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Chromosome changes in rat embryo cell lines transformed by temperature-sensitive mutants and sheared DNA of herpes simplex virus.

The chromosomes of six rat embryo cell lines transformed with herpes simplex virus (HSV) temperature-sensitive (ts) mutants were examined at different passages of in vitro cultivation. Two cell lines were predominantly diploid, one cell line was hyperdiploid, one cell line was pseudodiploid, and two cell lines were hypotetraploid. In near-diploid cell lines chromosome No. 9 was most frequently involved in chromosome changes. All three cell lines derived from tumors obtained after one transplantation of HSV-transformed cells into baby rats were pseudodiploid, but each had different marker chromosomes. Chromosome No. 15 was involved in the formation of two out of four marker chromosomes. Four cell lines derived from tumors developing after two and three transplantations were hypodiploid and showed large chromosome variation. The occurrence of 25 marker chromosomes in three tumor-derived cell lines resulted in gains in parts from chromosomes No. 2, 6, and 7. One marker chromosome had a homogeneously faintly stained region. Chromosomes No. 2, 3, 7, and 12 were more frequently involved in the formation of marker chromosomes. No chromosome change was found to be specifically associated with HSV-induced transformation of rat cells, but chromosome changes in tumor-derived cell lines may provide selective advantage for survival and autonomous growth in the host animal.

Animals↗

Establishment and characterization of a new Epstein-Barr virus transformed cell line from a human B cell lymphoma.

We have established a new cell line from a patient with centrocytic B cell lymphoma. Highly purified peripheral blood B cells from patient DUL (WBC counts 158,000/microliters) were infected in vitro with Epstein-Barr virus (EBV), and CD20+ B cells were cloned into 96 well culture plates with the aid of a cell sorter autoclone device. As shown by GTG-banding and Southern blot analysis, out-growing EBV-positive clones had the same chromosomal abnormalities and identical monoclonal IgH gene rearrangement as the original EBV-genome-negative leukemic B cell clone. Surface marker analysis with a panel of monoclonal antibodies revealed identical patterns on EBV-negative and -positive clones, with the exception of PCA1 (reactive with plasma cells) which was negative on freshly explanted leukemic B cells but positive on EBV-converted clones.

Antigens, Surface↗

The presence of non-isotype-specific antibodies in polyclonal anti-IgE reagents: demonstration of their binding to specifically selected Epstein-Barr virus-transformed cell lines.

Polyclonal anti-human IgE reagents were earlier shown to contain variable amounts of nonisotype-specific antibodies depending on the strategy used for their preparation. The presence of these antibodies in two commercial anti-IgE reagents was demonstrated in this work by (a) their binding to human Ig-surface-positive lymphoblastoid cells specifically selected by one of the polyclonal anti-human IgE reagents and (b) their binding to the non-IgE immunoglobulins secreted by those lymphoblastoid cells. Peripheral blood B lymphocytes from two normal and two atopic patients were immortalized with Epstein-Barr virus (EBV) and then selected for cells that rosette with anti-IgE-coated erythrocytes. Selection was repeated four times and cells were then cloned. The cloned cells formed rosettes and their supernatants agglutinated erythrocytes coated with rabbit anti-IgE. The immunoglobulins of these clones were positive in an ELISA for IgE, using two different polyclonal anti-human IgE reagents. They were shown, however, to be 19 S IgMs. This discrepancy was due apparently to substantial contamination of anti-non-IgE-isotype-specific antibodies in the polyclonal anti-IgE reagents used both in the selection of cells and in the ELISA. The human monoclonal B-cell lines which were applied here as targets amplified the non-IgE-isotype specific antibody contamination present in the polyclonal anti-human IgE reagents. Because of the normally very low frequency of IgE-positive cells, the use of polyclonal anti-IgE reagents to detect these cells has to be carefully evaluated.

Animals↗

The regulation of membrane 125I- and 86Rb+ permeability in a virally transformed cell line (NCL-SG3) derived from the human sweat gland epithelium.

