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Biomedical subjects

M M Burger

Publications and source records attributed to M M Burger.

At least 19 recordsLinked to original sources

Specific growth stimulation in the absence of specific cellular adhesion in lung colonization by retinoic-acid-treated F9 teratocarcinoma cells.

In most studies concerning organ-specific metastasis, different or selected lines are compared with one another. Here we report results with the same cell line (the F9 murine teratocarcinoma) which can be directed towards liver or lung, depending on whether or not it is treated with retinoic acid and cyclic AMP. Thus, organ-specific colonization by tail-vein-injected murine F9 teratocarcinoma cells shows a particular pattern: unselected, undifferentiated F9 cells preferentially colonize the liver of the syngeneic animal. The lungs, the first capillary bed encountered by cells thus injected, are only very rarely colonized. By contrast, the lungs become the main target organ of F9 cells induced to differentiate by treatment with retinoic acid and cyclic AMP. We have recently shown that liver colonization by undifferentiated F9 cells correlated with the adhesiveness of the cells (higher to fibronectin and liver-derived extracellular matrix than to laminin and lung-derived extracellular matrix) as well as with their growth response to organ-derived extracts (no response with lung extracts and good response with liver extracts). The data reported below indicate that induction of differentiation causes at most a decreased adhesiveness of F9 cells to all the substrata tested (laminin, fibronectin, type-IV collagen, organ-derived extracellular matrix), suggesting that the shift in organ colonization observed with differentiated F9 cells is not due to an enhancement of the specific adhesion to the lung matrix. On the other hand, differentiated cells, but not undifferentiated ones, were able to respond to growth stimulation mediated by lung-derived extracts, thereby implying a relevant role for organ-specific growth stimulation in lung colonization by differentiated F9 cells.

Animals

The cytoskeletal protein talin is O-glycosylated.

Talin is a 215-kDa cytoskeletal protein implicated in linking actin filaments to the plasma membrane. We show here that chicken gizzard talin is galactosylated by incubation with UDP-[3H]galactose and galactosyl-transferase. The labeled carbohydrate moiety is removed by beta-elimination and comigrates with Gal beta 1-4GlcNAcitol, indicating that talin belongs to a recently discovered class of cytosolic proteins carrying N-acetylglucosamine (GlcNAc) O-linked to serine or threonine (Holt, G. D., and Hart, G. W. (1986) J. Biol. Chem. 261, 8049-8057). Two glycosylated sequences were identified in the tail domain of talin: ANQAIQMAXQNLVDPAXTQ and GILANQLTNDYGQLAQQ, corresponding to amino acids 1470-1488 and 1883-1899, respectively, of the mouse talin amino acid sequence (Rees, D. J. G., Ades, S. E., Singer, S. J., and Hynes, R. O. (1990) Nature 347, 685-689). The putative glycosylation sites are PAXTQ and QLTND. At most 6% of chicken gizzard talin and 3% of porcine stomach talin are galactosylated by galactosyltransferase. Furthermore, human platelet talin is not labeled at all by the procedure, indicating that it may not be glycosylated.

Amino Acid Sequence

Why do cancer cells metastasize into particular organs?

Metastatic spread of tumor cells is one of the most common causes of death in cancer patients. Therefore, elucidation of the molecular mechanisms that underlie the formation of metastatic colonies has been one of the major objectives of cancer research during the last two decades. In this review we will mainly discuss the mechanisms that cause a malignant cell to grow at a given site rather than at other possible sites, taking into account experimental and clinical evidence published on the subject. As a whole this evidence tends to confirm the hypothesis that organ-specific colonization by malignant cells often follows very specific and close interactions between the cancer cell and the target organ, either in terms of specific cellular adhesion or growth promotion. In this paper we would like to underscore the fact that cellular adhesion, either specific or unspecific, is a necessary but, by itself, insufficient condition for the development of metastases. It is the ability of the tumor cells to grow at the site where they arrested that ultimately determines whether a metastatic colony develops or fails to develop at that site.

Growth Substances

Phosphorylation of vinculin in human platelets spreading on a solid surface.

