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Trypanosoma cruzi: resistance to the pore forming protein of cytotoxic lymphocytes--perforin.

The pore-forming protein perforin is one of the main effector molecules which cytotoxic lymphocytes utilize to kill their targets both in vivo and in vitro. Natural killer cells and cytotoxic T lymphocytes play an important role in host defense against a number of intracellular microorganisms such as virus and protozoan, but the exact way they help control infection is unknown. On the other hand, many microorganisms have evolved successful escape strategies to avoid immune-cell-mediated attack. It is thus necessary to investigate the direct interaction of infectious microorganisms with the lytic machinery of cytotoxic lymphocytes and other cells. In the present work we report the effect of perforin on both a protozoan, Trypanosoma cruzi, and the infected host cell. Epimastigote, amastigote, and trypomastigote forms of T. cruzi, as well as infected macrophages, were assayed for their susceptibility to perforin based on three different criteria. T. cruzi in all three differentiation stages were resistant to purified perforin at doses up to 100-fold larger than that sufficient to kill susceptible tumor cells. No morphological change was observed under electron microscopy. Survival rates and infectivities of the treated parasites in vitro were similar to those of control parasites. Moreover, the measurement of calcium influx using Fura-2 to assess membrane damage revealed that T. cruzi resist perforin attack by avoiding transmembrane pore formation. Resistance to perforin was not transferred to host cells since infected macrophages could be easily destroyed by perforin while intracellular amastigotes remained intact.

Animals↗

IL-7 regulation of cytotoxic lymphocytes: pore-forming protein gene expression, interferon-gamma production, and cytotoxicity of human peripheral blood lymphocytes subsets.

The effects of IL-7 on the generation of cytolytic human peripheral blood lymphocytes (PBL) were investigated. Induction of T-cell pore-forming protein (PFP) mRNA and cytotoxic potential by IL-7 was both slow and minor compared with that observed in IL-2-cultured T cells. IL-7 and suboptimal doses of IL-2 (10 U/ml) were found to costimulate PFP mRNA expression and cytotoxic potential in T cells. Clearly, however, both IL-7 and IL-2/IL-7 induced the PFP gene expression and cytotoxic potential of CD8+ T cells and not CD4+ T cells. In addition, neither monoclonal antibodies (mAb) to the p55 or p75 IL-2-receptor subunits had any effect upon IL-7 induction of CD8+ T-cell cytotoxicity, indicating that IL-7 induction of cytotoxic CD8+ T cells was IL-2 independent. IL-7 induction of CD3- large granular lymphocyte (LGL) and PB gamma delta T-cell cytotoxicity was also delayed and reduced compared with that effected by IL-2. IL-7 (10 or 1000 U/ml, 72 hr) enhanced the NK and LAK cytotoxic of LGL and PB gamma delta T cells. By contrast IL-7 or IL-2 augmented the redirected cytotoxic potential of PB gamma delta T cells, but not that of LGL, and neither lymphokine had any effect on constitutive PFP mRNA expression in either lymphocyte subset. In addition, IL-7 induction of LGL IFN-gamma production was weak and delayed compared with that effected by IL-2 and neither IL-2 nor IL-7 stimulated IFN-gamma production in PB gamma delta T cells. Therefore, overall the effects of IL-2 and IL-7 on various cytotoxic human PBL were qualitatively similar, but quantitatively and kinetically different.

Cells, Cultured↗

Resistance to the pore-forming protein of cytotoxic T cells: comparison of target cell membrane rigidity.

Cytotoxic T lymphocytes (CTL) release from their granules a 70 kDa protein, called PFP, perforin or cytolysin, which inserts into the target cell plasma membrane in its monomeric form. Here it polymerizes into a macromolecular complex forming pores as large as 20 nm. Although purified PFP/perforin can effectively lyze all target cells tested. CTL are refractory to lysis. The mechanism underlying the resistance of CTL is currently unknown. This study represents a search for membrane structural properties that could confer resistance to CTL against PFP/perforin-mediated lysis. The fluorescent dye merocyanine 540 was used to measure the lipid head group packing of CTL and several target cells, and 1-[4-(trimethylamine)phenyl]-6-phenylhexa-1,3,5-triene was used to estimate the fluidity of the membrane hydrocarbon region. The resistance against PFP/perforin-mediated lysis was determined by the 51Cr release assay. A comparison of the membrane rigidity with cell resistance led to the conclusion that the membrane lipid structure cannot account for the unusually high resistance of CTL. In particular, the resistant CTL line CTLL-2 has a lipid head group packing that is looser than that of Yac-1, and the sensitive target cells Jy-25 and EL-4 have membrane acyl chains that are less fluid than those of the effector CTLL-R8.

