Correlation of surface antigens and cell type in cloned cell lines from the rat central nervous system.
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Cells of clone NB41A3 of the C-1300 mouse neuroblastoma were grown to a critical density at which many of the cells flatten, assume a variety of shapes and sizes and some sprout processes resembling neurites. We have studied the distribution of actin and tubulin in these cells using fluorescence microscopy and antibodies against actin or tubulin under these conditions. Actin-containing structures are variably arranged and predominantly associated with motile areas of the cell periphery including the growth cone. Microtubules appear to run radially from the perinuclear area towards the cell periphery. When neurites are present, microtubules converge into them and run to the growth cone but rarely contact its edge.
Hydra interstitial stem cells continuously give rise to daughter stem cells as well as precursors for nerve and nematocyte differentiation. Growth of the stem cell population is controlled by the self-renewal probability (Ps): Ps is the fraction of stem cell daughters that remain stem cells in each generation. We have determined Ps for Hydra interstitial stem cells by using a novel technique based on the cell conposition of clones. Stem cell clones were grown in aggregates of nitrogen mustard-inactivated Hydra tissue. They contain several hundred cells after 14 days of growth, including stem cells, differentiating nematocytes, and differentiating nerve cells. Clone size, size variability, and the ratio of differentiating cells to stem cells are sensitive measures of Ps. We have prepared standard curves relating these parameters to Ps, using computer simulations of clone growth. Comparisoon of the experimentally observed parameter of clones to these curves indicates that Ps decreases from 0.8 in 5- to 6-day clones to 0.6 in 10- to 12-day clones. The decrease in Ps coincides with the increase in clone size and suggest that Ps may be regulated by the density of stem cells in clones. Such a mechanism could be responsible for the observed homeostasis of stem cell populations in vivo.
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A method is described to prepare clones of hemopoietic cells grown in soft agar for scanning electron microscopy (SEM). A critical modification of the otherwise quite standard SEM processing procedure for biological samples involved the use of silver micropore disks as an adherent substrate to support the highly labile, deformable agar slabs. This support allows maintenance of the normal flat pancake shape of the specimen through the thiocarbohydrazide osmium ligand binding steps, dehydration, and critical point drying. With this support and careful dissection of the surface agar with a fine steel needle using a stereomicroscope, selected areas and depths within the colony can be exposed and examined by SEM. Surface topography of cloned cells can be correlated with intracellular cytological features by excising areas of interest and directly embedding them in plastic for thin-section preparation and viewing by transmission electron microscopy (TEM). The dried-specimen-teasing method appears useful, because of the ease of preparation of the specimens, its reproducibility, and the degree of visibility and preservation of cell surface structures and intraclonal relationships. Our initial observations, using combined EM techniques, indicate that clonal cell topography is highly variable and that this variability appears to be related both to the relative age and proliferative status of the colony. Based on work to date, we suggest that topographical and spatial analysis, in vitro of cloned, agar-embedded hemopoietic stem cells is possible with simple modifications of conventional SEM preparative techniques.
Human skin fibroblast cells derived from a juvenile patient with nephropathic cystinosis were transformed by simian virus 40. Transformed cell clones were isolated and established in tissue culture. In comparison to the parental cystinotic cells, the newly isolated, transformed cell clones had a higher plating efficiency, a modal chromosome number of 68, grew in soft agar, and showed a nuclear immunofluorescence typical for SV 40-specific tumor (T) antigen. The content of intracellular, unbound cystine in the transformed cell clone was of the same level (6.1 nmol 1/2 cystine/mg protein) as in the parental cystinotic cells (7.4 nmol). Control cells (SV 80 and WI-38) contained normal levels of cystine (0.31 and 0.47 nmol 1/2 cystine/mg protein). The growth characteristics make the transformed cystinotic cell clone suitable for large scale preparation of cellular constituents, i.e. lysosomes which seem to be affected in cystinotic patients.
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[125I]Iodohydroxybenzylpindolol, an extremely potent beta-adrenergic antagonist, has been purified to theoretical specific activity (2200 Ci/mmol) and used as a ligand to characterize the beta-adrenergic receptors of cultured rat glioma cells and other cultured cell clones. Appropriate receptor sites were identified by stereoselective competition for binding by a number of adrenergic agonists and antagonists, by correlation between the potency of these compounds to inhibit binding and to affect adenylate cyclase activity, and by correlation of binding with the presence or absence of response to catecholamines (stimulation of adenylate cyclase) in various cell clones. In equilibrium experiments, the dissociation constant for binding of the iodinated ligand to the beta-adrenergic receptor of a clone of rat glioma cells (C6TG1A) was 250 pM; the corresponding value for a clone of human fibroblasts (VA2) was 15 pM. For C6TG1A, KD was verified by analysis of the kinetics of binding: k1 = 10(8) 1/mol/min: k-1 = 0.017/min. This rate of dissociation of ligand from the receptor was also established by study of the rate of activation of adenylate cyclase by isoproterenol after prior equilibration with iodohydroxybenzylpindolol. For VA2 cells, where affinity was higher, the rate of reversal of binding was only 0.0035/min. C6TG1A contained approximately 4000 receptor sites/cell (75 fmol/mg of protein), and these sites appeared to be coupled to adenylate cyclase in a stoichiometric manner. A second site with equal affinity for iodohydroxybenzylpindolol (KD = 250 pM) was also identified in C6TG1A by both kinetic analysis and equilibrium binding studies. While most compounds that interacted with the beta-adrenergic receptor also influenced binding to the second site, the latter did not distinguish between stereoisomers of propranolol, and its affinity for the other compounds tested was poorer.