Vinculin is a cytoskeletal protein believed to be involved in linking microfilaments to the cell membrane. It is a substrate for the Ca(2+)- and phospholipid-dependent protein kinase C. We show here that when human platelets attach and spread on a solid surface, the alpha isoforms of vinculin become phosphorylated at serine and/or threonine residues. Phosphorylation is dependent on adhesion to a surface, since suspended, unattached platelets can produce filopodia but no phosphorylation of vinculin. Phosphorylation is also dependent on actin polymerization, as it does not occur when platelets had been pretreated with cytochalasin B. Most likely, protein kinase C is responsible for the phosphorylation of vinculin, since phosphorylation also occurs when platelets are treated with a phorbol ester, which activates protein kinase C, and is blocked by treatment with a staurosporine derivative which inhibits this enzyme. These results suggest that phosphorylation plays a role in anchoring vinculin at sites of microfilament-membrane interaction.

Animals

Release of endosomal content induced by plasma membrane tension: video image intensification time lapse analysis.

Rhodamine-labeled vinculin microinjected into chicken embryo fibroblasts and rhodamine-labeled alpha 2-macroglobulin added to the fibroblast culture medium were sequestered in endocytotic vesicles and digested. When a sealed microcapillary coated with fibronectin or polylysine was attached to the fibroblasts and pulled at speeds of 100-200 microns/h, stretching the plasma membrane, a variable fraction of the endosomes released the rhodamine label. Release from individual vesicles was rapid, reaching completion in less than 30 to 120 s. The microfilament disrupting agent cytochalasin B prevented release, as did the microtubule stabilizing drug taxol. Colcemide, which disrupts microtubules, did not inhibit the release. Release was dependent on extracellular calcium, as it was prevented by 10 mM EGTA in the incubation medium. We postulate that opening of vesicular channels consequent to centripetal transmission of tension generated in the plasma membrane along microfilaments may be a mechanism of release of endosomal content.

Alkaloids

Isolation of a protein from the plasma membrane of adrenal medulla which binds to secretory vesicles.

Solubilized proteins of the plasma membrane of bovine adrenal medulla were fractionated on the basis of their affinity for secretory vesicles. The isolation procedure included preparation of a highly purified fraction of plasma membranes, its solubilization in detergent, and application to a column prepared from glutaraldehyde-fixed chromaffin granules. Using this technique, one major polypeptide (80% of the material bound) was isolated. This protein has been shown to originate from the plasma membrane and has no affinity for fixed bovine adrenal medullary mitochondria or lysosomes. It is eluted most effectively by low pH (3.0) and can be rebound and re-eluted from fixed secretory granules. In sodium dodecyl sulfate and beta-mercaptoethanol it has an apparent molecular weight of 51,000. In addition, two minor components, comprising about 20% of the material bound were detected having apparent molecular weights in sodium dodecyl sulfate of 14,000 and 62,000. It is suggested that such a molecule could function as a plasma membrane-located receptor for chromaffin granules during the secretory process.

Adrenal Medulla

Liver-colonizing melanoma cells selected from B-16 melanoma.

Liver-colonizing tumor cells were selected from B-16 melanoma by a stepwise procedure: (1) injection of the original cells through the portal circulation: (2) removal of tumor cells from the hepatic tumor nodules for culture in vitro; (3) reinjection of such cells through the portal circulation and repetition of steps 2 and 3 eight times. The predilection of these cells to form tumors in the liver was clearly demonstrated following injection of the cells intra-arterially. The accuracy of the injection technique was controlled by monitoring amonts of injected radioactively labelled Sephadex microspheres. This liver-colonizing preference was not exclusive, but relative.

Animals

Effect of polyene antibiotics on the lectin-induced agglutination of transformed and untransformed cell lines.

Treatment of transformed Py3T3, SV101-3T3, and L1210 cells, as well as mitotic and Pronase-treated untransformed 3T3 cells, with the polyene antibiotics filipin, nystatin, and amphotericin B inhibited agglutination by wheat germ agglutinin. The effect of polyene antibiotic treatment was lectin and cell specific. Concanavalin A induced agglutination was not inhibited, wheat germ agglutination induced agglutination of untransformed 3T3 interphase cells was not influenced, and other aggregation phenomena, including those of erythrocytes with blood group specific antibodies or divalent cations, were unaffected by polyene treatments. This suggests that the formation of polyene-cholesterol complexes in transformed and erythrocyte cell membranes may specifically affect wheat germ agglutinin receptors and/or secondary events necessary for wheat germ agglutinin induced agglutination. Fluorescence studies of membrane filipin-cholesterol complexes showed that pretreating the cells with wheat germ agglutinin, but not concanavalin A, perturbed the fluorescence properties of filipin. Electron spin resonance studies with spin-labeled fatty acids revealed at best only a slight decrease in fatty acyl chain flexibility following filipin treatment. These studies indicate that there are not only quantitative differences between the agglutinability of transformed and untransformed cells with wheat germ agglutinin but that qualitative differences exist as well.