Animals↗

Calcium is essential for both the membrane binding and lytic activity of pore-forming protein (perforin) from cytotoxic T-lymphocyte.

The influence of Ca on the membrane binding and lytic activity of lymphocyte pore-forming protein (perforin) was studied. In the absence of Ca, perforin did not bind to the target membranes and did not support lysis of the target cells. In contrast, in the presence of Ca perforin was able to bind to the cell membrane (Km greater than 0.2 mM). Almost all the perforin molecules bind to the membrane within 1 min at 0 degrees C. The addition of EDTA abolished the binding, indicating that the effects of Ca on the membrane binding are reversible. On the other hand, the perforin-mediated lysis of target cells was temp-dependent and also required the presence of Ca in the reaction mixture (Km = 0.05 mM). The difference between the Km values for the membrane binding and lytic activity suggests the presence of two distinct Ca-requiring steps in perforin-mediated target cell lysis.

Animals↗

IL-2 and IL-6 synergize to augment the pore-forming protein gene expression and cytotoxic potential of human peripheral blood T cells.

Our previous studies have demonstrated that high dose IL-2 (1000 U/ml) alone can induce human peripheral blood T cell pore-forming protein (PFP) mRNA expression and cytotoxic potential. We now report that the levels of IL-2 needed to induce these effects in T cells can be significantly reduced in the presence of IL-6. IL-6 and suboptimal doses of IL-2 (10 U/ml) were found to costimulate PFP mRNA expression and cytotoxic potential in resting human peripheral blood T cells, whereas IL-6 or low dose IL-2 alone had no effect. The induction of T cell PFP mRNA by IL-2/IL-6 was extremely rapid and increases in both PFP mRNA expression and cytotoxic potential were IL-6 dose dependent. The costimulatory effect of IL-6 did not appear to involve the IL-2/IL-2R pathway in as much as IL-6 did not induce IL-2 production or detectably increase IL-2R surface expression in T cells. These findings, in addition to the rapid induction of PFP mRNA by IL-2/IL-6, suggested that IL-6 can directly and independently provide an additional signal to augment the differentiation of CTL. In contrast to the results observed in T cells, IL-6 and IL-2 could enhance CD3- large granular lymphocyte (LGL) NK activity, but IL-6 either alone or in combination with IL-2 had no effect on constitutive PFP mRNA expression in resting LGL. These data further confirm that different mechanisms may be responsible for lymphokine activation of CTL and LGL in human peripheral blood. In particular it appears that IL-6 acts as a costimulatory signal with IL-2 in generating CTL and that IL-6 functions in part by acting in synergy with IL-2 to induce PFP, a major lytic protein involved in lymphocyte cytotoxicity.

Antigens, Differentiation, T-Lymphocyte↗

Effects of heparin and other acid mucopolysaccharides on the activity of a cytolytic pore-forming protein (perforin) from cytotoxic T-lymphocytes.

A cytolytic protein (perforin) was rapidly purified from a cell line of mouse cytotoxic T-lymphocytes (CTL) by DEAE-cellulose, heparin-Sepharose, and phenyl-Sepharose chromatographies. The purified perforin was activated by heparin, the half maximal concentration being 3-10 ng/ml, depending on the calcium concentration. Other acid mucopolysaccharides, such as chondroitin sulfates A and C, keratan polysulfate, and heparin sulfate, also enhanced the lysis of erythrocytes by perforin, but the concentrations required for activation were more than 100-fold higher than that of heparin. Chondroitin, hyaluronic acid, and keratan sulfate, however, had no effect on the perforin activity. It was suggested that heparin potentiates the lytic activity of perforin and acid mucopolysaccharides may actually be involved in target cell lysis by CTL.

