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Biomedical subjects

E Yefenof

Publications and source records attributed to E Yefenof.

At least 19 recordsLinked to original sources

Induction of IL-4 secretion by the radiation leukemia virus (RadLV): role in autocrine growth stimulation of RadLV infected pre-leukemic cells.

Intrathymic inoculation of radiation-leukemia virus (RadLV) into C57BL/6 mice induces a population of pre-leukemic (PL) T cells which progress into clonal, mature thymic lymphomas after a latency period of 3 to 5 months. In order to understand how PL cells are retained in the thymus for a prolonged period of time we determined whether RadLV infected cells secrete and/or respond to a T-cell growth factor that may be involved in the long-term maintenance of a thymic PL-cell pool. We have previously found that in vitro proliferation of RadLV-infected PL cells is IL-4-dependent. Here we show that RadLV induces IL-4 secretion and IL-4 receptor (IL-4R) expression in normal thymic lymphocytes. RadLV-infected PL thymocytes express IL-4R and secrete IL-4. Their IL-4 secretion could be enhanced if incubated in the presence of RadLV and this enhancement was inhibited by anti-RadLV antibodies. Several RadLV-induced lymphoma lines secreted IL-4 and/or expressed IL-4R, but these features were not essential for their continuous growth. The results suggest that RadLV induces IL-4-dependent autocrine growth which maintains a population of PL T cells in the thymus. Transition from a PL state to overt thymic lymphoma involves emancipation of a PL cell from IL-4 dependency.

Animals

Treatment of premalignancy: prevention of lymphoma in radiation leukemia virus-inoculated mice by cyclosporin A and immunotoxin.

Radiation leukemia virus (RadLV)-induced preleukemic (PL) latency is characterized by the appearance of virus-infected PL cells in the thymus. The survival of these PL cells is dependent upon autostimulation with interleukin 4 (IL-4). We have intervened prophylactically in RadLV-induced preleukemia by using cyclosporin-A (CSA), which inhibits IL-4 production, and an immunotoxin (ITx) that kills PL cells. CSA efficiently inhibited IL-4 secretion from RadLV-induced PL and leukemic cells, and its administration to PL mice caused a significant delay in their death. An ITx consisting of anti-RadLV glycoprotein-70 (gp70) antibody coupled to ricin A chain efficiently inhibited protein synthesis in virus-infected cells in vitro and, when injected into PL mice, also delayed their death. Combined treatment with CSA and ITx prevented 75% of the treated PL mice from developing lymphoma. These results show that the development of malignancy from a premalignant state can be averted by a combination of therapeutic modalities that decrease the size and growth rate of the premalignant cell population.

Animals

Expression of the complement regulatory proteins CD21, CD55 and CD59 on Burkitt lymphoma lines: their role in sensitivity to human serum-mediated lysis.

On a panel of nine human B cell lines we showed that the expression of the complement regulatory factors complement receptor type 2 (CR2; CD21), decay-accelerating factor, (DAF; CD55) and homologous restriction factor (HRF20, CD59) is not correlated. All lines expressed DAF, six lines carried detectable amounts of CR2 and three carried HRF20. Upon incubation in human serum, under conditions which allowed the activation of complement through the alternative pathway, the CR2-carrying lines bound C3 fragments and two of them (Ramos and one of its two sublines) were damaged. These two lines had the lowest DAF expression, less than 50% of the cells reacted with the IA10 monoclonal antibody. By modulating the expression of the complement regulatory molecules, the lytic sensitivity of the B cell lines could be altered. Blockade of DAF on the HRF20-, CR2+ lines with the specific monoclonal antibodies increased their sensitivity to lysis by human serum. With the DAF- and HRF20+ cells significant lytic effect was obtained only when they were pretreated with both of the specific antibodies. Interferon-gamma or tumor necrosis factor-alpha treatment elevated the amount of CR2 on the low-CR2 expressor line (Ramos/HR1K) which thereafter bound higher amounts of C3 fragments and was lysed when incubated in human serum. This line had relatively low DAF level and lacked HRF20. The cytokine treatment did not alter the expression of these molecules. The CR2+ Ramos and the CR2- Rael cells were treated with 5-azacytidine which induced HRF20 and increased DAF expression. In parallel with this change Ramos cells became resistant to C-mediated lysis. The experiments with the panel of human B cell lines showed thus that cytolysis through activation of complement in homologous serum can be regulated at several steps by cell surface molecules. While expression of CR2 was required for C3 fixation, DAF and HRF20 inhibited lysis. By independent modulation of the quantities of these molecules, cells acquired or lost their sensitivity.

Antibodies, Monoclonal

Radiation leukemia virus (RadLV)-induced leukemogenesis is associated with an increased number and activity of thymic macrophages.