Agglutination

Nerve fibers in culture and their interactions with non-neural cells visualized by immunofluorescence.

Cultures of embryonic mouse spinal cord explants, alone or in combination with rat myotubes, were stained by indirect immunofluorescence using antibodies against three structural proteins to: (a) reveal the distribution of these proteins among different cell types, and (b) test the usefulness of antibody staining to reveal the gross morphology of the neurite network in complex cultures. Affinity column purified antibodies were used against chicken gizzard actin, porcine brain tubulin, and skeletal muscle alpha-actinin. Neurites were stained intensely by anti-actin as was the stress fiber pattern of underlying fibroblasts. With anti-tubulin, the staining of neurites was an order of magnitude more intense than the staining of the microtubule pattern of background fibroblasts. Neurite cell bodies and astrocyte-like glia cells were stained with anti-tubulin and their nuclei remained unstained. Anti-tubulin could thus be used to trace even the finest extensions of nerve processes in spinal cord and spinal cord-muscle cultures. Furthermore, it could be combined with the histochemical reaction for acetylcholinesterase (AChE, EC 3.1.1.7) to demonstrate AChE-positive neurons and specialized nerve-muscle contact sites. The staining of neural elements with anti-alpha-actinin was generally much weaker than with anti-actin and anti-tubulin. Neurites were stained only moderately in comparison to myotube Z lines in the same culture. However, a distinct staining of the periphery of dorsal root ganglion cells was observed. Thus, a protein immunologically related to muscle alpha-actinin is present in the nervous system. In myotubes, Z lines were stained intensely with anti-alpha-actinin while I bands were only faintly stained with anti-actin. In isolated myofibrils, both structures were stained intensely with the same antibody preparations.

Actinin

Growth inhibition of transformed cells with succinylated concanavalin A.

Succinylated concanavalin A reversibly inhibits the growth of SV40 transformed mouse 3T3 cells and thus causes an accumulation of the cells in the G1 phase of the cell cycle. In a soft substrate (methylcellulose) succinylated concanavalin A also restores in transformed cells the growth behavior typical of untransformed cells.

Cell Adhesion

An efficient method to produce specific anti-actin.

The production of affinity column purified (specific) anti-actin is described. With the immunization scheme employed, all rabbits produced precipitating antibodies over several months, so that 30 mg specific anti-actin per rabbit could be isolated in 6 months. The antibodies against native and detergent denatured smooth muscle actin are characterized by immunodiffusion tests, staining of the I-band of isolated myofibrils and stress fibers in tissue culture cells, using indirect immunofluorescence.

Actins

Similarities in the membrane fluidity of 3T3 and SV101-3T3 cells and its relation to concanavalin A- and wheat germ agglutinin-induced agglutination.

Intact, viable ultransformed 3T3 and transformed SV101-3T3 cells were labeled with fatty acid spin labels and with 2,2,6,6-tetramethylpiperidine-1-oxyl in order to measure the fluidity properties of membrane lipids. Both cell types were grown in regular calf serum and in a lipid-depleted serum supplemented with either oleate or elaidate. The temperature dependence of the spectra obtained revealed inflections that correlate with the temperature below which agglutination with concanavalin A is inhibited, and another inflection that correlates with the temperature below which agglutination with wheat germ agglutinin is inhibited, suggesting that (a) the lipid phase(s) in the vicinity of the receptor(s) for these two lectins differ, and (b) a fluid membrane in the vicinity of the lectin receptor(s) is necessary for agglutination with either concanavalin A or wheat germ agglutinin. Studies with a partially characterized plasma membrane fraction suggest that the plasma membrane fluidity parameters closely resemble those of the intact cell. 3T3 and SV101-3T3 cells show virtually identical fluidity profiles by all of the tests we have applied.

Agglutination

Sugar-specific antibodies reactive towards cell-surface carbohydrates.

Antibodies generated against sugar-azoproteins have been purified by affinity chromatography using elution with monosaccharide. They have high specificity for monosaccharide and they react with terminal, non-reducing sugars on the surfaces of human erythrocytes. Some of them, either native or as Fab fragments, inhibit mitogenic stimulation of lymphocytes by concanavalin A.

Animals