Animals↗

The ninth component of complement and the pore-forming protein (perforin 1) from cytotoxic T cells: structural, immunological, and functional similarities.

The ninth component of complement (C9) and the pore-forming protein (PFP or perforin) from cytotoxic T lymphocytes polymerize to tubular lesions having an internal diameter of 100 A and 160 A, respectively, when bound to lipid bilayers. Polymerized C9, assembled by slow spontaneous or rapid Zn2+-induced polymerization, and polyperforin, which is assembled only in the presence of Ca2+, constitute large aqueous pores that are stable, nonselective for solutes, and insensitive to changes of membrane potential. Monospecific polyclonal antibodies to purified C9 and PFP show cross-reactivity, suggesting structural homology between the two molecules. The structural and functional homologies between these two killer molecules imply an active role for pore formation during cell lysis.

Animals↗

Pore-forming protein in individual cytotoxic T lymphocytes: the effect of senescence provides a probe for understanding the lytic mechanism.

The senescent decline of cytolytic T lymphocyte (CTL) activity was examined (a) to learn more about the effect of aging on the immune system, and (b) to probe the mechanism of cell-mediated cytolysis. The effect of age on the generation of pore-forming protein (Pfp) was examined at the cellular level in a murine model using CTL stimulated in allogeneic mixed lymphocyte culture (MLC). Pfp expression was analyzed by immunocytochemistry and enzyme-linked immunosorbent assay (ELISA). Immunocytochemical analyses of Pfp in MLC-stimulated splenic T cells from a large number of mice revealed that although stimulated cells from aged mice exhibited fewer Pfp-producing cells than those from young, the diminution in the proportion of Pfp+ cells was small compared to the age-related decrease in lytic activities (approximately 2-fold vs. approximately 7.4-fold, respectively). Time-course analysis disclosed similar kinetics for the generation of Pfp+ cells among responding cells from young and aged mice. No significant age-related difference in the proportion of Pfp+ cells was observed in MLC-stimulated lymph node cells despite a large and significant difference in lytic activity (approximately 6.5-fold). Purified CD8+ T cells demonstrated a large age-related difference in CTL activity (approximately 3-11-fold) and accounted for virtually all the Pfp. Although little difference in the proportion of Pfp+ CD8+ T cells could be detected between age groups, stimulated CD8+ cells or whole splenic T cells from old mice consistently exhibited a striking reduction in both the intensity of Pfp staining and the apparent numbers of granules per cell. This difference in Pfp was examined by ELISA and total Pfp levels were found to be approximately 12-fold greater in CTL generated from splenic T cells of young compared to aged mice. The results demonstrate that Pfp levels are reduced in CTL from aged compared to young mice at the level of the individual cells and suggest the possibility that a threshold level of Pfp may be required for potency of effector cell function.

Aging↗

Constitutive expression of pore-forming protein in peripheral blood gamma/delta T cells: implication for their cytotoxic role in vivo.

The cytotoxic activity and pore-forming protein (PFP) expression of human peripheral blood (PB) gamma/delta T cells were examined. Fresh gamma/delta T cells isolated from PB lymphocytes by fluorescence-activated cell sorting exhibited a substantial natural killer-like cytotoxic activity against K562 target cells and had a high cytotoxic potential triggered by anti-CD3 monoclonal antibody (mAb) against P815 target cells bearing Fc gamma R. Immunocytochemical staining with an anti-PFP mAb revealed that virtually all PB gamma/delta T cells are granular lymphocytes with abundant PFP in their cytoplasmic granules. Constitutive expression of PFP in PB gamma/delta T cells was also demonstrated by Northern blot analysis. These observations support the proposed role of gamma/delta T cells in cytolytic immune surveillance in vivo.

Antibodies, Monoclonal↗

Properties of a purified pore-forming protein (perforin 1) isolated from H-2-restricted cytotoxic T cell granules.

