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S Capitani

Publications and source records attributed to S Capitani.

At least 127 records · Page 7Linked to original sources

In vitro heat exposure induces a redistribution of nuclear matrix proteins in human K562 erythroleukemia cells.

By using both conventional and confocal laser scanning microscopy with three monoclonal antibodies recognizing nuclear matrix proteins we have investigated by means of indirect fluorescence whether an incubation of isolated nuclei at the physiological temperature of 37 degrees C induces a redistribution of nuclear components in human K562 erythroleukemia cells. Upon incubation of isolated nuclei for 45 min at 37 degrees C, we have found that two of the antibodies, directed against proteins of the inner matrix network (M(r) 125 and 160 kDa), gave a fluorescent pattern different from that observed in permeabilized cells. By contrast, the fluorescent pattern did not change if nuclei were kept at 0 degrees C. The difference was more marked in case of the 160-kDa polypeptide. The fluorescent pattern detected by the third antibody, which recognizes the 180-kDa nucleolar isoform of DNA topoisomerase II, was unaffected by heat exposure of isolated nuclei. When isolated nuclear matrices prepared from heat-stabilized nuclei were stained by means of the same three antibodies, it was possible to see that the distribution of the 160-kDa matrix protein no longer corresponded to that observable in permeabilized cells, whereas the fluorescent pattern given by the antibody to the 125-kDa polypeptide resembled that detectable in permeabilized cells. The 180-kDa isoform of topoisomerase II was still present in the matrix nucleolar remnants. We conclude that a 37 degrees C incubation of isolated nuclei induces a redistribution of some nuclear matrix antigens and cannot prevent the rearrangement in the spatial organization of one of these antigens that takes place during matrix isolation in human erythroleukemia cells. The practical relevance of these findings is discussed.

Antibodies↗

Lipid-dependent nuclear signalling: morphological and functional features.

Enzymes involved in lipid metabolism exist within the nucleus and are responsive to external stimuli. In particular, the kinases which phosphorylate phosphatidylinositol and phosphatidylinositol-4-monophosphate have been demonstrated in nuclei of both undifferentiated and differentiated Friend cells and of quiescent Swiss 3T3 cells as well as of those exposed to insulin-like growth factor I. Besides the lipid kinases, also the phosphoinositidases C (PIC) are active inside the nucleus. In Swiss 3T3 cells the nuclear PIC beta 1 is activated and its activation by IGF-I temporally precedes the translocation to the nucleus of protein kinase C. In Friend cell nuclei, on the other hand, when erythroid differentiation is induced, the PIC beta 1 activity is reduced. Another aspect of the nuclear signalling transduction system which appears quite interesting is its actual localization at subcellular level. By using electron microscope immunogold labelling, the nuclear PIC isoforms (the beta 1 isoform in Swiss 3T3 cells, the beta 1 and gamma 1 in Friend cells) are localized mainly in the interchromatin domains. This localization has been further confirmed on in situ matrix preparations of 3T3 cells in which PIC beta 1 is associated with the inner nuclear matrix but not with the nuclear pore-lamina complex. Colocalization experiments indicate that nuclear PIC beta 1 is present in sites in which both nuclear phospholipids and PKC can be detected, while the cytoplasmic PIC gamma 1 can be identified in close association with cytoskeletal filaments identified by anti-actin antibodies. The precise localization of the different PIC isoforms strongly indicates that the signal transduction system operating at the nuclear level may be part of a cross-talk between the cytoplasm and the nucleus controlling either cell proliferation or differentiation.

3T3 Cells↗

Diacylglycerol kinase activity in rat liver nuclei.

