Analysis of human lymphocyte subpopulations responsible for antibody-dependent and spontaneous cell-mediated cytotoxicity.
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Biomedical subjects
Publications and source records attributed to G Trinchieri.
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A viral inhibitor(s) is released in the supernate of mixed cultures containing human or mouse lymphocytes and cells from certain lines. The inhibitor is active against a variety of unrelated viruses and is a protein that is not toxic for cells. It does not inactivate viruses directly, but inhibits viral replication through an intracellular mechanism that involves synthesis by the cells of both RNA and protein. These characteristics identify the inhibitor as an interferon. The anti-viral activity is contained in at least two molecular species, of approximately 25,000 and 45,000 daltons, respectively. In addition to the anti-viral activity, the supernates of the mixed cultures display an anti-cellular activity, the inhibition of DNA synthesis and of cell multiplication. The anti-viral and the anti-cellular activities are positively correlated in supernates from various cultures and in partially purified preparations. The human cell population responsible for interferon production is composed mainly of Fc-receptor positive, surface immunoglobulin negative, non-T-cell lymphocytes. The ability of certain cell lines to induce interferon seems to be preferentially associated with tumor origin or with in vitro transformation by certain viruses (Epstein-Barr virus, murine sarcoma virus).
Interferon, induced in lymphocytes either with viruses or cell lines, increases severalfold the natural cytotoxicity of human lymphocytes on target cell lines. Cell separation experiments support the hypothesis that interferon enhances the activity of natural killer cells rather than generating a new population of effector cells. In mixed culture of lymphocytes and cell lines in which endogenous interferon is produced, interferon mediates an enhancement of cytotoxicity that represents up to 70-90% of the observed cytotoxicity. The effect of interferon on target cells is antagonistic to the effect on the lymphocytes: the susceptibility to cell-mediated lysis of various cells upon pretreatment with interferon is decreased and in some cases almost completely suppressed. Interferon renders target cells resistant to natural killer cells acting by an intracellular mechanism which requires RNA and protein synthesis. While normal fibroblasts are protected, virus-infected cells and most tumor cells usually are not protected by interferon. Interferon by stimulating very efficient nonspecific cytotoxic cells and by protecting at the same time normal cells from lysis, might render the natural killer cell system an inducible selective defense mechanism against tumor and virus-infected cells.
The mechanisms by which human lymphocytes lyse virus-infected allogeneic fibroblast cultures were analyzed with particular consideration of the role of anti-viral antibodies and interferon. Human cells infected with viruses were able to induce high levels of interferon upon contact with human lymphocytes. Interferon, whether produced by lymphocytes after direct infection with virus or induced upon exposure of lymphocytes to virus-infected fibroblasts, appeared to be responsible for enhancing the cytotoxic efficiency of the natural killer cell against the infected target. Activation of cytotoxic lymphocytes occurred as early as 6 hr after addition of interferon and increased up to 24 hr. Antibody-dependent cell-mediated cytotoxicity (Ab-CMC) could be easily induced by sensitization of infected target cells with antiviral antibodies and could be detected at 4 hr from the beginning of the cytotoxic test, before the effect of interferon on the natural killer cell was evident. However, the antibody-dependent effector cell was inactive after 4 hr of incubation. F(ab')2 fragments of rabbit anti-human IgG completely inhibited Ab-CMC but did not at all affect the spontaneous cytotoxic activity of the effector cells against virus-infected target.
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In a 51Chromium release assay performed without immune sera, purified lymphocytes from randomly selected healthy donors killed significantly more allogeneic virus-infected than noninfected fibroblasts. An incubation period of 18 to 20 hr was optimal for determining cytotoxicity, but increased cytotoxic activity against infected cells was observed as early as 6 hr from the start of the test. No correlation could be found between donors' antibody titers to any virus tested and the cytotoxic efficiency of their effector cells: virus-infected cells were lysed by both seropositive and seronegative individuals. With several different cell fractionation techniques, the effector cell in this system could not be distinguished from the human natural killer cell, which is a lymphocyte with receptors for the Fc fragment of IgG but with no surface immunoglobulin. When lymphocytes were separated on the basis of ability to form rosettes with neuraminidase or AET (2-aminoethylisothiouronium bromide hydrobromide)-treated sheep erythrocytes, the majority of cytotoxic activity was consistently recovered in the nonrosetting fraction. A portion of it, however, was always present in the rosetting fraction and was, again, mediated by lymphocytes carrying receptors for the Fc fragment of IgG.
When lymphocytes from healthy donors were tested as effector cells, the cytotoxic activities observed in spontaneous and in antibody-dependent cell-mediated cytotoxicity were positively correlated. However, with lymphocyte preparations obtained from renal patients, a dissociation between the two activities was occasionally observed. Human natural killer cells are lymphocytes, with receptors for the Fc fragment of IgG molecules, but with no surface immunoglobulin. Their cytotoxicity is reduced by the presence of granulocytes or monocytes. After separation of rosetting and non-rosetting cells with AET- (2-aminoethylisothiouronium bromide hydrobromide) or neuraminidase-treated sheep erythrocytes, the majority of the activity was recovered in the non-rosetting fraction, but a portion of it was present consistently in the rosetting cell fraction. Cells in the latter fraction also displayed receptors for the Fc fragment of immunoglobulin G.
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Immunoselection via complement-dependent lysis of human-mouse somatic cell hybrids containing chromosome 7, with antisera reactive to cell surface antigen(s) coded for by chromosome 7, has resulted in growth of somatic cell hybrids containing rearranged human chromosome 7s. Investigation of these hybrids has localized the gene(s) coding for the relevant cell surface antigen(s) to the short arm of human chromosome 7. The simian virus 40 integration site and the gene coding for human beta-glucuronidase appear to be localized to the long arm of chromosome 7 in this hybrid clone.
The effect of ammonium chloride treatment, used to eliminate contaminating red blood cells from lymphoid cell preparations, on the cytotoxic activity of human effector cells in antibody-dependent and spontaneous cell-mediated cytotoxicity was quantitatively determined. No significant difference between the cytotoxic efficiency of treated and untreated cell preparations was observed.
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