,000-100,000 protein. Antigen 12B1 is expressed only on cultured monocyte/macrophages and is restricted to a subpopulation of monocytes and to follicular dendritic cells. It is not detected on hematopoietic progenitors. Immunoprecipitation experiments performed on 12-O-tetradecanoylphorbol-13-acetate treated K562 cells revealed a glycoprotein with a molecular weight of 93,000-86,000. (c) Two anti-K562 MoAbs, CF4 and HE10, recognize a myeloid differentiation antigen expressed from the granulomonocytic colony forming unit stage to polymorphonuclear neutrophils. These MoAbs detect an apparently original glycolipid moiety distinct from LeX. (d) Two MoAbs recognize antigens expressed on the granulomonocytic series. 2E1 recognizes the monocyte low affinity Fc receptor (Mr 40,000) and defines a new cluster of myeloid differentiation (CDw32). The antigen is expressed on a small portion of immature hematopoietic progenitors. 8F5 identifies a Mr 95,000 protein which is also present on plasma cells. In some experiments, it is detected on erythroid colony forming unit analysis. Immunizations with K562 cells thus resulted in the production of antibodies recognizing antigens of the monocytic, granulocytic, as well as erythroid series. However, three of them are also detected on hematopoietic progenitors.
A murine monoclonal antibody (GA3) obtained by immunizing mice with cells of the human erythroleukemic cell line K562 is shown to define a 105 kilodalton (kd) membrane antigen on K562 cells that is restricted within the hematopoietic system to the erythroid lineage and to a minor population of CD3, CD4 positive T lymphocytes. Cocapping studies and immunoprecipitation experiments performed with GA3 and L10, an anti-sialophorin monoclonal antibody reacting with leukosialin (Gp 105) on K562 cells, demonstrate that the antigen detected by GA3 on K562 cells is identical to leukosialin. Neuraminidase treatment but not tunicamycin treatment of K562 cells abolishes the expression of the GA3-epitope without affecting the L10-epitope thus providing evidence that terminal sialic acid present on O-linked oligosaccharide chains on Gp 105 is essential for the expression of the GA3-epitope. Further analysis by flow cytometry and immune panning experiments performed on bone marrow cells with GA3 or L10 demonstrate that, in contrast to L10, which reacts with all types of hematopoietic progenitors, the epitope recognized by GA3 is restricted to the erythroid lineage, and appears during erythroid differentiation before glycophorin A on the earliest morphologically recognizable erythroid precursor, the proerythroblast. Our results therefore suggest that O-linked oligosaccharides on leukosialin express lineage restricted and even maturation restricted antigenic structures that might serve as cell lineage specific markers.
We performed a longitudinal study of the phenotype and functions of granular lymphoid cells from seven patients with T8 hyperlymphocytosis and neutropenia. Whereas cells retained a T3+ T8+ (six cases) or T3- T8+ (one case) phenotype at different examinations, the expression of natural killer (NK)-related antigens (HNK1- and Leu11-defined antigens) exhibited striking variations, some of which were also observed after in vitro culture. Similarly, natural or antibody-mediated cytotoxic activities fluctuated in vivo and in vitro. Cells from the patient with T3- T8+ proliferation were able to inhibit directly the growth of early CFU-GM, CFU-E, and BFU-E and to a lesser extent of late CFU-GM, as shown by cultures of autologous blood or marrow progenitors after depletion (and subsequent addition) of granular cells. In the other six patients with T3+ T8+ cells, no such effect was found. However, after a 24-hour incubation of the progenitors with the granular cells, CFU-GM growth was clearly inhibited; this was not observed in all experiments, a finding which may be related to the spontaneous variations of cell killer functions. Finally, no correlation was noted between the clinical course or extent of lymphoid proliferation and cell function or phenotype or with the monoclonal (two cases), polyclonal (three cases) or germ-line (one case) patterns of T cell receptor beta gene configuration.
An IgG2a monoclonal antibody, referred to as 12B1 and raised against the K562 cell line, reacted with adherent monocytes maintained in culture for several days but not with bone marrow or peripheral blood cells including freshly isolated monocytes. Among human leukemic cell lines, 12B1 reacted essentially with the promyelocytic HL60 cell line. 12-O-Tetradecanoylphorbol 13-acetate treatment, but no other differentiation inducer, strongly enhanced its reactivity on K562, HL60 and the histiocytic U937 cell line. Immunoperoxidase staining of sections of normal human tissues showed that 12B1 specifically recognized dendritic reticulum cells in germinal centers of lymph nodes, spleen and tonsils. The 12B1-detected antigen is a highly glycosylated polypeptide of an apparent molecular mass of 93-86 kDa. The 12B1 antigen appears to be a new glycoprotein marker shared by adherent monocytes and dendritic reticulum cells. The association of the 12B1 epitope with cells which present antigen and/or exert accessory function suggests that this molecule could play a role in these activities.
