Search PubMed⌕ Search

Biomedical subjects

J F Perdue

Publications and source records attributed to J F Perdue.

At least 55 records · Page 3Linked to original sources

The dynamics of antibody-induced redistribution of viral envelope antigens in the plasma membranes of avian tumour virus-infected chick embryo fibroblasts.

Avian tumour virus-infected chick embryo fibroblasts express new antigens, identical with the viral envelope antigens, in their plasma membranes. Electron-microscopic examination of carbon-platinum replicas of cells labelled with haemocyanin-marked antibody has shown the distribution of these antigens to be diffuse over the cell surface with an increased concentration on peripheral cell processes. However, antigen-antibody complexes (AAC), resulting from reaction with specific antibody, may be redistributed into a variety of patterns. Observation of the time course of antibody-induced antigen mobility revealed a rapid and a delayed phase of redistribution. During the rapid phase (10 min or less) some of the antigen-bearing cells reorganized AAC into patches, while the remainder maintained a diffuse distribution. A fraction of the cells with either diffuse or patchy distribution also redistributed AAC into a pattern of 'marginal redistribution (MR)', consisting of linear aggreagation of AAC, at the cell edge. During the 'late' phase of redistribution (after about 20 min), AAC began to condense into one or more foci of coalescence (FC) on each cell. As the number of cells with FC increased with time, the fraction of cells which were labelled decreased. Electron-microscopic observation of thin sections of ferritin-labelled specimens indicated that AAC were lost by endocytosis and that this process was probably related to FC formation. Inhibitors of oxidative phosphorylation, protein synthesis, RNA synthesis, or microtubule assembly had no significant effect on the patterns or the course of redistribution. Iodoacetic acid (IAA), which depletes cellular ATP, and cytochalasin B (CB), which is believed to depolymerize microfilaments, partially inhibited MR and completely prevented FC formation and endocytosis. Paradoxically, IAA or CB-treated cells lost AAC very rapidly by some alternate mechanism not involving FC formation but which may entail a centrifugal migration of complexes to the cell extremities during the process of AAC disposal.

Antibodies, Viral↗

Extent of mitogen receptor occupancy and modulation of mitogen receptor exposure: possible mechanisms for the regulation of cell growth.

125I-Insulin was used as a model mitogen to examine the relationships of mitogen receptor occupancy and exposure in controlling cell replication. Labeled hormone was bound to substratum-attached, confluent fibroblasts with two affinities, K1 approximately equal to 2 X 108 M-1 and K2 approximately equal to 0.8 X 107 M-1. Approximately 9,000 receptors per cell were calculated from a scatchboard plot analysis with 80% of them of the affinity type. Treatment of confluent fibroblasts with 1.0 to 10 microng/ml of trypsin for 10 min increasd the number of exposed K2 sites by a factor of 2 to 3. Culturing the fibroblasts in the absence of serum for 12 to 24 hr also increased the quantity of exposed K2 sites to 60,000 per cell. The addition of unlabeled insulin to untreated, trypsin-treated, or serum-starved fibroblasts resulted in a stimulation of 2-deoxyglucose transport and thymidine incorporation activity that was proportional to the observed level of 125I-insulin binding. The quantity of exposed insulin receptors on uninfected fibroblasts decreases as the cell culture density increases. Hormone binding to B77 virus-transformed fibroblasts also decreases with culture density but plateaus at a density of 6 X 105 cells/plate. This resulted in a 2- to 3-fold difference in the level of exposed receptors between the uninfected and virus-transformed cells in confluent cultures, and proportionally higher rates of sugar transport and thymidine incorporation activity. Trypsin treatment and 12 hr of growth in the absence of serum did not result in an increase in the level of recepto exposure in the virus-transformed cells. The results of this study suggest that the pleotypic events associated with the stimulation of cell replication as represented by sugar transport and DNA synthesis are dependent upon and proportional to mitogen receptor occupancy. The control of cell replication, however, appears to be linked by a presently unknown mechanism with the degree of exposure of mitogen recipotrs. Receptor concentration is high and is similar in rapidly growing uninfected and virus-transformed cells, but the subsequent decrease observed with an increase in culture density reaches an early plateau for the transformed cells. This difference in exposed receptors could provide the growth advantage that is the hallmark of transformed cells.

3',5'-Cyclic-AMP Phosphodiesterases↗

Induction of sugar transport in chick embryo fibroblasts by hexose starvation. Evidence for transcriptional regulation of transport.