We have explored the factors that may regulate membrane permeability in a cell line (NCL-SG3) derived from the human sweat gland epithelium. Ionomycin increased the rate of 125I-efflux from preloaded cells and this action appeared to be due to an increase in intracellular free calcium ([Ca2+]i). The ionomycin-evoked increase in 125I- efflux was reduced in cells that were exposed either to barium or to valinomycin in the presence of a high concentration of external potassium. It thus appears that a fraction of the ionomycin-evoked increase in 125I- efflux is due to the activation of potassium channels and experiments using 86Rb+ also suggested that ionomycin increased the rate of potassium efflux, an effect which was totally abolished by barium. Blockade of Na(+)-K(+)-2Cl- cotransport and of Cl- -HCO3- exchange reduced the basal rate of 125I- efflux and the ionomycin-evoked increase in 125I-efflux from control cells and from cells depolarized by valinomycin. These transport systems thus contribute to anion efflux, although [Ca2+]i-dependent chloride channels also appear to be present. Acetylcholine increases [Ca2+]i in the secretory cells of human sweat glands, but this neurotransmitter did not increase [Ca2+]i in NCL-SG3 cells and so membrane permeability was not under cholinergic control. Adrenaline did not increase [Ca2+]i, but this hormone did evoke cyclic-3',5'-adenosine monophosphate (cyclic AMP) production. However, membrane permeability was not under adrenergic control, as the cells did not appear to express functional, cyclic AMP-dependent anion channels. This may be because they were not fully differentiated under the culture conditions. ATP consistently evoked a dose-dependent increase in anion efflux that appeared to be mediated by [Ca2+]i. The increase in [Ca2+]i was initiated by the release of calcium from a limited internal store and was subsequently sustained by calcium influx. UTP and ADP also increased [Ca2+]i, whereas adenosine, AMP and alpha,beta-methylene ATP were without effect. These data thus suggest that a subclass of type 2 purine receptor, which is functionally coupled to phosphoinositidase C, is present in these cells.

Calcium↗

Characteristic of two mouse bcr-abl-transformed cell lines: I. General properties of the cells.

In an effort to develop an experimental system suitable for immunological studies in which Bcr-Abl-positive cells are to be used as antigens, we examined the properties of two mouse (Balb/c) established cell lines that express the Bcr-Abl protein and are oncogenic for syngeneic animals. Under standard conditions the two cell lines, viz. Ba-p210 (B210) and 12B1, expressed comparable amounts of the Bcr-Abl protein. However, they differed in a number of characteristics. From the morphological point of view, B210 cells were the more homogeneous, being mainly represented by leukaemic blastic cells with a large number of AgNORs as markers indicating a high proliferative activity. 12B1 cells were more polymorphic and giant cells were detected within their populations. Many 12B1 cells exhibited nuclear segmentation and "band-like" structures. Markers of proliferation were less frequent in 12B1 and the tendency for aging was more pronounced in these cells. The 12B1 cells were slightly more sensitive to imatinib mesylate than B210 cells. In B210 cells, the expression of MHC class I was downregulated, which was not the case with 12B1 cells. Both cell lines induced leukaemia-like disease in mice after intravenous application but, as compared with B210, 12B1 cells were about 100 times more oncogenic and the disease they induced was more aggressive. Moreover, 12B1, but not B210, induced tumours after subcutaneous or intraperitoneal inoculation.

Animals↗

Characteristics of two mouse bcr-abl-transformed cell lines. II. Pathological lesions induced in mice.

Groups of six BALB/c mice each were intravenously inoculated with lethal doses of Ba-P210 (B210) or 12B1 cells and examined by autopsy, histology, special staining methods, enzyme histochemistry and immunohistochemistry. Clinical symptoms related to neoplasia consisted of a poor nutritional state, anaemia, mild to moderate dehydration and apathy. Paresis was apparent in three mice inoculated with 12B1 cells. Necropsy revealed splenomegaly in all animals. Sporadic haemorrhages in the lungs and enlargement of some lymph nodes were seen in some of the animals. Histological examination showed neoplastic cells in the spleen, in the bone marrow of the sternum, in the lung interstitium and in sinusoids of the liver in all mice. In six of nine brains examined, mild to moderate infiltration by neoplastic cells was observed. In all but two mice mild infiltration of the kidneys was found. The enlargement of lymph nodes was caused by an accumulation of neoplastic cells. The paresis was due to neoplastic infiltration of the vertebra, epidural space and spinal roots. Staining with Sudan black revealed cytoplasmic granules in neoplastic cells; however, the peroxidase reaction was negative. Numerous neoplastic cells disseminated in the red pulp of the spleen were reactive with CD3, CD79beta, CD11b and with neutrophil antibodies. We classified the disease induced by both of the cell lines as acute myeloid undifferentiated leukaemia (AML MO).

Acute Disease↗

Expression of complement receptor 2 (CR2) on HTLV-1-infected lymphocytes and transformed cell lines.

The expression of complement receptor 2 (CR2) has been demonstrated in established HTLV-1-transformed cell lines and in 12 studied de novo infected peripheral blood lymphocytes cultures, using 2 HTLV-1 sources. The simultaneous detection of CR2 and HTLV-1 antigens in both co-cultivated and supernatant-infected peripheral blood lymphocytes suggest that the increased CR2 expression is in tandem with the increasing HTLV-1 antigen expression. CR2 up-regulation seen during polyclonal activation is presumably in response to a viral protein, although a cellular factor has not been ruled out. Increasing CR2 expression during early infection suggests its possible involvement in selection or development of subsequent transformation events. Variable levels of CR2 in immortalized cell lines argue against its obligate expression of function in the maintenance of the transformed state. The expression of CR2 in cellular activation of T cells may be stage restricted. This study also expands the cellular distribution for CR2.