Histocompatibility-restricted cytotoxic T lymphocytes produce circular lesions on target cell membranes. The pore-forming protein (PFP or perforin 1) that forms these membrane lesions has been purified from lymphocytes. At 37 degrees C, in the presence of Ca2+, this protein polymerizes into a supramolecular tubular complex of Mr greater than 10(6) that partially resists dissociation by SDS and reducing agents. It incorporates spontaneously into planar lipid bilayers during polymerization to form nonselective ion channels, showing heterogeneous size distribution, the smallest conductance per unit being identified as 400 pS in 0.1 M NaCl. PFP/P1 that had been assembled in lipid vesicles before incorporation into planar bilayer show much larger single channel conductance, ranging from 1 to 6 nS in 0.1 M NaCl, suggesting that PFP/P1 may assume multiple functional sizes in proportion to its state of polymerization. The reconstituted channels are relatively voltage-insensitive, with most channels persisting in the open state for seconds to minutes. Nucleated cells are rapidly depolarized by this protein. The purified protein lyses a variety of tumor cells. Polymerization and functional channel activity are absolutely Ca2+-dependent. The activity of this protein may play a direct role in T lymphocyte-mediated cytolysis.

Animals↗

Similarity, in molecular structure and function, between the plant toxin purothionin and the mammalian pore-forming proteins.

Many proteins containing domains of a cysteine-rich repeated motif, such as epidermal growth factor (EGF), have been reported. Here we report strong similarity between the amino acid sequence of a plant toxin--i.e., purothionin and its homologues--and with those of a domain found in mammalian pore-forming cytoplasmic proteins: components of complement and perforin of cytotoxic T-lymphocytes or natural killer-like cytotoxic cells. These similar sequences were found to be identical to the so-called EGF-like cysteine-rich repeated motif itself. Electron-microscopic observations indicated that, like complement and perforin, purothionin forms pores in the cytoplasmic membrane of target cells, resulting in their death within a few hours. On the basis of these sequence comparisons and physiological functions, we propose a scheme for the evolution of proteins containing modules of the cysteine-rich repeat motif.

3T3 Cells↗

Rapid on/off cycling of cytokine production by virus-specific CD8+ T cells.

CD8-positive T cells protect the body against viral pathogens by two important mechanisms: production of antiviral cytokines and lysis of infected cells. Cytokine production can have both local and systemic consequences, whereas cytolytic activity is limited to infected cells that are in direct contact with T cells. Here we analyse activated CD8-positive T cells from mice infected with lymphocytic choriomeningitis virus and find that cytokines are not produced ex vivo in the absence of peptide stimulation, but that they are rapidly generated after T cells encounter viral peptides bound to the major histocompatibility complex. Remarkably, cytokine production ceases immediately upon dissociation of the T cells from their targets and resumes when antigenic contact is restored. In contrast to the 'on/off/on' cycling of cytokines, the pore-forming cytotoxic protein perforin is constitutively maintained. Our results indicate that there is differential expression of effector molecules according to whether the antiviral product is secreted (like cytokines) or stored inside the cell (like perforin). The ability to turn cytokines on and off while maintaining intracellular stores of perforin shows the versatility of the cellular immune response and provides a mechanism for maintaining effective immune surveillance while reducing systemic immunopathology.

Animals↗

Expression of perforin, granzyme A and TIA-1 by human uterine CD56+ NK cells implies they are activated and capable of effector functions.

At the time the human placenta is established, the uterine mucosal lining (decidua) is infiltrated by abundant CD3- CD56bright natural killer (NK) cells. NK cells circulating in blood are known to contain perforin and granzyme A in their cytoplasmic granules. TIA-1, an RNA-binding protein capable of inducing DNA fragmentation, has also been found in the granules of cytolytic cells. In this paper, we demonstrate the presence of perforin, granzyme A and TIA-1 in the granules of uterine NK cells. Sixteen sections of non-pregnant endometrium throughout the menstrual cycle and six sections of early decidua, together with cytospins of four preparations of isolated decidual leukocytes were stained by both immunohistology and immuno-electron microscopy to localize perforin, granzyme A and TIA-1 to the cytoplasmic granules of CD56+ cells. The presence in vivo of these cytolytic molecules in a normal physiological situation implies that these uterine NK cells may have effector functions in the control of normal placentation.

