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Biomedical subjects

M Vitale

Publications and source records attributed to M Vitale.

At least 109 records · Page 6Linked to original sources

A novel surface molecule homologous to the p58/p50 family of receptors is selectively expressed on a subset of human natural killer cells and induces both triggering of cell functions and proliferation.

Human natural killer (NK) cells express inhibitory (p58) or activatory (p50) receptors for HLA-C alleles. Here, we describe a novel member of the p58/p50 family that is expressed by a subset of NK cells in about one third of donors. This molecule, termed p50.3, mediates NK cell triggering as revealed by the induction of intracellular free calcium mobilization, cytokine release and cytotoxicity. In addition, anti-p50.3 monoclonal antibody (mAb) induced a selective, strong proliferation of p50.3+ NK cells in peripheral blood lymphocytes. Although p50.3 molecules do not appear to display an obvious HLA class I specificity, they are usually coexpressed with known inhibitory receptors for HLA class I alleles, mAb-mediated cross-linking of these receptors leads to inhibition of the anti-p50.3 mAb-induced NK cell activation and proliferation. Surface p50.3 molecules are glycoproteins of approximately 55-58 kDa which, upon deglycosylation, display a relative molecular mass of 36 kDa, similar to that of deglycosylated (activatory) p50 receptors. Analysis of the two-dimensional peptide maps of the 50.3 molecules revealed a high homology with the other HLA-C-specific p58/p50 receptors. The use of a set of oligodeoxynucleotide primers, previously shown to amplify the activatory (p50) forms of HLA-C-specific receptors, consistently amplified in p50.3+ clones a cDNA sequence termed KKA3. This sequence belongs to the p58/p50 multigene family, that encodes for a transmembrane protein specifically stained by anti-p50.3 mAb in cell transfectants. Similar to p50 molecules, the KKA3-encoded molecules are characterized by two extracellular immunoglobulin-like domains, by the presence of a lysine in the transmembrane region and a short (39 amino acids) cytoplasmic tail which does not contain immune receptor tyrosine-based activation motifs (ITAM)-like sequences.

Amino Acid Sequence↗

CD94 functions as a natural killer cell inhibitory receptor for different HLA class I alleles: identification of the inhibitory form of CD94 by the use of novel monoclonal antibodies.

CD94 molecules have been suggested to function as inhibitory natural killer cell (NK) receptors involved in the recognition of HLA-B alleles sharing the Bw6 supertypic specificity. In this study, we show that CD94 molecules may play a more general role: they are also involved in the recognition of other HLA class I molecules, including HLA-C and at least some HLA-A alleles. The inhibitory effect mediated by CD94 molecules on NK cytolytic activity is lower in magnitude than that of bona fide inhibitory receptors such as p58 or p70. Distinct from the other human NK receptors involved in HLA class I recognition, CD94 is expressed on virtually all NK cells. In addition, it has been shown to be functionally heterogeneous since, in different clones, CD94 mediated either cell triggering or inhibition. Although NK cells expressing inhibitory CD94 molecules are usually characterized by a CD94bright phenotype, there is no precise correlation between fluorescence intensity and inhibitory or activating function. Here, we describe two novel monoclonal antibodies (mAb) which selectively recognize inhibitory CD94 molecules and bind to a subset (variable in size among different donors) of CD94bright cells. The use of these mAb allows the direct assessment of NK cells expressing inhibitory CD94 receptors both at the population and at the clonal level.

Alleles↗

Early events of liver regeneration in rats: a multiparametric analysis.

5-Bromodeoxyuridine (BrdU), a synthetic analogue of thymidine, has been utilized in vivo to detect the proliferation which occurs in the liver after two-thirds surgical hepatectomy. Immunocytochemical detection of BrdU incorporation has been carried out at both the morphological and flow cytometrical level, while structural changes of regenerating liver have been investigated, using Mallory-Azan-stained paraffin sections, by means of an image analyser. The results obtained show that in vivo DNA synthesis progression throughout S phase follows a pattern similar to that previously described in vitro in both 3T3 fibroblasts and Friend erythroleukemia cells and also demonstrate a precise correlation between morphological patterns of BrdU incorporating cells and their lobular distribution. Moreover, the activation of at least two proliferation waves can be detected from 18 to 34 h after hepatectomy: the former, starting from adjacent regions of contiguous lobules, apparently induces an irregular increase of lobular dimension; the latter, involving both inner and peripheral lobular domains, seems to be correlated with the appearance of nodule-like structures at the lobule periphery. In view of these results the role of the hepatic acinus and the hypothesis of a streaming of parenchymal cells during liver regeneration have been discussed.