Incubation of chick embryo fibroblasts in glucose-free medium resulted in a dramatic increase in the rate of 2-deoxy-D-glucose transport. The greatest increase in rate occurred during the first 20 hours of incubation in glucose-free medium and was blocked by actinomycin D, dordycepin, or cycloheximide. The conditions of 2-deoxy-D-glucose concentration and time of incubation with the sugar were determined where transport rather than phosphorylation was rate-limiting in sugar uptake. These studies demonstrated that the transport of 2-deoxy-D-glucose was rate-limiting for only 1 or 2 min when the concentration of sugar in the medium was near the Km for transport, i.e. 2mM. No difference was found in the level of hexokinase activity in homogenates prepared from cells incubated glucose-free medium or standard medium when either 2-deoxy-D-[14C]glucose or D-glucose was used as substrate. A kinetic analysis of the initial rates of 2-deoxy-D-glucose transport by Lineweaver-Burk plots showed that the Vmax for sugar transport increased from 18 to 95 nmol per mg of protein per min when fibroblasts were incubated in glucose-free medium for 40 hours. The Km remained constant at 2 mM. Analysis of the initial rates of 3-omicron-methyl-D-glucose transport by Lineweaver-Burk plots further substantiated that the increase in sugar transport was due to an increase in the Vmax for transport with the Km remaining constant. The activation energy for the transport reaction calculated from an Arrhenius plot was 17.4 Cal per mol for cells cultured in the standard medium and 17.2 Cal per mol for cells cultured in the glucose-free medium. These results are consistent with the interpretation that the Vmax increase observed in hexose-starved cells is due to an increase in the number of transport sites.

Animals↗

Ultrastructural distribution of cell surface antigens in avian tumor virus-infected chick embryo fibroblasts.

The distribution of neoantigens in the surface membrane of avian tumor virus-infected chicken embryo fibroblasts was examined on carbon replicas of cell cultures using hemocyanin-labeled antibody. New determinants appearing on the cell surface of virally infected but not transformed cells are thought to be common with components of the viral envelope. These antigens were found to exist in a diffuse, random array on the dorsal cell surface, with a denser accumulation along the cell processes. In living cells, surface antigens are capable of several types of redistribution when activated by reaction with antibody. Leukosis virus-infected (non-transformed) cells showed two apparently independent modes of redistribution: a relocation of some antibody-related sites to the cell margin; or an involvement of essentially all sites in randomly dispersed aggregates. Viral antigenic sites on sarcoma virus-infected (transformed) cells, reacted with antibody, were able to produce weak marginal relocation; but revealed a more striking tendency to migrate to some central location. The centripetal coalescence thus formed resembles the "cap" noted in other systems. Prior aggregation into "patches" may not be a prerequisite for such cap formation. Tumor-specific surface antigen detection and mapping was attempted by this technique, but results were equivocal. An antigen possibly characteristic of rapidly dividing cells occurred in a sparse, diffuse fashion over the surface of morphologically distinct "round" cells.

Animals↗

The distribution, ultrastructure, and chemistry of microfilaments in cultured chick embryo fibroblasts.

The distribution, ultrastructure, and chemistry of microfilaments in cultured chick embryo fibroblasts were studied by thin sectioning of flat-embedded untreated and glycerol-extracted cells, histochemical and immunological electron microscopic procedures, and the negative staining of cells cultured on electron microscopic grids. In these cultured cells, the microfilaments are arranged into thick bundles that are disposed longitudinally and in looser arrangements in the fusiform-shaped cells. In the latter case, they are concentrated along the margins of the flattened cell, on the dorsal surface, and particularly at the ends of the cell and its ventral surface, where contact is made with the plastic dish or with other cells. Extracellular filaments, presumably originating from within the cell, are found at these points of contact. The microfilaments are composed in part of an actin-like protein. These filaments are between 70 and 90 A in diameter, they are stable in 50% glycerol, they have an endogenous ATPase (myosin-like?) associated with them, they bind rabbit muscle heavy meromyosin, and they specifically bind antibody directed against isolated actin-like protein. In the cultured chick embryo fibroblasts, the microfilaments are essential for the establishment and maintenance of form, and they are probably critical elements for adhesion and motility. The microfilaments might also serve as stabilizers of intramembranous particle fluidity.

Adenosine Triphosphatases↗