Antigens, CD↗

Cytotoxic activity of T- and NK-cell lymphoma cells is not dependent on a mature cytotoxic phenotype.

Cytotoxic T- and NK-cell neoplasms constitute a rare clinico-pathological entity associated with aggressive clinical behaviour and a poor prognosis. The entity comprises a heterogenous group of different diseases classified by histologic, immunologic as well as clinical features. Recently, expression patterns of "cytotoxicity-associated proteins" such as T-cell intracellular antigen (TIA), perforin and granzyme B have been applied to differentiate between an immature (TIA positive) and a mature (TIA and perforin and/or granzyme B positive) phenotype of these malignant cells. In particular, expression of perforin and granzyme B are considered to mediate cytotoxic activity. This study assesses histology/cytology, immunophenotype, expression of "cytotoxicity-associated proteins" and the actual exhibition of cytotoxic activity of lymphoma cells of 10 patients suffering from different T- and NK-cell neoplasms. As investigated by PKH67 labelling of the target cells 6 out of 10 samples exhibited cytotoxic activity. Thus, all samples of lymphoma cells with a mature phenotype exhibited cytotoxic activity. Nevertheless, the ability to induce cytotoxic cell lysis was neither restricted to mature lymphoma cells, nor to lymphoma cells expressing "cytotoxicity-associated proteins": two samples with an immature phenotype and one CD4 positive sample, completely lacking expression of "cytotoxic proteins" as well as NK cell-associated markers, destroyed target cells. Artificial activation of a mature cytotoxic phenotype by cell culture conditions or contact of lymphoma cells with target cells was excluded by demonstrating the absence of perforin expression after the incubation period in two exemplary cases. In conclusion, we demonstrate that the exhibition of cytotoxic activity is neither restricted to cells with a mature phenotype, nor does it depend on the expression of the "cytotoxicity-associated proteins" TIA, perforin or granzyme B.

Antigens, CD↗

Characterization of a pore-forming cytotoxin expressed by Salmonella enterica serovars typhi and paratyphi A.

Cytolysin A (ClyA) is a pore-forming cytotoxic protein encoded by the clyA gene that has been characterized so far only in Escherichia coli. Using DNA sequence analysis and PCR, we established that clyA is conserved in the human-specific typhoid Salmonella enterica serovars Typhi and Paratyphi A and that the entire clyA gene locus is absent in many other S. enterica serovars, including Typhimurium. The gene products, designated ClyA(STy) and ClyA(SPa), show >/=90% amino acid identity to E. coli cytolysin A, ClyA(EC), and they are immunogenically related. The Salmonella proteins showed a pore-forming activity and are hence functional homologues to ClyA(EC). The chromosomal clyA(STy) gene locus was expressed at detectable levels in the serovar Typhi strains S2369/96 and S1112/97. Furthermore, in the serovar Typhi vaccine strain Ty21a, expression of clyA(STy) reached phenotypic levels, as detected on blood agar plates. The hemolytic phenotype was abolished by the introduction of an in-frame deletion in the clyA(STy) chromosomal locus of Ty21a. Transcomplementation of the mutant with a cloned clyA(STy) gene restored the hemolytic phenotype. To our knowledge, Ty21a is the first reported phenotypically hemolytic Salmonella strain in which the genetic determinant has been identified.

Base Sequence↗

Uniform expression of cytotoxic molecules in anaplastic large cell lymphoma of null/T cell phenotype and in cell lines derived from anaplastic large cell lymphoma.