Membrane-depleted rat liver nuclei contain diacylglycerol (DAG) kinase showing a specific activity which doubles that of the whole homogenate. In contrast, cytoplasmic and plasma membrane marker enzymes attain a specific activity of 0.4% at the most, when nuclear DAG kinase approaches 4.5% of the total tissue activity. The enzyme shows a Km of 161 and 200 microM for ATP in both nuclei and microsomes whereas the Km for DAG is 75 microM in nuclei and 658 microM in microsomes. Octylglucoside, CHAPS and Triton X-100 behave mainly as inhibitors, while deoxycholate stimulates the enzyme activity in both cellular fractions, increasing specific activity (3.2-fold in nuclei and 29.1-fold in microsomes) and decreasing Km for DAG (39 microM in nuclei and 237 microM in microsomes). Phospholipids and ceramide stimulate the enzyme activity in isolated nuclei, while no effect occurs in the microsomal fraction. At variance, sphingosine behaves as an inhibitor in both cellular fractions. DAG kinase also utilizes endogenous substrates mobilized by Bacillus cereus phospholipase C, which hydrolyses nuclear phosphatidylcholine and phosphatidylethanolamine and by phosphatidylinositol-specific phospholipase C, which hydrolyses nuclear PI and PIP. These data indicate that nuclear DAG can be controlled by converting it into phosphatidic acid by the action of a nuclear enzyme and support the contention that protein kinase C activity can be modulated at the nuclear level by a discrete system involving phospholipase C and DAG kinase that could operate independently from the cytoplasm.

Animals↗

In vitro growth of human fetal CD34+ cells in the presence of various combinations of recombinant cytokines under serum-free culture conditions.

CD34+ cells were purified from midtrimester human fetal blood and adult bone marrow samples and seeded in serum-free fibrin-clot cultures in order to evaluate the number and the responsiveness to recombinant cytokines of pluripotent (CFU-GEMM), erythroid (BFU-E), megakaryocyte (BFU-meg and CFU-meg) and granulocyte/macrophage (CFU-GM) haemopoietic progenitor cells. The number of the different haemopoietic progenitors/1 x 10(3) CD34+ cells, except CFU-meg, was significantly higher in fetal blood than in adult bone marrow in cultures stimulated by any combination of cytokines including interleukin-3 (IL-3), granulocyte/macrophage colony stimulating factor (GM-CSF) or stem cell factor (SCF) plus erythropoietin (Epo). Nevertheless, whereas adult BFU-E showed a maximal growth in the presence of Epo plus IL-3 or Epo plus SCF, fetal BFU-E showed an optimal growth in the presence of Epo alone, the sensitivity of fetal BFU-E to suboptimal concentrations of Epo being approximately 10-15-fold higher than that of adult BFU-E. Addition of optimal concentrations of IL-3, GM-CSF or SCF, alone or in various combinations, to Epo-containing cultures induced a significant increase in both the number and size of fetal CFU-GEMM, and CFU-GM, and a parallel decrease of fetal BFU-E. Finally, SCF potently synergized with IL-3 in increasing the growth of both classes of fetal megakaryocyte progenitors, BFU-meg and CFU-meg.

Adult↗

Recombinant human immunodeficiency virus type-1 (HIV-1) Tat protein sequentially up-regulates IL-6 and TGF-beta 1 mRNA expression and protein synthesis in peripheral blood monocytes.

In this study we evaluated the effect of human immunodeficiency virus type 1 (HIV-1) recombinant Tat protein on mRNA expression and protein synthesis of two inflammatory cytokines-interleukin-6 (IL-6) and transforming growth factor-beta 1 (TGF-beta 1)-by peripheral blood (PB) monocytes. Whereas maximal levels of IL-6 protein were recovered in PB monocyte culture supernatants after 24-48 h from the addition of 1 micrograms/ml of recombinant Tat, TGF-beta 1 showed a slower and progressive increase, reaching maximal levels only after 72-96 h of culture. Consistently, the analysis of the steady-state levels of mRNA showed a sharp increase of IL-6 mRNA expression after 24h of culture, with a slow decline thereafter. On the other hand, TGF-beta 1 mRNA expression showed a slow increase only after 72-96 h of culture. Moreover, IL-6 appeared involved in the up-regulation of TGF-beta 1, because the addition of a neutralizing anti-IL-6 antibody to Tat-treated PB monocyte cultures significantly reduced the amounts of TGF-beta 1 recovered in the culture supernatants after 96 h. The present demonstration that HIV-1 Tat protein directly up-regulates IL-6 expression and stimulates TGF-beta 1 production both directly and indirectly, through early IL-6 production, could have important implications in the pathogenesis of HIV-1 disease.