The radiation leukemia virus (RadLV) is a chronic leukemia retrovirus that induces thymic lymphomas in C57BL/6 mice after a latency of 3 to 6 months. During the pre-leukemic (PL) period, the number of thymic macrophages gradually increased up to 100 fold. Of the cells in a RadLV-induced lymphoma, 0.3% were large macrophages packed with infected lymphoma cells. These thymic lymphoma macrophages (TLM) also ingested RadLV-induced lymphoma cells in vitro. Cultured RadLV-induced lymphoma lines could activate and fix C3 fragments through the alternative complement pathway (ACP). C3-bound lymphoma cells elicited an oxidative burst (OB) response in TLM but not in bone-marrow macrophages (BMM). However, IL4 treatment of BMM rendered them capable of responding with an OB following triggering by C3-opsonized cells. Thymic macrophages (TM) responded moderately with OB to C3-opsonized cells and this response was elevated if the TMs were treated by rIL4. The OB reaction of the TLMs could be partially inhibited by anti-LFA-I or anti-MALA-2 antibodies, and was completely inhibited by anti-CR3 antibodies. These results suggest that IL4 can prime macrophages for triggering an OB reaction and that the interaction between C3-opsonized cells and IL4-primed macrophages is mediated primarily through CR3.

Animals

Quantitation, in vitro propagation, and characterization of preleukemic cells induced by radiation leukemia virus.

Intrathymic (i.t.) inoculation of radiation leukemia virus into C57BL/6 mice induces a population of preleukemic (PL) cells that can progress into mature thymic lymphomas upon transfer into syngeneic recipients. A minimum of 10(3) PL thymic cells are required to induce lymphomas in the recipient. Most of the individual lymphomas developed in mice which were inoculated with cells of a single PL thymus, derived from different T-cell precursors. PL thymic cells could be grown in vitro on a feeder layer consisting of splenic stromal cells. Growth medium was supplemented with supernatant harvested from an established radiation leukemia virus-induced lymphoma cell line (SR4). The in vitro-grown PL cells were characterized as Thy-1+, CD4+, CD8- T-cells, most of which expressed radiation leukemia virus antigens. Cultured PL cells were found to be nontumorigenic, based on their inability to form s.c. tumors. However, these cells could develop into thymic lymphomas if inoculated i.t. into syngeneic recipients. A culture of PL cells, maintained for 2 mo, showed clonal T-cell receptor arrangement. Lymphomas which developed in several recipient mice upon injection with these PL cells were found to possess the same T-cell receptor arrangement. These results indicate that PL cells can be adapted for in vitro growth while maintaining their preleukemic character.

Animals

Production of heparanase by normal and neoplastic murine B-lymphocytes.

The production of heparanase, an endoglycosidase capable of degrading heparan sulfate from the subendothelial extracellular matrix (ECM), was investigated in various murine B-lymphoid tumors representing distinct maturation stages of the B-cell lineage. We found that heparanase is produced and released by 3 out of 4 pre-B lymphomas and by 4 B lymphomas examined. In contrast, 5 plasmacytomas and resting normal B lymphocytes, expressed little, if any, heparanase activity. Treatment with LPS resulted in high expression of the enzyme by normal B-lymphocytes, but there was no effect on the constitutive production of heparanase by myeloma or B-lymphoma cells. Our results indicate that heparanase is produced by B cells during discrete stages of their maturation. We suggest that heparanase may play a role in B-cell migration by enabling pre-B and B lymphocytes to leave the bone-marrow compartment and recirculate among peripheral lymphoid organs.

Animals

The function of human NK cells is enhanced by beta-glucan, a ligand of CR3 (CD11b/CD18).

Cells responsible for the natural killer (NK) effect in the human blood can be collected in the low-density lymphocyte subset and the majority of them express CR3. In addition to the iC3b binding site the CR3 molecules possess an epitope which binds beta-glucan. Ligands of this site can deliver activation signals to CR3-carrying monocytes and neutrophils. We found that the function of NK cells was also potentiated by preincubation with beta-glucan. The treatment increased the proportion of target-binding lymphocytes and of the damaged target cells in the conjugates. The monoclonal antibody OKM-1, directed to the beta-glucan-binding site of CR3, abrogated this effect. Another CR3-reactive monoclonal antibody, M522, known to activate monocytes and neutrophils, enhanced the NK function.

Antibodies, Monoclonal

Antitumor effects of ketoconazole and trifluoperazine in murine T-cell lymphomas.