Animals↗

Receptors for HLA class-I molecules in human natural killer cells.

Natural killer cells are likely to play an important role in the host defenses because they kill virally infected or tumor cells but spare normal self-cells. The molecular mechanism that explains why NK cells do not kill indiscriminately has recently been elucidated. It is due to several specialized receptors that recognize major histocompatibility complex (MHC) class I molecules expressed on normal cells. The lack of expression of one or more class I alleles leads to NK-mediated target cell lysis. During NK cell development, the class I-specific receptors have adapted to self-class I molecules on which they recognize epitopes shared by groups of class I alleles. As such, they may fail to recognize either self-molecules that bound unusual peptides or allogeneic class I molecules unrelated to self-alleles. Different types of receptors specific for groups of HLA-C or HLA-B alleles have been identified. While in most instances, they function as inhibiting receptors, an activating form of the HLA-C-specific receptors has been identified in some donors. Molecular cloning of HLA-C- and HLA-B-specific receptors has revealed new members of the immunoglobulin superfamily with two or three Ig-like domains, respectively, in their extracellular portion. While the inhibiting form is characterized by a long cytoplasmic tail associated with a nonpolar transmembrane portion, the activating one has a short tail associated with a Lys-containing transmembrane portion. Thus, these human NK receptors are different from the murine Ly49 that is a type II transmembrane protein characterized by a C type lectin domain. A subset of cytolytic T lymphocytes expresses NK-type class I-specific receptors. These receptors exert an inhibiting activity on T cell receptor-mediated functions and offer a valuable model to analyze the regulatory mechanisms involved in receptor-mediated cell activation and inactivation.

Animals↗

Morphometric and functional study of apoptotic cell chromatin.

Apoptosis is usually characterized by profound morphological nuclear changes. Chromatin undergoes a progressive condensation that eventually involves all the nucleus. At earlier stages chromatin appears as divided in compact and diffuse areas, while the nuclear pores disappear from the nuclear envelope that surrounds the compact areas, and cluster around diffuse chromatin. Here we have performed a morphometric study on the different chromatin areas of freeze-fractured apoptotic cell nuclei in order to investigate its morphometric and functional organization. We have found large portions of inactive chromatin aggregations corresponding to the dense cap-shaped patches, while domains of nucleosomic fibres have been identified in the diffuse chromatin areas. The correlation of the nucleosomic fibre/diffuse chromatin domain with the nuclear pore clusters is demonstrated, and its implications with a possible residual nuclear activity are discussed.

Journal Article↗

[Prevention and treatment of early and late postoperative complications of prosthetic surgery of the arterial aorto-iliac area].

During a 5-year period, from 1990 to 1994, 61 patients underwent prosthetic reconstruction of aorto-iliac district for aneurysmal (53 cases) or obstructive (8 cases) disease. There was no postoperative mortality; 3 cases of early perianastomotic thrombosis, 2 cases of left colon necrosis, 4 cases of femoral pseudoaneurysm and 5 cases of sexual disfunction were recorded. If accurately performed, the surgery of this arterial district offers very good early and late results.

Adult↗

Different approaches to the study of apoptosis.

The morphological features of cell undergoing programmed cell death is well known and has been widely described in a number of experimental models with a variety of apoptotic triggering agents. Despite the similar cell behaviour, underlying molecular events seem variable and only partially understood. A multiple approach appears crucial to better clarify the phenomenon. The first technique, DNA gel electrophoresis, allows the identification of fragmented DNA and has been long considered the hallmark of apoptosis. Different patterns of DNA cleavage, which can be identified by conventional or "pulsed-field gel" electrophoresis, are presented and discussed. "In situ" labelling methods are also described both with terminal deoxynucleotidyl transferase and DNA polymerase I, aimed at the study of the distribution of DNA cleavage areas. Flow cytometry is also proposed and different technical approaches, based on different laser utilizations, are discussed. Ultrastructural analysis, allowing the study of apoptotic cell details, is finally considered.

Animals↗

Existence of both inhibitory (p58) and activatory (p50) receptors for HLA-C molecules in human natural killer cells.