Blotting, Northern↗

Immunocytochemical detection of the specific association of different PIC isoforms with cytoskeletal and nuclear matrix compartments in PC12 cells.

The increasing evidence of discrete roles of phosphoinositidase C (PIC) isoforms and the assessment of their localization in the cytoskeleton and in the nucleus support the involvement of particular isotypes of this enzyme in signal transduction at multiple levels. PC12 rat pheochromocytoma is one of the few cell lines expressing three immunologically distinct isoforms of PIC. We have analyzed the subcellular distribution of the PIC beta 1, gamma 1 and delta 1 isoforms using confocal and electron microscope immunocytochemistry. PIC beta 1 is mainly found in the nucleus and is associated with interchromatin domains. On the other hand, the PIC gamma 1 isoform is found in the nucleus and in the cytosol, while PIC delta 1 is exclusively cytoplasmic. Immunoblot and immunocytochemical experiments indicate that the various PIC isoforms are differently bound to structural cell compartments, such as cytoskeletal and nuclear matrix elements. In fact, PIC beta 1 and PIC gamma 1 isoforms are tightly associated with the nuclear matrix, while only about 50% of PIC gamma 1 is associated with the cytoskeleton after DNase I and high salt extractions. PIC gamma 1 is almost completely soluble under these conditions. These results further confirm the complexity of the inositide signal transduction mechanism, which involves several PIC isoforms, specifically localized in different cell compartments and support the existence of a membrane-unrelated inositol lipid-dependent signalling in the nuclear interior.

Animals↗

Nuclear translocation of phosphatidylinositol 3-kinase in rat pheochromocytoma PC 12 cells after treatment with nerve growth factor.

Immunocytochemical analysis of PI 3-kinase localization in PC 12 cells demonstrates that the enzyme translocates to the nucleus after cell treatment with differentiating doses of NGF. The association of PI 3-kinase to the nucleus occurs rapidly (within minutes) and increases with the time of exposure of NGF. We suggest that PI-3 kinase specific localization may determine the production of novel phosphoinositides in cell compartments targeted to effect diverse cell responses. The nuclear translocation is consistent with accumulating data on the existence of a nuclear inositol lipid cycle which could also include 3-phosphorylated inositides, participating to the modulation of the cell response to extracellular stimuli.

Animals↗

CD4 engagement by HIV-1 in TF-1 hematopoietic progenitor cells increases protein kinase C activity and reduces intracellular Ca2+ levels.

Starting from our previous observations that the HIV-1-mediated engagement of CD4 induced apoptotic death of TF-1 hematopoietic progenitor cells, in this study we evaluated PKC activity and intracellular Ca2+ levels in TF-1 cells treated with viable and heat-inactivated HIV-1 (strain IIIB) or anti-CD4 Leu3a monoclonal antibody (mAb). Both viable and heat-inactivated HIV-1 or anti-CD4 mAb, but not anti-human cytomegalovirus (HCMV) 66kD protein or anti-CD8 mAb induced a rapid (5-10 min) increase in PKC activity under both serum-containing and serum-free conditions. The same treatment also induced both a transient and a long-lasting (48 hours) decrease (p < 0.05) in intracellular Ca2+ levels in serum-containing cultures. We propose that the observed changes in PKC activity and intracellular Ca2+ levels might be involved in the HIV-1 mediated apoptosis of hematopoietic progenitor cells.

Antibodies, Monoclonal↗

Human immunodeficiency virus type 1 Tat protein protects lymphoid, epithelial, and neuronal cell lines from death by apoptosis.

We report here that the tat gene product of human immunodeficiency virus type 1 was able to protect lymphoblastoid (Jurkat), epithelial (293) and neuronal (PC12) cell lines from apoptotic death induced by serum withdrawal. The rescue from apoptosis by Tat was reflected by an increased expression of Bcl-2 protein in tat-positive Jurkat cells with respect to mock-transfected Jurkat cells after 3-6 days of serum-free cultures. We propose that the ability of the regulatory human immunodeficiency virus type 1 Tat protein to suppress apoptosis might have important implications in understanding the pathogenesis of frequent neoplastic disorders observed in human immunodeficiency virus type 1-seropositive individuals.