The accessory function (AF) of various B cell lines has been investigated by studying their ability to replace monocytes inducing the proliferation of highly purified T lymphocytes in the presence of phytohemagglutinin. AF could be exerted by B cells from different origin, including Epstein-Barr virus (EBV) transformed lymphoblastoid cell lines (LCL), Burkitt's lymphoma (BL)-derived lines, either EBV-positive or not, pre-B and B leukemias and lymphomas. The EBV-converted BJAB-B95 BL cells could exert an AF as efficient as BJAB cells, their EBV-negative counterparts, which demonstrates that EBV itself does not play any role in this function. The HLA-DR antigen-negative BL-K562 hybrids PUTKO and DUTKO, T51.4.1.6 cells which derived from an HLA-DR-negative variant of the T51 LCL and 721.84.5 cells from a mutagenically dissected HLA-DR-negative clone of the 721 LCL, also exerted very efficient AF. 721 LCL, PUTKO and DUTKO hybrids could produce interleukin 1 activity when triggered with 12-O-tetradecanoyl-phorbol 13-acetate (TPA). Furthermore, addition of anti-DR monoclonal antibodies which blocked completely the AF of the B cell lines in mixed lymphocyte-tumor cell reaction did not affect the mitogen-triggered AF exerted by the same B cell lines. The induction of cellular differentiation with TPA markedly reduced the AF exerted by all B cell lines studied as well as by the hybrid cells DUTKO. By contrast, the PUTKO hybrid was unsensitive to sodium butyrate and TPA treatments, which were unable to abrogate its AF. Taken together, these data indicate that the AF in mitogen-induced T lymphocyte responses is dependent upon some precise maturational stages of accessory cells and HLA-DR antigen expression is not required for AF in mitogen-induced proliferation assays.
The effect of various phorbols and phorbol diesters on the NK sensitivity of the human leukemic K562 cells was studied. A marked decrease in K562 cell susceptibility was achieved by culture in the presence of either 12-O-tetradecanoyl-phorbol-13-acetate (TPA) or beta-phorbol-dibutyrate. The maximum protection against NK lysis was achieved when K562 cells were cultured in the presence of 160 nM TPA for 48 hr (mean percentage inhibition: 61% of specific lysis). As for untreated targets, the residual killing of K562 cells after TPA treatment was mediated through large granular lymphocytes (LGL). The experimental procedures required to achieve maximal NK protection with TPA resulted simultaneously in marked phenotypical changes in K562 cells: erythroid and early myeloid markers decreased, whereas the expression of megakaryocytic markers was increased as shown by staining with antiplatelet monoclonal antibodies and assessment of platelet peroxidase activity. Chemical phorbol analogs which were unable to induce K562 cell differentiation did not affect K562 cell sensitivity to NK lysis. De novo protein synthesis is involved in the TPA-induced NK resistance, since this effect was abolished by pretreatment of K562 cells with actinomycin D or cycloheximide. TPA has been previously demonstrated to reduce NK effector activity. In our data however, the observed TPA effects were not due to release of TPA acting on effector cells during the NK assay since TPA-treated K562 cell supernatants were unable to inhibit NK activity in control assays. Thus, TPA appears to decrease NK killing of malignant cells, both by depressing NK effector cells functions and by reducing the susceptibility to NK lysis of the target cells. In single-cell agarose assays, TPA-treated K562 cells demonstrated reduced NK-binding capacity and reduced sensitivity to lysis after binding. These defects could not be reversed by activation of the NK effector cells with interferon. The results here reported extend the previously suggested relations between the expression of NK-target structures and the differentiation stage of malignant cells.