The natural killer (NK) cell-specific p58 molecules EB6 and GL183 have been shown to represent the putative surface receptors for two distinct groups of human histocompatibility leukocyte antigen (HLA) C alleles. Interaction between p58 receptors and class I molecules expressed on target cells results in inhibition of the NK-mediated cytolytic activity and thus in target cell protection. In the present study, we show that EB6 molecules may also act as receptors mediating NK cell triggering. Activatory EB6 molecules were found to be confined only to certain donors. Moreover, in these donors, only a fraction of EB6+ NK clones expressed the activatory form of EB6 molecules, while the remaining clones expressed the conventional inhibitory form. Biochemical analysis of the activatory EB6 molecules revealed a molecular mass of approximately 50 kD (p50), thus differing from the 58-kD inhibitory form. This difference was not due to differential glycosylation of the same protein, as revealed by deglycosylation experiments of isolated EB6 molecules. Treatment of purified p58 or p50/EB6 molecules with proteolytic enzymes, including V8-protease, chymotrypsin, and papain, showed only minor differences in the resulting peptides. Treatment with pepsin followed by two-dimensional peptide mapping demonstrated that, although the majority of peptides migrated in identical positions, differences between the two forms could be detected for at least one major peptide. Anti-EB6 monoclonal antibody (mAb)-mediated cross-linking of p50 molecules was required to trigger the cytolytic activity and the intracellular calcium ([Ca+2]i) increases in appropriate NK clones. Likewise, mAb-mediated cross linking of the p58 EB6 molecules was needed to inhibit the cytolytic activity; however, in this case, no [Ca+2]i increases could be detected. In NK clones expressing the inhibitory p58 EB6 receptors, soluble anti-EB6 mAb prevented recognition of protective Cw4 molecules and reconstituted target cell lysis. In contrast, in clones expressing the activatory p50/EB6 receptor, EB6 masking frequently resulted in partial inhibition of the cytolytic activity against Cw4+ target cells. Therefore, it appears that NK clones expressing the p50/EB6 receptors are induced to lyse Cw4+ target cells upon specific interaction with Cw4 molecules. This concept was further substantiated by experiments in which target cells were represented by the HLA-negative LCL721.221 cell line transfected with the Cw4 allele. Phenotypic and functional analysis of a large number of NK clones showed that clones expressing the activatory p50/EB6 molecules consistently coexpressed inhibitory receptors for other HLA class I alleles.(ABSTRACT TRUNCATED AT 400 WORDS)

Alleles↗

Coexpression of two functionally independent p58 inhibitory receptors in human natural killer cell clones results in the inability to kill all normal allogeneic target cells.

In the present study, we define a group of natural killer (NK) clones (group 0) that fails to lyse all of the normal allogeneic target cells analyzed. Their specificity for HLA class I molecules was suggested by their ability to lyse class I-negative target cells and by the fact that they could lyse resistant target cells in the presence of selected anti-class I monoclonal antibodies. The use of appropriate target cells represented by either HLA-homozygous cell lines or cell transfectants revealed that these clones recognized all the HLA-C alleles. By the use of monoclonal antibodies directed to either GL183 or EB6 molecules, we showed that the EB6 molecules were responsible for the recognition of Cw4 and related alleles, while the GL183 molecules recognized Cw3 (and related C alleles). These data suggest that the GL183 and the EB6 molecules can function, in individual NK clones, as independent receptors for two different groups of HLA-C alleles, (which include all known alleles for locus C), thus resulting in their inability to lyse all normal HLA-C+ target cells. Indirect immunofluorescence and fluorescence-activated cell sorting analysis revealed that the presently defined GL183+EB6+ group 0 NK clones brightly express EB6 molecules (EB6bright) while the GL183+EB6+ group 2 clones (unable to recognize Cw4) express an EB6dull phenotype. These data also imply that the density of EB6 receptors may be critical for the generation of an optimal negative signal upon interaction with appropriate HLA-C alleles.

Cell Death↗

Tiazofurin induces a down-modulation of ICAM-1 expression on K562 target cells impairing NK adhesion and killing.

Tiazofurin treatment of K562 leukemia cells in vitro depletes the metabolites of the guanylate biosynthetic pathway, inducing erythroid differentiation, that, in turn, alters the phenotypic profile. As a consequence, K562 cells possibly modify their interaction with immune cells. Here we describe the binding and killing activity of peripheral blood NK cells against differentiating K562 cells and the correlation between their altered binding capacity and ICAM-1 expression levels in differentiating K562 cells. We found that decreased percentages of NK (and T) cells were bound to differentiating K562 cells generating a decreased cytotoxic activity. This corresponded to decreased expression of ICAM-1, as detected by FACS analysis and Western blot. Erythroid differentiation, binding and killing reduction, and ICAM-1 down-modulation were completely abrogated by guanosine treatment. Tiazofurin causes a decrease in lymphocyte recognition and binding to K562 target cells. This can be ascribed to the down-modulation of ICAM-1 expression on target cells, which, therefore, can escape killing, acquiring a selective survival advantage.

Antigens, CD↗

Cell-to-cell contact modulates the expression of the beta 1 family of integrins in primary cultures of thyroid cells.