Animals↗

Presence and characteristics of circulating megakaryocyte progenitor cells in human fetal blood.

The in vitro growth of early (burst-forming unit-megakaryocyte [BFU-meg]) and late (colony-forming unit-megakaryocyte [CFU-meg]) megakaryocyte progenitors was investigated in midtrimester human fetal blood and compared with adult bone marrow. Most of the experiments were performed in a serum-free fibrin-clot assay, using purified hematopoietic progenitor (CD34+) cells. High BFU-meg and CFU-meg levels were found in human fetal blood, with a clear prevalence of BFU-meg (BFU-meg:CFU-meg ratio, 2.5:1), at variance with adult bone marrow, in which mature CFU-meg predominate (BFU-meg:CFU-meg ratio, 0.6:1). Fetal and adult megakaryocyte progenitors had a similar phenotypic profile for the expression of CD34, HLA-DR, and glycoprotein-complex IIB-IIIA. However, fetal BFU-meg were larger in size (number of megakaryocytic elements per colony) than adult BFU-meg, but were usually composed by only one or two foci of development. On the other hand, fetal and adult CFU-meg were similar in both morphology and size. Fetal megakaryocyte progenitors appeared earlier in culture and had an increased proliferative activity as demonstrated by the higher number of megakaryocyte progenitors in S phase with respect to adult CFU-meg and BFU-meg. Finally, fetal megakaryocyte progenitors displayed a higher sensitivity to stimulatory cytokines, in particular recombinant interleukin-3, than adult megakaryocyte progenitors, whereas they were inhibited by purified transforming growth factor-beta 1 in a similar fashion to adult megakaryocyte progenitors.

Adult↗

Immunocytochemical analysis of phosphatidylinositol-specific phospholipase C in PC12 cells: predominance of the delta isoform during neural differentiation.

The rat pheochromocytoma PC12 cell line, which differentiates into sympathetic neurons under nerve growth factor (NGF) treatment, contains at least three phosphoinositidase C (PIC) isozymes, PIC beta, PIC gamma, PIC delta. These isozymes have been previously shown to display a different subcellular localization. To determine whether or not NGF induces changes in the presence and/or distribution of PIC isozymes during PC12 neural differentiation, studies were carried out by means of in situ immunocytochemistry. After NGF administration the proliferative activity was progressively reduced to very low levels, as measured by bromodeoxy Uridine incorporation, and a neuron-like morphology was displayed by almost all cells. In unstimulated PC12 cells, PIC beta was detected in the nucleus whereas PIC delta was only cytoplasmic; PIC gamma was found in both cell compartments. In cells treated with NGF for 3 days, neural processes extended to twice the diameter of the cell body; the gamma isoform was concentrated near the nucleus, while the immunoreactivity of the beta form remained constant and the delta form was increased. After 10 days of treatment with NGF, PIC beta was hardly detectable and PIC gamma immunostaining was considerably decreased. On the contrary, PIC delta progressively increased and, after 14 days of NGF exposure, fully differentiated cells displayed an intense labelling of cell body and neurites. In the same cells, PIC beta and PIC gamma were almost negative. These results suggest that NGF dependent neural differentiation is related to the selective down regulation of PIC beta and gamma and the increase of PIC delta isozyme associated with the decrease of cell proliferation.

Animals↗

Nuclear phosphoinositidase C during growth factor stimulation.

The existence of phosphoinositidase C beta is demonstrated in the nucleus of Swiss 3T3 cells. Moreover, we show that this isoform is specific for the nucleus while the gamma isoform is confined to the cytoplasm of these cells. When Swiss 3T3 fibroblasts are treated with Insulin-like Growth Factor I a rapid and transient activation of the beta isoform occurs at the nucleus whilst the cytoplasmic phosphoinositidase C is unaffected. These results seem to explain the mechanism by which the decrease in the mass of polyphosphoinositol lipids occurs in the nucleus after stimulation with Insulin-like Growth Factor I and actually point out the existence of a nuclear polyphosphoinositide signalling system distinct from the plasma membrane localized system and constituted not only by the previously demonstrated lipid kinases but also by a specific phosphoinositidase C.