Highly purified T lymphocytes do not proliferate in response to mitogens, unless adherent HLA-DR-positive monocytes are added to the culture. This accessory function (AF) of monocytes requires the release of interleukin 1 (IL 1). Cells from three human leukemic cell lines, K562, HL60, and U937, could very efficiently replace monocytes in a 72-hr mitogen-induced T cell proliferation assay. The AF was clearly related to precise maturational stages of these cells; the hematopoietic precursor K562 cells spontaneously exerted high AF, but lost this property when treated with differentiation inducers. On the contrary, the promyelocytic HL60 cells and the "histiocytic" U937 cells exhibited no spontaneous AF, but acquired this property when induced to differentiate along the granulocytic and/or monocytic pathway. Three leukemic cells could not only stimulate T cells to proliferate and produce IL 2 in the presence of mitogens, but also under appropriate culture conditions these cells could produce IL 1, which could not be distinguished from normal human monocyte derived IL 1 by gel filtration and isoelectric focusing. Moreover, analysis of phenotypic markers revealed that AF and production of IL 1 could be demonstrated in different cell types and therefore are not restricted to the monocytic lineage. No HLA-DR antigen could be detected on K562 and HL60 cells. Thus, the expression of the DR antigens is not required for AF and IL 1 production in response to mitogens. These three human leukemic cell lines will provide convenient sources of human IL 1.
K 562 cells induced to differentiate by sodium butyrate (SB) or 12-O-tetradecanoyl-phorbol-13-acetate (TPA) were studied for their capacities to be bound and killed by large granular lymphocytes (LGL) in a single-cell cytotoxicity assay in agarose. After SB treatment, K 562 cells were less efficient in binding to LGL, whereas the frequency of killer cells among bound LGL was unaffected. When TPA was used to induce K 562 differentiation, the binding of LGL to their target and the lytic efficiency of the bound LGL were both diminished when compared to control K 562 cells. It has been demonstrated that the expression of structures involved in the binding of natural killer (NK) effectors to their targets could be correlated with the target-differentiation stage. It is shown that phorbol-ester treatment can also affect NK target structures involved in the killing step.
The effect of the serum thymic factor, FTS, on human NK cells was studied. NK cell activity was measured in a 51Chromium-release assay in which effector cells were peripheral blood lymphocytes (PBL) or bone marrow (BM) lymphocytes from healthy individuals and patients, and targets were K562 cells. When added in vitro in this assay, FTS modulated NK cell activity of normal PBL. Low concentrations of FTS (10(-2) ng/ml) increased NK activity (P less than 0.001) whereas higher concentrations decreased it (P less than 0.01) for 10 and 10(2) ng/ml. FTS exhibited no effect on NK cell activity of BM lymphocytes. When administered in vivo to 4 cancer patients (10 micrograms/kg i.v. every 3 days), FTS progressively increased peripheral NK activity in two patients with low pre-treatment NK values, whereas it decreased NK activity in two patients with previously normal or high NK values. The mechanism by which FTS modulates NK cell activity is still unknown but such modulation suggests that NK cells belong in part to the T-lineage.
Highly purified peripheral T lymphocytes do not proliferate in response to phytohemagglutinin A or concanavalin A, unless adherent HLA-DR+ monocytes are added as accessory cells. The accessory function (AF) of monocytes is mediated through the release of interleukin-1 (IL-1). We here report that cells from three human leukemic lines--K562, HL-60, and U-937--could exert AF and efficiently replace monocytes in a 72-hr mitogen-stimulated proliferation assay. This AF was clearly related to precise maturational stages of these cells, since the hematopoietic precursor K562 cells spontaneously exerted high AF but lost this property when treated with differentiation inducers such as sodium butyrate or phorbol 12-myristate 13-acetate (PMA). On the other hand, untreated HL-60 and U-937 cells exhibited no spontaneous AF, but they acquired this function when induced to differentiate either along the granulocytic pathway (dimethyl sulfoxide-treated HL-60 cells) or along the monocytic pathway (PMA-treated HL-60 and U-937 cells). Supernatants from PMA-triggered K562 or HL-60 cells allowed the proliferative response of murine thymocytes to phytohemagglutinin A and were therefore shown to contain IL-1. Analysis of phenotypical markers showed that AF and IL-1 production were not restricted to cells of the monocytic lineage. No HLA-DR antigen could be detected on K562 and HL-60 cells. Thus, the expression of HLA-DR antigens is not required for AF and IL-1 production in response to mitogens. Human leukemia cell lines could provide useful sources of human IL-1.
Natural killer (NK) cell activity was found decreased (mean value: 27.5%) in peripheral blood lymphocytes from 59 untreated patients with malignant lymphoma, when compared to 112 healthy subjects (46.3%) and to 75 cancer patients with nonlymphoid tumors (43.7%) (P less than 0.001). NK cell values were similar in patients with Hodgkin's disease (25.5%) and with non-Hodgkin's lymphoma (28.2%). Decreased NK cell activity was not correlated with age, lymphoma extension or leukocyte counts. A physiological role for NK cells in the immune surveillance against lymphoid neoplasias is discussed.