The expression of the beta 1 family of integrins was studied in normal thyroid tissue cultures and monolayer cell cultures. The expression of the various subunits was measured by flow cytofluorometry with specific monoclonal antibodies and by Northern analysis. In monolayer cell cultures but not in tissue cultures, the expression of the alpha 3 subunit on the cell membrane progressively increased soon after plating, reaching a 30-fold higher intensity. The alpha 2 subunit, not detectable in native follicular cells, was expressed de novo and reached a remarkable high level. Up-regulation of alpha 2 and alpha 3 in monolayer cell cultures was serum-independent and preceded the expression of proliferating cell nuclear antigen, [3H]thymidine incorporation, and cell replication. Northern analysis demonstrated an increased level of beta 1 integrin mRNA. The increase of alpha 2 and alpha 3 was readily reversible since the expression of these molecules returned to a lower level when cultures reached a high cell density. Down-regulation did not occur until cell cultures were confluent. When cells from high cell density and low integrin expression were harvested and sparsely seeded in culture, up-regulation of integrins was observed again, while rapid reaggregation of isolated cells inhibited this phenomenon. Altogether these data suggest that cell-to-cell contact may regulate the expression of beta 1 integrins in thyroid primary cultures.

Antigens, CD↗

Receptors for HLA class I molecules in human NK cells.

Recent studies have shown that NK cells recognize HLA-class I molecules. Moreover, the analysis of NK cell clones has provided evidence that they are capable of discriminating between different groups of HLA alleles. HLA class I recognition generates a negative signal which inhibits the NK cell cytotoxicity, thus resulting in target cell protection. HLA-class I recognition is mediated by clonally distributed receptors, some of which have been identified, characterized and cloned. The first two identified receptors were shown to be specific for HLA-C alleles, each recognizing a group of alleles sharing two amino acidic positions (77 and 80) in the peptide binding groove. The HLA-C specific receptors are represented by two 58 Kd (p58) molecules that are highly homologous, as shown by both biochemical analysis and by the comparison of the corresponding genes. Two additional receptors have been recently identified, which recognize two distinct groups of HLA-B alleles. These receptors are represented by the CD94 and by the NKB1 molecules, recognizing the Bw6 and Bw4 supertypic specificities. Recent analysis of the surface receptors involved in NK cell triggering has provided evidence that class I specific NK receptors can, in some instances, induce NK cell triggering, thus contributing to the activatory pathway of NK cells.

HLA Antigens↗

Molecular clones of the p58 NK cell receptor reveal immunoglobulin-related molecules with diversity in both the extra- and intracellular domains.

Recognition of major histocompatibility class I molecules on target cells by natural killer (NK) cells confers selective protection from NK-mediated lysis. Cross-linking of the p58 NK receptor, involved in the recognition of HLA-C alleles, delivers a negative signal that prevents target cell lysis. Molecular cloning of the p58 NK receptor reported here revealed a new member of the immunoglobulin superfamily. Five distinct p58 receptors, with sequence diversity in the immunoglobulin-related domains, were identified in a single individual. All NK clones tested expressed at least one p58 member. Three different types of transmembrane and cytoplasmic domains exist, even among receptors with closely related extracellular domains. These data revealed a repertoire of NK cells with clonally distributed p58 receptors exhibiting diversity in both extracellular and intracellular domains.

Antibodies, Monoclonal↗

General role of HLA class I molecules in the protection of target cells from lysis by natural killer cells: evidence that the free heavy chains of class I molecules are not sufficient to mediate the protective effect.

Some HLA-C alleles have been shown to exert a specific protective effect preventing target cells from lysis by groups of natural killer (NK) clones displaying a defined specificity. In this study, we analyzed whether class I-mediated protection is a more general phenomenon involving all NK cells. First, we utilized two anti-class I mAbs (6A4 of IgG1 isotype and A6-136 of IgM isotype), which had been shown to induce lysis of protected target cells by group 1 and group 2 NK clones. Addition of A6-136 or 6A4 used as F(ab')2 mAb resulted in lysis of protected target cells by all NK clones analyzed. Target cells were represented by a panel of HLA homozygous Epstein-Barr virus-transformed B cell lines (B-EBV) while NK clones were representative of clones displaying different GL183/EB6 surface phenotypes and/or different abilities to lyse allogeneic cells. Unselected NK clones derived from seven different individuals were tested against autologous target cells represented by phytohemagglutinin-induced blasts or B-EBV transformed cell lines. In both instances, addition of a mixture of 6A4 F(ab')2 and A6-136 mAbs resulted in lysis of autologous target cells, thus suggesting that class I molecules prevent lysis of normal cells by self NK cells. We further investigated whether the class I-mediated protection requires the complexed form of class I molecules (composed of alpha chain, beta 2-microglobulin and the antigen peptide) or rather the free alpha chain. Acidic treatment of the C1R (Cw4+) target cells or 81.22 (Cw3+, Cw4+) at pH 2.2 resulted in loss of reactivity with 6A4, A6-136 and W6-32 mAb (known to react with the assembled form of class I molecules) and in the de novo reactivity with L31 mAb (specific for the HLA-C free chain). While the untreated Cw+ C1R cells were resistant to lysis by the Cw4-specific group 1 NK clones, the pH 2.2-treated cells became highly susceptible to lysis by the same clones. These data indicate that, at least for the NK clones analyzed, the protection of target cells requires class I molecules in the complexed form.