3T3 Cells↗

Uninfected haematopoietic progenitor (CD34+) cells purified from the bone marrow of AIDS patients are committed to apoptotic cell death in culture.

OBJECTIVE: To determine the mechanism underlying the poor growth in vitro of haematopoietic progenitor cells isolated from HIV-1-infected patients. METHOD: Apoptotic death in liquid culture of bone-marrow CD34+ cells obtained from 11 HIV-1-seropositive patients and 18 HIV-1-seronegative donors was quantitatively monitored by a flow cytometry procedure. RESULTS: No significant differences in the percentage of apoptotic cells were noted between the two groups immediately after purification. When CD34+ cells were placed in liquid cultures supplemented with 2 ng/ml interleukin-3, the number of apoptotic cells progressively and significantly (P < 0.05) increased in all HIV-1-seropositive patients, while it remained constant in HIV-1-seronegative individuals. Although all HIV-1-seropositive patients showed signs of active viral replication in the bone-marrow micro-environment, progenitor CD34+ cells did not show the presence of active and/or latent HIV-1 infection. CONCLUSION: Our data demonstrate that CD34+ cells isolated from AIDS patients with active HIV-1 replication in bone-marrow accessory cells are committed to apoptotic death without being directly affected by productive infection.

Acquired Immunodeficiency Syndrome↗

Influence of the human immunodeficiency virus type 1 Tat protein on the proliferation and differentiation of PC12 rat pheochromocytoma cells.

Rat pheochromocytoma PC12 cells were permanently transfected with a plasmid vector, containing the tat gene of human immunodeficiency virus type 1 (HIV-1). Various clones were obtained showing the production of different levels of bioactive Tat protein (Tat) after transient cotransfection with an HIV-1 long terminal repeat-chloramphenicol acetyltransferase reporter plasmid. Under conditions of serum starvation, tat-positive PC12 clones expressing high levels of Tat showed a significantly (P < 0.05) higher proliferation rate with respect to both mock-transfected PC12 cells and tat-positive PC12 cells expressing lower levels of Tat. Moreover, all tat-positive PC12 cell clones showed a partial morphological differentiation into sympathetic-like neurons, when seeded in low density (5 x 10(3) cells/cm2) cultures. On the other hand, mock-transfected PC12 cells showed the round shaped morphology typical of untreated PC12 cells and displayed signs of neuronal differentiation only after treatment with 100 ng/ml of nerve growth factor. The addition of 5 micrograms/ml of anti-Tat monoclonal antibody to the culture medium of tat-positive PC12 cell clones almost completely blocked their increased proliferation rate (P < 0.05), but did not affect neuronal differentiation. A significant (P < 0.05) increase in cell proliferation was consistently observed in PC12 cells supplemented with low concentrations of Tat (5 to 25 ng/ml), whereas neuronal differentiation was hardly affected by exogenous Tat. Our data strongly suggest that Tat exerts a complex influence on the proliferation and differentiation of PC12 cells, and this might help in increasing understanding of the pathogenesis of the frequent neurological disorders observed in AIDS patients.

Animals↗

Reduced responsiveness of bone marrow megakaryocyte progenitors to platelet-derived transforming growth factor beta 1, produced in normal amount, in patients with essential thrombocythaemia.