The frequency of mitogen-reactive B cells yielding an IgG plaque-forming cell (PFC) response has been determined in vitro by limiting dilution analysis under culture conditions which allow every growth-induced B cell to grow and mature into a clone of Ig-secreting cells. The frequencies of lipopolysaccharide (LPS)-and lipoprotein-reactive precursors for IgG-secreting cells in the spleen of 6--8 wk old C3H/Tif and of C57BL/67 mice were found to be between 1 in 30 and 1 in 40 B cells and, therefore, only one tenth of the frequencies of mitogen-reactive precursors of clones secreting IgM. All IgG-secreting cells developed by switching in clones which previously contained IgM-secreting cells. This was shown in two experiments where the total number of mitogen-reactive precursor yielding IgM-secreting cell clones was limited such that 82 or 90% of all responding cultures originated from one precursor. Thus, of 480 cultures in the first and 720 cultures in the second experiment, 86 and 98 cultures were found positive, yielding IgM-secreting cells at day 5. When the same cultures were assayed at day 7 for IgG-secreting cells 9 and 10 cultures were found positive. All 19 cultures with IgG-secreting cells previously had contained IgM-secreting cells. The probability that IgG-secreting cells and IgM-secreting cells would have arisen from independent precursors can be calculated using Fisher's exact test of independence. For the two experiments those probabilities are 3.4 X 10(-7) and 4.0 X 10(-9). Since we have previously shown that each cell in a mitogen-stimulated, growing B-cell clone divides, and that each dividing cell secretes Ig, we conclude from these experiments that the large majority--in our experiments all--of the IgG-secreting cells in mitogen-stimulated B-cell clones develop by switch from IgM-secreting cells. IgG-secreting cells develop either early or late during growth of a single IgM-secreting cell clone. The switch to IgG secretion, therefore, is not fixed in the time of clonal growth after mitogenic stimulation.
Isoelectric focusing in polyacrylamide gels was used to investigate the anti-sheep red blood cell antibody responses of mice subjected to antigenic competition. A reduction in the number and intensity of antibody bands was found, even in situations where the suppression of IgG antibody titres was minimal, while with large reductions in titre, antibody bands were rarely seen. It thus appeared that the output of individual B-cell clones was severely depressed during competition. It was concluded that inhibition of clonal expansion is an important feature of competition, and that this may reflect a normal regulatory activity which acts to limit cellular proliferation during immune responses. This conclusion was supported by observations on the level of DNA synthesis, following immunization with sheep red cells, in the spleens of normal and suppressed mice.
The activity of 3'-phosphoadenosine-5'-phosphosulfate : galactocerebroside sulphotransferase (PAPS - CST, EC 2.8.2.11), which catalyzes the synthesis of sulphatides, was measured in cloned cells (NIE 115) derived from mouse neuroblastoma C-1300. This activity was of the same order of magnitude as that observed in adult mouse brain. The cell density had no effect on the specific activity of the PAPS-CST.
The chromosome study of a patient with chronic myelocytic leukemia in blastic phase revealed a 46,XY,Ph1/47,XY,Ph1,+8 cytogenetic constitution in bone marrow cells and a 46,XY,Ph1/48,XY,2Ph1,+19 cytogenetic constitution in spleen cells. As the cell clones exhibiting chromosome abnormalities in addition to the Ph1 chromosome evolved apparently independently, it is suggested that the acute transformation had a bifocal, myeloid and splenic origin.
Human adenovirus type 12 does not multiply in mouse cells; only viral T-antigen is detected. Mouse-human cell hybrid clones containing human chromosomes A3, B5, C7, C11, C12, D14, E17, F19 and F20, support synthesis of adenovirus DNA and capsid antigens.
H-Y-specific cytotoxic T cells were first cloned in soft agar and grown over a period of 8 months in media conditioned with supernatants from mouse and rat spleen cells stimulated with concanavalin A. The specificity of cloned cells and their cytolytic potential remained essentially unchanged over the entire culture period. In addition to lysing male target cells expressing H-2Db antigens, the cytolytic cells lysed also male as well as female cells expressing H-2Dd alloantigens. Seventeen out of eighteen subclones derived from the original clone revealed the same activity. The cells divide about every 17--20 h can be obtained in large quantities.
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Five clones of Chinese hamster cells transformed with simian virus 40 (SV40) were isolated from methylcellulose and characterized as to Giemsa-banded karyotype, DNA content, saturation density, agglutination with concanavalin A, and tumorigenicity. Chromosome analysis and DNA content studies at early passage revealed that the genetic complement for all clones was predominantly near tetraploid. All cultures examined contained a proportion of hypertetraploid cells. Nonrandom chromosome changes included at least one broken No 1 chromosone in 80% or more of the cells in each clone, and fewer sex chromosomes than anticipated from the ploidy of the cells. Several abnormal marker chromosomes tended to recur. These changes were more pronounced in the cells cultured from tumors formed by three of the clones. A karyotypically stable stem line was not noted for any of the clones or tumors. The functional significance of the karyotypic heterogeneity was assessed by means of cloning efficiencies both on plastic and in methylcellulose.
A clone of Chinese hamster embryo cells transformed by tsA58, the temperature-sensitive mutant of simian virus 40, was analyzed for chromosome abnormalities at the permissive temperature (37 degrees C) and nonpermissive temperature (40.5 degrees C). Trypsin-Giemsa-banded metaphases were analyzed 1 week after the temperature shift. The metaphases from cells at both temperatures were pseudodiploid, with numerous chromosome changes primarily affecting chromosomes no. 1 and 2. Other chromosomes (no. 6, 11, and the X) were also frequently involved. A marker chromosome, LM, was present in 35% of the cells at 40.5 degrees C.