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A Pavan

Publications and source records attributed to A Pavan.

At least 55 records · Page 3Linked to original sources

Size and stability of dipalmitoylphosphatidylcholine/cholesterol unilamellar vesicles are affected by interaction with proteins.

The effect of entrapping the enzyme ascorbate oxidase into dipalmitoylphosphatidylcholine/cholesterol vesicles, was studied by conventional transmission electron microscopy and freeze-fracture. The freeze-fracture technique has definitely demonstrated the unilamellar nature of empty and enzyme-loaded vesicles. Images of freeze-fractured and label-fractured liposomes also indicate that the observed reduction of vesicles volume could be related to the localization of ascorbate oxidase across the membrane. The membrane localization of ascorbate oxidase may explain the oxidation of externally added ascorbate by intact enzyme-loaded liposomes. Finally, the ageing of liposomes appears to be accelerated in the presence of proteins.

1,2-Dipalmitoylphosphatidylcholine↗

Partition of epidermal growth factor receptors on freeze-fractured plasma membranes of A431 cells is affected by the ligand.

The fracture immunolabel technique, which permits assessment of the partition of transmembrane proteins with the inner or outer leaflets of the freeze-fractured membrane, was used to analyze the behavior on fracture of epidermal growth factor (EGF) receptors over the plasma membranes of A431 cells. The receptors partition mainly with the outer leaflet of the freeze-fractured plasma membranes, whereas they become associated with the inner leaflet when they are occupied by the ligand. This modified partition is even more evident after receptor clustering induced by incubation with EGF at 37 degrees C. Treatment with 12-O-tetradecanoylphorbol-13-acetate (TPA) decreases the number of receptors over both inner and outer leaflets. An effect similar to that induced by the ligand is obtained when receptor aggregation is achieved using anti-receptor monoclonal antibodies (MAb). The modified partition therefore indicates receptor activation and appears to be a consequence of receptor cross-linking rather than to reflect a conformational change of the receptor molecule. Parallel immunolabeling with anti-phosphotyrosine antibodies of freeze-fractured EGF-treated A431 cells reveals that the receptors, when activated, are associated only with the inner leaflet of the plasma membrane.

Cell Line↗

Anchorage-dependent surface distribution and partition during freeze-fracture of viral transmembrane glycoproteins.

We have compared in the same cell type the surface distribution and partition in freeze-fractured plasma membranes of Sindbis virus glycoproteins in three different situations: (i) in permanently transformed cells that express the glycoproteins as the only viral product; (ii) in cells in which prebound viruses were forced to fuse with the plasma membrane by low pH treatment; (iii) in virus-infected cells. We report here that the viral proteins expressed on the surface of transfected cells show a uniform and unclustered distribution; conversely, in Sindbis virus-infected cells they appear clustered, regionally distributed, and always associated with budding viruses (i.e., interacting with the nucleocapsid on the cytosolic side of the membrane). Furthermore, the viral proteins expressed on transfected cells or implanted by low pH-mediated fusion partition during freeze-fracture with the exoplasmic faces of the cell plasma membranes, whereas an opposite partition is observed in infected cells. These results strongly suggest that in infected cells the clustering and the partition with the protoplasmic faces of the plasma membrane depend only on the strong "anchorage" of the glycoproteins to the nucleocapsid.

Animals↗

High-resolution surface views of human lymphocytes during capping of CD4 and HLA antigens as revealed by immunogold fracture-flip.

The surface ultrastructure of lymphocytes during capping of two transmembrane proteins is shown. As seen by fracture-flip the plasma membranes of human lymphocytes are covered by a high density of surface particles. Incubation in 30% glycerol leads to aggregation of these surface particles. Immunogold labelling shows that the transmembrane proteins bearing HLA class I and CD4 antigens are confined to the particle aggregates. These results indicate that surface particles revealed by fracture-flip represent surface protrusions of integral membrane proteins seen as intramembrane particles in freeze-fractured lymphocytes. During capping HLA or CD4 antigens aggregate into progressively larger patches and, finally, into single caps. As revealed by fracture-flip the patches/caps are seen as clearly differentiated raised platforms that are clearly and sharply demarcated relative to contiguous areas of the surface. In non-patched (non-capped) regions, the pattern of distribution and apparent density of surface particles remain unaltered. Immunogold labelling clearly demarcates patches and caps, and shows that virtually no antigen molecules remain dispersed over the non-patched (non-capped) regions. Estimates of the surface density of either HLA or CD4 antigens over the capped areas point to high planar concentrations of the transmembrane proteins that bear these antigens.

Antigens, Surface↗

Molecular cytochemistry of CD3 and CD4 antigens in human lymphocytes as studied by label-fracture and by fracture-label.