In this study we evaluated the amount of transforming growth factor-beta 1 (TGF-beta 1) in platelet lysates obtained from 12 patients affected by essential thrombocythaemia (ET) in comparison with five patients affected by myelofibrosis with myeloid metaplasia (MMM) and 15 healthy donors. The levels of both bioactive and latent TGF-beta 1, evaluated in a bioassay on CCL64 cells, before and after transient acidification, were similar in platelet lysates from ET patients and normal donors and significantly (P < 0.01) elevated in platelet lysates from MMM patients. Moreover, platelet lysates from ET patients and normal controls, showed a similar degree of colony suppression when tested on haematopoietic progenitor (CD34+) cells, purified from normal bone marrows, whereas platelet lysates from MMM patients showed a higher (P < 0.01) inhibitory activity on normal CFU-meg and BFU-E growth. In parallel, platelet lysates form ET patients and normal controls were tested on CD34+ cells, purified from ET bone marrows. ET bone marrow BFU-E, similarly to normal bone marrow BFU-E, were markedly inhibited by platelet lysates, whereas ET bone marrow CFU-meg were significantly (P < 0.05) less responsive to the inhibitory activity of platelet lysates than normal bone marrow CFU-meg. The main factor responsible for the inhibitory activity contained in platelet lysates was transforming growth factor-beta 1 (TGF-beta 1), as demonstrated by the ability of a polyclonal neutralizing anti-TGF-beta 1 antibody to almost completely reverse the suppressive effect of platelet lysates on CFU-meg and BFU-E growth. Our data demonstrate that the amount of intraplatelet TGF-beta 1 is similar in ET patients and normal controls, whereas it is increased in platelets from MMM patients. Moreover, megakaryocyte progenitors in ET show a reduced sensitivity to platelet-derived inhibitors and, in particular, to TGF-beta 1.

Blood Platelets↗

Studies on varicocele. II. The inhibin secretion.

In this paper a previous interpretation given by the authors concerning one of the ways varicocele can affect fertility is confirmed. Moreover, it is definitely demonstrated that the high temperature stimulates inhibin secretion (and probably the testosterone-estradiol conversion) in the Sertoli cells, while the somatomedin secretion in vitro seems to be unaffected. It means that the action of the temperature on the germinal cells seems to be mediated by the pathway: inhibin (plus estradiol)-->pituitary-->FSH. Inhibin in the Golgi complex of Sertoli and germinal cells has been detected by electron microscopical immunocytochemical techniques.

Adult↗

Human immunodeficiency virus type 1 (HIV-1) tat-protein stimulates the production of interleukin-6 (IL-6) by peripheral blood monocytes.

In this study we evaluated the effect of human immunodeficiency virus type 1 (HIV-1) recombinant tat-protein on the production of interleukin-6 (IL-6), granulocyte/macrophage colony stimulating factor (GM-CSF) and tumor necrosis factor-alpha (TNF-alpha) by purified peripheral blood monocytes. Whereas no effects were observed on TNF-alpha and GM-CSF production, recombinant tat-protein was able to induce the production of IL-6 by peripheral blood monocytes in a dose-dependent fashion for concentrations ranging from 1 ng/ml to 1 micrograms/ml. Pre-exposure of tat-protein with a polyclonal neutralizing anti-tat antibody (dilution 1:100) completely abrogated the tat-dependent increase in IL-6 production. The ability of tat-protein to selectively stimulate the production of IL-6 by peripheral blood monocytes could help to explain the presence of elevated levels of IL-6 in the serum of HIV-1 seropositive individuals, especially in patients in advanced stages of the disease with an active viral replication.

Gene Products, tat↗

Discrete subcellular localization of phosphoinositidase C beta, gamma and delta in PC12 rat pheochromocytoma cells.

Phosphoinositidase C activity was revealed in nuclei isolated from PC12 rat pheochromocytoma cells incubated with tritiated phosphatidylinositol, phosphatidylinositol 4-phosphate and phosphatidylinositol 4,5-bisphosphate. Phosphoinositide breakdown was found to be optimal at neutral pH and Ca++ concentrations ranging from endogenous levels to millimolar values. To characterize the enzymes involved, three monoclonal antibodies directed against the beta, gamma and delta phosphoinositidase C isoforms were employed. A combination of Western blot immunochemical analysis on cytoplasmic and nuclear fractions and of in situ immunocytochemistry on intact cells and isolated nuclei indicated that phosphoinositidase C gamma, though predominantly cytoplasmic, was present in both cell compartments. On the contrary, phosphoinositidase C beta was exclusively localized in the nucleus, whereas phosphoinositidase C delta was restricted to the cytoplasm. These data suggest that inositol lipid breakdown is controlled by different phosphoinositidase C isozymes in the various cell compartments, and support the notion that a separate phosphoinositide signalling system is located in the nucleus.

Animals↗