In vitro and in vivo antitumor effects of ketoconazole (KTZ), trifluoperazine (TFP), and combinations of both drugs were examined in cell lines established from radiation leukemia virus (RadLV)-induced T-cell lymphomas. KTZ inhibited [3H]-thymidine incorporation in the tumor cells in vitro; 50% inhibition of DNA synthesis was observed at concentrations of 4-7 micrograms/ml. [3H]-thymidine uptake in bone-marrow and spleen cells prepared from healthy mice was also inhibited by KTZ, but 50% inhibition was observed only at a concentration of 50 micrograms/ml. Stimulation of spleen cells with concanavalin A led to an increase in their sensitivity to the inhibition of DNA synthesis by KTZ. The tumor-cell lines varied in their sensitivity to the inhibition of DNA synthesis by TFP, and the effects of TFP on DNA synthesis in bone-marrow and spleen cells were similar to those observed in the tumor cells. Synergistic, additive, or less than additive effects of the drug combinations on the inhibition of DNA synthesis in vitro were observed both in tumor cells and in bone-marrow cells. In vivo experiments were conducted on groups of C57BL/6 (B6) mice that were inoculated s.c. with tumor cells and then treated with i.p. injections of KTZ, TFP or both. Control groups were injected with phosphate-buffered saline (PBS). Each of the drugs alone as well as their combinations caused a significant delay in the appearance of palpable tumors, a decrease in tumor size, and a marked prolongation of survival. The concentrations of the drugs used in in vivo experiments did not affect the WBC counts in the peripheral blood of healthy mice. KTZ is currently used for the treatment of prostatic cancer because of its inhibitory effect on testosterone biosynthesis. The results of the present study indicate the hormone-independent chemotherapeutic potential of KTZ, TFP, and combinations of the two drugs.

Animals

Potentiation of T cell immunity against radiation-leukemia-virus-induced lymphoma by polysaccharide K.

C57BL mice inoculated with radiation leukemia virus (RadLV) develop preleukemic cells long before the onset of leukemia. These cells are potentially immunogenic but fail to elicit an immune response in the host because of the appearance of virus-specific suppressor T cells. We have studied the effect of polysaccharide K (PSK) on the generation of RadLV-specific cell-mediated immune responses in vitro. Long-term exposure to PSK in culture potentiated the ability of immunized T cells to respond to a RadLV-induced lymphoma. It also abrogated the suppressive activity of suppressor T cells and simultaneously boosted the ability of reactive T cells to respond. The dual immunostimulating activity of PSK resulted in the generation of T cytotoxic lymphocytes that could lyse lymphoma cells in vitro. The results suggest that PSK could be used as a prophylactic immune response modifier in preleukemia.

Adjuvants, Immunologic

Alternative complement pathway activation by HIV infected cells: C3 fixation does not lead to complement lysis but enhances NK sensitivity.

HIV infected T and monocytic cell lines could activate and fix C3 fragments when incubated in human serum under conditions allowing for activation of the alternative complement pathway. Normal T lymphocytes incubated with HIV could also activate and fix C3. This activity was, at least in part, the property of the virus itself since cell-free HIV could efficiently activate C3. The C3 activating HIV infected cells were resistant to complement-mediated lysis, even after prolonged incubation periods. However, their sensitivity to cell-mediated natural killing increased, presumably due to their interaction with complement receptor bearing NK lymphocytes. The results suggest that the alternative complement pathway may contribute to the depletion of CD4+ T lymphocytes during HIV infection in vivo.

Cell Line

Activation and fixation of C3 by human B cell lines is enhanced by interferon-gamma and tumor necrosis factor alpha.

Human B cell lines were tested for the capacity to convert C3 to C3b/iC3b through the alternative C pathway (ACP) and to fix the generated C3 fragments. The panel of lines included four Epstein-Barr virus (EBV)-negative Burkitt's lymphomas and their sublines converted with two EBV strains: the prototype B958 (B virus) and the nontransforming P3HR-1 (P virus). Comparison of these groups of parallel lines (derived from a single patient) showed that the EBV-carrying cells were more efficient in activation and fixation of C3. All cell lines activated C3 with higher efficiency when treated with interferon gamma or tumor necrosis factor alpha. After treatment, the comparative relationships between the sublines changed. The treated EBV-negative and the P virus converted sublines showed similar levels of ACP activation, while the B virus carrying sublines were more efficient. The amounts of bound C3 fragments on the activating cells correlated with the ACP efficiencies. In accordance with the elevated ACP activation capacity of the cells after cytokine treatment, the amounts of C3 fragments detected on their surfaces were higher. Among the lines tested, only two (BL28 and Ramos) were sensitive to C-mediated lysis. The lytic sensitivity of these two lines increased after treatment with the cytokines. The results indicate, therefore, that the cytokine-induced increase in ACP activation by Burkitt's lymphoma line is not sufficient to overcome resistance to C lysis.

B-Lymphocytes

Contribution of CR3, CD11b/CD18 to cytolysis by human NK cells.