Label-fracture and fracture-label membrane immunocytochemistry are used to analyze the surface distribution, dynamics and partition on fracture of CD3 and CD4 antigens of human T lymphocytes. Redistribution of the antigens, induced by treatment at 37 degrees C with specific monoclonal antibodies, results in patching and capping of the labeling as observed in label-fractured specimens. Examination of platinum/carbon replicas of freeze-fractured plasma membranes of antibody-treated cells does not reveal recognizable domains of intramembrane particles. However, in cells where the aggregation of intramembrane particles is induced by incubation with glycerol, colloidal gold-labeled CD3 and CD4 molecules are seen confined to particulate domains of the membrane. Therefore, the lack of visible aggregation of intramembrane particles in patched or capped regions of the membrane implies that migration of CD3 and CD4 antigens with concentration in domains of the membrane is achieved contemporaneously with export of other non-capped integral membrane proteins from the same regions, in a process of diffusional equilibrium. Examination of fracture-labeled specimens shows that CD4 molecules partition on fracture with the inner protoplasmic face of the plasma membrane. This partition illustrates the transmembrane attitude of the antigen molecule and is a probable consequence of interaction of the protein with other components of the membrane or with the cytoskeleton.

Antibodies, Monoclonal↗

Localization of Epstein-Barr virus envelope glycoproteins on the inner nuclear membrane of virus-producing cells.

Epstein-Barr virus-producing cells were used as a model to analyze, with a fracture-immunolabel technique, the distribution, behavior on fracture, and extent of glycosylation of viral transmembrane glycoproteins at the inner nuclear membrane. Surface and fracture immunolabeling with two monoclonal antibodies directed against the carbohydrate or polypeptide portions of the major viral envelope glycoproteins gp350/220 showed the following. (i) The glycoproteins present on the inner and outer nuclear membranes were labeled only with the monoclonal antibody directed against the polypeptide chain, whereas over the surface of virus-producing cells and on mature virions the labeling was dense and uniformly distributed with both monoclonal antibodies. (ii) The glycoproteins were nonuniformly distributed only over the inner nuclear membranes; at the sites of viral budding, the glycoproteins showed a preferential partition with the protoplasmic face. Since fully glycosylated glycoproteins were not present on the nuclear membranes, our observations support the proposed model of herpesvirus maturation. The peculiar distribution and partition on fracture of the envelope glycoproteins on the inner nuclear membrane are similar to those of Sindbis virus envelope glycoproteins on the plasma membrane of infected cells. Therefore, our results suggest that inner nuclear membranes may behave like plasma membranes during viral assembly.

Antigens, Viral↗

Capping of HLA antigens in human lymphocytes as followed by immunogold label-fracture.

We used immunogold label-fracture to follow the migration of HLA I class and HLA II class antigens during capping as induced by specific monoclonal antibodies. Capping is achieved through a process of clustering and "consolidation" of clusters into larger patches and, finally, a single cap. All receptors appear to cluster from the very start, with no "stray" molecules joining already formed patches. Characterization of exoplasmic and protoplasmic fracture-faces of capping cells fails to reveal any corresponding accumulation of intramembrane particles and/or subtler rugosities. Our results are consistent with the concepts that view the migration of capping molecules as contemporaneous with the efflux of noncapping integral membrane proteins.

Antibodies, Monoclonal↗

Genetic regulation of macrophage production in response to surface components of Listeria monocytogenes.

Resistance to murine listeriosis requires humoral factors which alter production or delivery of monocytes to infective foci. Production of such factors is under genetic control and may be modulated by bacterial components. Two components from Listeria monocytogenes, monocytosis producing activity (MPA) and immunosuppressive activity (ISA) were used to study monocytopoiesis in mice with known abnormalities in microphage-related functions. Listeria-sensitive A/J mice fail to produce or respond to MPA or an endogenous mediator of monocytosis (EF). These studies provided evidence that a second humoral factor, decreases monocytopoiesis. Sera from A/J mice are more active in this respect and MPA treatment increases the amount of inhibitory factor in A/J mice. A polyclonal B cell activator, ISA, which induces suppressor splenic macrophages, suppresses the anti-SRBC response in resistant B10. A mice but not in A/J mice. ISA induced no change in prostaglandin E2 production by spleen cells of either strain. One interpretation of these findings is that A/J mice after stimulation by ISA or MPA, produce a substance which inhibits development of mononuclear phagocytes.

Animals↗

Nonrandom distribution of epidermal growth factor receptors on the plasma membrane of human A431 cells.