Alleles↗

All-trans retinoic acid shows multiple effects on the survival, proliferation and differentiation of human fetal CD34+ haemopoietic progenitor cells.

To evaluate the effect of all-trans retinoic acid (RA) on fetal haemopoiesis, we performed serum-free liquid and semisolid cultures using CD34+ cells purified from midtrimester human fetal blood samples. RA, at both physiological (10(-11) and 10(-12)M) and pharmacological (10(-6) and 10(-7)M) concentrations, significantly (P < 0.01) promoted the survival of fetal CD34+ cells in liquid cultures from day 3 onwards, by suppressing apoptosis induced by serum and growth factor deprivation. On the other hand, RA alone had no significant effect on the proliferation and differentiation of fetal haemopoietic progenitors. In the presence of optimal concentrations of recombinant interleukin-3 (IL-3), stem cell factor (SCF), granulocyte/macrophage-colony stimulating factor (GM-CSF), and erythropoietin (Epo), low and high doses of RA induced striking differential effects on CD34+ cell proliferation in liquid cultures and colony formation in semisolid assays. In fact, 10(-11)M and 10(-12)M RA were able to: (i) significantly (P < 0.05) increase 3H-thymidine uptake by fetal CD34+ cells in liquid cultures, and (ii) variably promote the growth of pluripotent (CFU-GEMM, P < 0.05), early (BFU-meg) and late (CFU-meg, P < 0.01) megakaryocyte, granulocyte/macrophage (CFU-GM, P < 0.01) and erythroid (BFU-E) progenitors in semisolid cultures. On the contrary, 10(-6) and 10(-7)M RA induced: (i) an overall inhibition (P < 0.01) of CD34+ cell growth in liquid cultures; (ii) a marked suppression of BFU-E colony formation (P < 0.01) at all Epo concentrations examined (0.002-4 IU/ml); and (iii) a significant (P < 0.01) stimulation of CFU-GM with a shift from mixed granulocyte/macrophage to pure granulocyte colonies, whereas it had little effect on the growth of CFU-GEMM, BFU-meg and CFU-meg. Our data, as a whole, demonstrate that RA has direct complex effects on the survival, growth and clonal expansion of fetal haemopoietic progenitor cells, mainly depending on the presence of recombinant cytokines, the type of progenitor and the concentrations of RA.

Cell Differentiation↗

Retinoic acid induces intercellular adhesion molecule-1 hyperexpression in human thyroid carcinoma cell lines.

The expression of intercellular adhesion molecule-1 (ICAM-1) in tumoral tissues may promote their interaction with the immune system and cytotoxic effect on tumoral cells. This observation led to the investigation of ICAM-1 expression and modulation in different tumoral cell systems in vitro. Recently, retinoic acid-responsive elements have been found in the 5'-regulatory region of the human ICAM-1 gene. In the present study, we investigated, by flow cytometry, the effect of retinoic acid on the surface expression of ICAM-1 in human thyroid carcinoma cell lines. Two papillary (NPA and TPC-1), one follicular (WRO), one anaplastic (ARO) and one immortalized fetal (TAD-2) cell line have been studied. All of them produced constitutively ICAM-1; its surface expression and specific messenger ribonucleic acid (mRNA) levels were increased significantly by retinoic acid in all except the WRO cell line. ICAM-1 hyperexpression by retinoic acid was time dependent, reversible, and dependent on mRNA and protein synthesis. Furthermore, cytokines, such as interferon-gamma and tumor necrosis factor-alpha, both individually and, to a greater extent, in combination with retinoic acid, increased ICAM-1 surface expression and its mRNA levels. In conclusion, retinoic acid is able to induce ICAM-1 up-regulation via mRNA accumulation in human thyroid carcinoma cell lines.

Blotting, Northern↗