The complement receptor CR3 molecule functions in direct intercellular contacts mediated by its beta chain, CD18. Similarly to the Fc receptor (CD16), CR3 is a marker of human natural killer cells. We have shown that opsonization of NK targets with iC3b leads to their increased lytic sensitivity. Opsonization could be achieved by incubating certain B and T cell lines in human serum. The expression of CR2 was a prerequisite for C3 fragment fixation. The CR2 negative cell line, P3HR1 could be opsonized by incubation in human serum when induced to express the EBV envelope glycoprotein gp350. C3b or iC3b could also be deposited artificially on cell surfaces by chemical coupling to surface reactive antibodies. Similarly to the function of macrophages and monocytes, contact with opsonized targets exclusively through the iC3b binding site of CR3 did not seem to trigger NK function. We attempted to clarify the functional role of other CR3 ligands. The beta chain of the molecule, CD18, was essential to the NK effect. The NK targets did not seem to interact with the beta-glucan binding epitope on the alpha chain of CR3, CD11b. On the other hand, the cytolytic function could be enhanced through this epitope with the appropriate ligand.

Antigens, CD

Moloney lymphoma cells express a polyprotein containing the GAG gene-coded p15 and the Moloney leukemia virus-induced cell surface antigen (MCSA).

The relationship between MCSA and the viral structural proteins in YAC Moloney lymphoma cells was further investigated by using membrane immunofluorescence and immunoadsorbent columns. As previously observed, MCSA showed only minimal capping and thereby differed in behaviour from gp70, p30 and p12 virion antigens. Whereas antibody-induced capping of gp70 did not change the membrane distribution of MCSA, co-capping was observed between MCSA and p30 and p12 gag protein antigens. This indicated that, whereas MCSA is distinct from gp70, it is linked to p30 and p12 on the membrane of living cells. It was then attempted to isolate MCSA on anti-p30 and anti-p15 immunoadsorbent columns from solubilized YAC cells. Contrary to what was expected, no MCSA was found to the anti-p30 column. On the other hand, a part (10-15%) of the MCSA was bound to the anti-p15 column, indicating that MCSA is linked to the gag p15.

Animals

Detection of proteolytic (C 3-cleaving) activity on mouse mastocytoma (P 815) cells and other mouse cell lines by formation of cell contact with C 3-carrying mouse lymphocytes.

Mouse mastocytoma cells (P 815) formed rosettes with normal mouse spleen lymphocytes which had been coated with uncleaved human C 3; this interaction was clearly dependent on the amount of C 3. Lymphocytes treated with C 3 b or buffer alone were ineffective. Formation of cell contact could be inhibited by the presence of protease inhibitors such as diisopropyl fluorophosphate, phenyl methyl sulfonyl fluoride and tosyllysyl chloromethyl ketone. Seve n out of 13 different cell lines behaved like P 815 cells. The results strongly suggested that a proteolytic activity on mouse tumor cells led to a cooperation with uncleaved C 3 on a carrier cell to connect these two cells. We interpreted these data in analogy to the complement-dependent bridge formation mechanism (M. P. Dierich and B. Landen, J. Exp. Med. 1977. 146: 1484): uncleaved C 3, attached to mouse spleen lymphocytes as carriers, becomes cleaved by enzymes associated with the tumor cells tested; by this cleavage, the labile binding site is released on C 3 (nascent C 3 b) and anchors the C 3-carrying cell to the protease-carrying cell; since this labile binding site is short-lived, this process can be induced by membrane-associated proteases only. The nature of the proteases and the biological implications of this process are as yet uncertain.

Animals

Relationship between Epstein-Barr virus (EBV)-production and the loss of the EBV receptor/complement receptor complex in a series of sublines derived from the same original Burkitt's lymphoma.

Virus production, EBV (P3HR-1 substrain) superinfectability, IdUrd inducibility, EBV receptor and complement (C3) receptor expression were assessed in two independently maintained jijoye lines, the derived P3HR-1 clone that releases a growth inhibitory and cytopathic, non-transforming viral mutant, and in non-producer sublines derived from the P3HR-1 line by the spontaneous cessation of virus production. Both jijoye lines were superinfectable, inducible, and carried EBV and C3 receptors. Virus-producing P3HR-1 cells and recently derived non-producer sublines lacked EBV-receptors and C3 receptors, could not be superinfected, but were IdUrd inducible. Two long-passaged, non-producer sublines of P3HR-1 reexpressed EBV and C3 receptors to an equal degree (different in the two sublines). EBV-superinfectability became partially reestablished in the subline with the higher expression of EBV and C3 receptors. These findings support the hypothesis that the EBV-receptor/C3 receptor negativity of the producer P3HR-1 sublines and their recent non-producer derivatives is due to negative selection by the growth-inhibitory, cytopathic P3HR-1 virus variant. The closely linked disappearance and reappearance of EBV-receptors and complement receptors gives further support to the idea that these two receptors are either identical or closely linked constituents of the cell membrane.

Antigens, Viral