The localization of epidermal growth factor (EGF) receptors over the plasma membranes of human epidermoid carcinoma A431 cells was analyzed at the electron microscopic level using surface replica techniques and conventional thin sections, in combination with immunocytochemistry. Immunolabeling was performed using two distinct monoclonal antibodies directed against the extracellular portion of the receptor, followed by protein A-colloidal gold conjugates. Unexpectedly, with the first monoclonal antibody used, the distribution of the receptors in both unfixed and glutaraldehyde-fixed cells was clearly regionalized, showing a preferential localization of the immunolabeling at the cell periphery as well as over the areas rich in microvilli and in coated and uncoated pits. A similar pattern of distribution was observed also with the other monoclonal antibody, but only when the cells were fixed with glutaraldehyde before immunolabeling. Treatment with the phorbol ester 12-O-tetradecanoylphorbol-13-acetate modifies this distribution, inducing a more disperse pattern. Our observations suggest that a minor group of EGF receptors, which may represent the high-affinity receptors, presents a regional distribution, similar to that described for typical recycling receptors.

Carcinoma, Squamous Cell↗

Wheat germ agglutinin fracture-label of Golgi apparatus membranes in proliferating cells.

The thin section fracture-label technique has been recently used to analyze the distribution and compartmentalization of fully glycosylated components on intracellular membranes. Labelling with the lectin wheat germ agglutinin over the freeze-fractured membranes of Golgi apparatus in various secretory and non-secretory cells as well as in human peripheral lymphocytes was always very weak or absent even over the trans-most cisternae. In order to investigate if the labelling density may reflect the cellular activity in membrane biogenesis, we used in this study wheat germ agglutinin fracture-label of rapidly proliferating cells and mitogen-activated lymphocytes. Labelling over the fractured cisternae of the medial and trans portions of the Golgi apparatus was intense. Treatment with cycloheximide of proliferating cells induced a drastic reduction of the labelling over the Golgi cisternae.

Cell Division↗

Regional distribution of Sindbis virus glycoproteins on the plasma membrane of infected baby hamster kidney cells.

Sindbis virus-infected baby hamster kidney (BHK) cells were analysed in surface replicas or conventional thin sections after specific immunolabelling with antiviral glycoprotein antibodies in conjunction with colloidal gold-conjugated protein A. Newly synthesized viral glycoproteins were detected, beginning 1 1/2 h after infection, while the virus maturation started 3 h after infection. The glycoproteins appeared to be inserted on the plasma membrane in large spots located mainly in the central area of the cells: no clustering of the labelling was detected. Later, the glycoproteins appeared to arrange linearly in regions in the medial portion of the cells. No labelling was found in the peripheral area or on the cell edges. A drastic change in the surface labelling was detected following the commencement of virus maturation: gold particles were organized mostly in small clusters, each labelling a budding virus. Very few glycoproteins appeared not to be involved in budding figures. The maturation of the virus was clearly regionalized, but during this time it also involved the peripheral area and the cell edges; preferential budding in narrow cellular processes was often observed. It appeared thus that either isolated glycoproteins soon after infection, or clustered glycoproteins at later times, are strictly regionalized on the plasma membrane: however, the early post-infection distribution is clearly different from that seen later during virus maturation. Our experiments support the concept of discrete plasma membrane domains even in cells that do not display distinct specialization of their surface.

Animals↗

Free diffusion to and from the inner nuclear membrane of newly synthesized plasma membrane glycoproteins.

Sindbis virus-infected baby hamster kidney (BHK) cells were analyzed by thin section fracture-label. Specific immunolabel with antiviral glycoprotein antibodies was used in conjunction with colloidal gold-conjugated protein A. As we previously reported (Torrisi, M. R., and S. Bonatti, 1985, J. Cell Biol., 101:1300-1306), Sindbis transmembrane glycoproteins are present in the inner nuclear membrane as well as in the outer nuclear membrane, endoplasmic reticulum, Golgi stacks and vesicles, and plasma membranes. Viral glycoproteins located on the inner nuclear membrane resemble those present on the outer membrane in terms of amount, distribution, and preferential partition after fracture. We show in this paper that Sindbis glycoproteins after treatment with cycloheximide are removed from the inner nuclear membrane with the same kinetics as their counterparts present on the outer membrane. This finding strongly suggests that newly synthesized transmembrane glycoproteins may freely diffuse to and from the inner nuclear membrane before entering into the intracellular transport pathway to the plasma membrane.

Animals↗

[Incidence, type and significance of anti-myocardial autoantibodies in patients undergoing cardiac surgery].

The incidence of anti-myocardial autoantibodies was investigated in 62 patients suffering from congenital or acquired cardiopathy prior to and 1, 10 and 20 days after cardiac surgery. Anti-myocardial autoantibodies were present in about 23.7 per cent of patients even before surgery, practically doubled one day after intervention, reached their peak (60-70 per cent) at 10 days from surgery and began to diminish at 20 days. At all times and incidence was higher in patients with acquired cardiopathy than in those with congenital heart diseases. In the large majority of cases, the autoantibodies were of the IgG class, of the striational type and in low titers. The relevance of anti-myocardial autoantibodies in the pathogenesis of cardiac lesions and the possible causes of the reversibility of the autoimmune phenomenon are discussed.