We recently provided ample evidence that anaplastic large cell lymphomas of T/null phenotype (T-/null-ALCL) genotypically represent peripheral T cell lymphomas which in up to 90% have a phenotype of cytotoxic cells with expression of granzyme B protein and perforin transcripts. However, the issue of granzyme B expression in T-/null-ALCL is still controversial due to differing results from another laboratory. To verify our earlier immunohistochemical stainings for granzyme B, we looked for granzyme B transcripts by in situ hybridization (ISH). In addition, we investigated our previously analyzed cases by immunohistology (IH) with another antibody (2G9), which reacts with two molecules known to be expressed in cytotoxic cells: T-cell-restricted intracellular antigen (TIA)-1 and granule membrane protein-17 (GMP-17). We also extended our studies to homogenous tumor cell populations provided by ALCL-derived cell lines. As evidenced by ISH, transcripts for perforin, TIA-1 and granzyme B were found in all ALCL-derived cell lines. Similarly, proteins of TIA-1/GMP-17, granzyme B and perforin were expressed in all of these lines as shown by IH. In biopsy specimens, TIA-1/GMP-17 were detected by IH in 14/16 cases of T-/null-ALCL, and granzyme B transcripts were found in 13/13 T-/null-ALCL cases, but not in 6 B-ALCL cases. The detection of granzyme B transcripts yielded results largely identical to those of IH for granzyme B protein, thus confirming our earlier data and suggesting that the regulation of the expression of this molecule largely occurs at the transcriptional level. Our data further confirm the almost uniform expression of cytotoxic molecules in both primary ALCL cases and ALCL-derived cell lines and therefore suggest that the derivation from cytotoxic T cells may be the unifying characteristic for T-/null-ALCL.

Cytotoxicity, Immunologic↗

Cytotoxic protein expression in natural killer cell lymphomas and in alpha beta and gamma delta peripheral T-cell lymphomas.

Lymphomas with T-cell phenotype represent a heterogeneous group of diseases differing in histopathology, tumour site, and cell origin. They include peripheral T-cell lymphomas (PTCLs) derived from alpha beta cells, but also some recently recognized entities such as gamma delta, hepatosplenic lymphomas and natural killer (NK) cell lymphomas. Only a few studies have investigated the possibility that at least some PTCLs could be derived from lymphocytes with cytotoxic potential. In order to investigate this possibility, 60 cases of PTCL, including 27 cases expressing the alpha beta T-cell receptor (TCR alpha beta), 15 TCR gamma delta cases and 18 cases expressing neither TCR (TCR silent), as well as 14 cases of NK-cell lymphomas, were studied by immunohistochemistry for the expression of TIA-1, perforin, and granzyme B proteins. Expression of TIA-1 is characteristic of cytotoxic cells regardless of their activation status, whereas expression of perforin and granzymes is highly increased in activated cytotoxic cells and correlates with the induction of cytolytic activity. All NK-cell lymphomas (11 sinonasal, three systemic cases) expressed TIA-1, perforin, and granzyme B in most tumour cells. All gamma delta PTCLs (15 cases) expressed TIA-1 protein in most tumour cells, with a different cytotoxic antigen profile in hepatosplenic gamma delta PTCL (TIA-1+, perforin-, granzyme B-) and in non-hepatosplenic gamma delta PTCLs (three nasal, one skin, one lung), the latter expressing the three cytotoxic proteins. Of the 45 cases of alpha beta and TCR silent PTCL, 15 (33 per cent) were considered to be derived from cytotoxic lymphocytes with expression of at least one cytotoxic protein (TIA-1, 15/45; perforin, 10/41; granzyme B, 14/38) in tumour cells. This cytotoxic protein expression appeared to be related to the site of localization, since 7/13 (54 per cent) extranodal and only 8/32 (25 per cent) nodal alpha beta and TCR silent PTCLs expressed TIA-1, and to histology, since this pattern was observed in a proportion of anaplastic (6/8, 75 per cent) and pleomorphic (8/17, 47 per cent) lymphomas, but not in AILD-type NHL (0/16). Taken together, our data suggest that NK-cell lymphomas and non-hepatosplenic gamma delta PTCLs represent tumours of activated cytotoxic NK cells and gamma delta T cells, respectively; that hepatosplenic gamma delta PTCLs represent tumours of non-activated cytotoxic gamma delta T cells; and that a small proportion of alpha beta and TCR silent PTCLs, mostly extranodal cases, or nodal anaplastic lymphomas, represent tumours of cytotoxic T cells.

Granzymes↗