Autoantibodies↗

Solution characterization of starch nicotinates with different degrees of esterification.

A series of starch-nicotinic acid copolymers with a degree of esterification ranging from about 15% to about 90% was prepared, and the stability in solution of two representative samples of the series was tested. The variation of some physico-chemical characteristics in the series was examined by solubility tests, viscometry and refractometry, and found to be not simply correlatable to the nicotinylation degree.

Esters↗

A comparative study of poly(glycolic acid) and catgut as suture materials. Histomorphology and mechanical properties.

The "quality" of poly(glycolic acid) as an absorbable suture material was investigated in comparison with catgut. Tissue reactions to poly(glycolic acid) and plain catgut were examined histomorphologically at different time intervals after implantation in rats, and compared. Four mechanical properties were also examined as relevant quality factors: elastic stiffness, tensile strength, toughness, and percent elongation at rupture of the suture material per se (unknotted). The variation of these properties in poly(glycolic acid) implants was followed since their insertion in the tissues. Histological behavior and mechanical properties appear to be more closely correlated in the case of poly(glycolic acid) than in the case of catgut, as a consequence of a greater regularity of tissue reaction towards the synthetic material. Both tissue reaction and tensile properties variation are independent of size in the case of the braided poly(glycolic acid) sutures examined. Elastic stiffness and tensile strength decrease steadily in time; toughness and ultimate elongation display an increase up to a maximum within one day since implantation, and then decrease.

Abdominal Muscles↗

[Glycolic acid/polymer as suture material].

Tissue reactions to polyglycol acid and plain catgut threads were compared. The second part of the paper deals with changes in the mechanical properties of the polymer. Their reduction after insertion in tissues was proportionally equal for threads of different sizes. This finding is explicable histologically, since it can be shown that cell and humoral attack of the single filaments is homogenous throughout the entire cross-section of the thread.

Abdominal Muscles↗

Association between GM3 and CD4-Ick complex in human peripheral blood lymphocytes.

The aim of this study was to further elucidate our previous observation on molecular interaction of GM3, CD4 and p56Ick in microdomains of human peripheral blood lymphocytes (PBL). We analyzed GM3 distribution by immunoelectron microscopy and the association between GM3 and CD4-p56Ick complex by scanning confocal microscopy and co-immunoprecipitation experiments. Scanning confocal microscopy analysis showed an uneven signal distribution of GM3 molecules over the surface of human lymphocytes. Nearly complete colocalization areas indicated that CD4 molecules were distributed in GM3-enriched plasma membrane domains. Co-immunoprecipitation experiments revealed that CD4 and p56Ick were immunoprecipitated by IgG anti-GM3, demonstrating that GM3 tightly binds to the CD4-p56Ick complex in human PBL. In order to verify whether GM3 association with CD4 molecules may depend on the presence of p56Ick, we analyzed this association in U937, a CD4 + and p56Ick negative cell line. The immunoprecipitation with anti-GM3 revealed the presence of a 58kDa band immunostained with anti-CD4 Ab, suggesting that the GM3-CD4 interaction does not require its association with p56Ick. These findings support the view that GM3 enriched-domains may represent a functional multimolecular complex involved in signal transduction and cell activation.

CD4 Antigens↗

New approaches to the study of sphingolipid enriched membrane domains: the use of electron microscopic autoradiography to reveal metabolically tritium labeled sphingolipids in cell cultures.

This paper is the first report on the use of the electron microscopy autoradiography technique to detect metabolically tritium labeled sphingolipids in intact cells in culture. To label cell sphingolipids, human fibroblasts in culture were fed by a 24 hours pulse, repeated 5 times, of 3 x 10(-7) M [1-(3)H]sphingosine. [1-(3)H]sphingosine was efficently taken up by the cells and very rapidly used for the biosynthesis of complex sphingolipids, including neutral glycolipids, gangliosides, ceramide and sphingomyelin. The treatment with [1-(3)H]sphingosine did not induce any morphological alteration of cell structures, and well preserved cells, plasma membranes, and intracellular organelles could be observed by microscopy. Ultrathin sections from metabolic radiolabeled cells were coated with autoradiographic emulsion. One to four weeks of exposition resulted in pictures where the location of radioactive sphingolipids was evidenced by the characteristic appearance of silver grains as irregular coiled ribbons of metallic silver. Radioactive sphingolipids were found at the level of the plasma membranes, on the endoplasmic reticulum and inside of cytoplasmic vesicles. Thus, electron microscopy autoradiography is a very useful technique to study sphingolipid-enriched membrane domain organization and biosynthesis.

Autoradiography↗