Cell Line↗

Lymphoblastoid cell lines, transformed by Epstein-Barr virus, in the enzymatic study of hereditary lysosomal storage diseases.

Assay conditions were studied for eight lysosomal enzymes in lymphoblastoid cell lines transformed by Epstein-Barr virus. The transformed lymphoblastoid cells retained all eight enzyme activities, though the levels sometimes differed from those in the peripheral lymphocytes or granulocytes. The levels of these eight lysosomal enzymes were measured in lymphoblastoid cells from 11 patients with hereditary lysosomal storage diseases--GMI-gangliosidosis, a variant of beta-galactosidase deficiency (sialidase deficiency with a partial beta-galactosidase deficiency), Tay-Sachs disease, Gaucher disease, Hurler syndrome, Scheie syndrome and I-cell disease--and from 20 of their obligate heterozygotes. No activity of enzymes that were deficient in the respective disease, except I-cell disease, was detected in the lymphoblastoid cells from the patient. In I-cell disease, the cells showed lower levels of some enzyme activities. beta-D-Galactosidase activity from heterozygotes of the patient with GMI-gangliosidosis and alpha-L-iduronidase activity from heterozygotes of the patient with Hurler syndrome were in carrier range. On sephadex G-150 gel filtration, beta-D-galactosidase in control material gave two peaks (I and II). In GMI-gangliosidosis, peak II was absent and peak I was markedly diminished. Peak II in the heterozygotes was smaller than that of control. On DEAE cellulose column chromatography of hexosaminidase, two major isoenzymes (hexosaminidase A and B) were detected in control. However, hexosaminidase A was not detected in Tay-Sachs disease, and the ratios of hexosaminidase (Hex) A/Hex B in the parents were lower than those in control.

Cell Line↗

Expression of integrated viral DNA sequences outside the transforming region in eight adenovirus-transformed cell lines.

The expression of early and intermediate-early viral regions in eight adenovirus type 5 transformed cell lines was analyzed by radioimmuno-inhibition and RNA-DNA hybridization techniques. Details on the arrangement of the integrated viral DNA sequences in these cell lines have already been published (Visser, L., Wassenaar, A.D.C., Van Maarschalkerweerd, M.W. and Rozijn, T.H. (1981) J. Virol, 39, 684-693). In all cell lines tested, proteins encoded by the transforming region E1 are present. Dependent on the viral DNA content, additional early regions are expressed in most cell lines. In two of the cell lines polypeptides related to the adenoviral terminal protein, encoded by the recently described region E2b, could be detected. The viral DNA sequence encoding the body of the terminal protein mRNA is probably integrated intact, but the promoter region and at least some of the leaders are lacking in these cell lines.

Adenoviruses, Human↗

Mutants of nonproducer cell lines transformed by murine sarcoma viruses. I. Induction, isolation, particle production, and tumorigenicity.

A variety of cell mutants were obtained by a single 5'-bromodeoxyuridine (BrdU) treatment of an nonproducer (NP) cell line transformed by the Kirsten strain of murine sarcoma virus (Ki-MSV). Isolation procedures of these cell See PDF for Structure mutants are described. The cell mutants obtained were classified by tumorigenic potential and shedding of Type C virus particles. The cell mutants were classified into four groups: (A) tumorigenic, without particles; (B) tumorigenic, with Type C particles; (C) nontumorigenic, without particles; and (D) nontumorigenic, with Type C particles. The tumorigenic cell lines showed variability in morphology with both flat and typical transformed appearing cell lines showing equal transplantability.

Animals↗

Macrophage cell lines transformed by the malignant histiocytosis sarcoma virus: increase of CSF receptors suggests a model for transformation.

The malignant histiocytosis sarcoma virus (MHSV) contains Ha-v-ras-related oncogenic sequences and rapidly transforms myeloid cells in vivo and in vitro. Myeloid cell lines can be derived which do not require growth factor for continued proliferation. We initiated this work to define the process of transformation leading to autonomy of cell growth in transformed myeloid cells. Five established cell lines were examined. All express macrophage-specific cell-surface antigens and exhibit several other properties typical for mature macrophages. Growth properties, growth factor release, and growth factor receptor presentation were examined: Release of growth factors is not a consistent feature. All cell lines show cell-density-independent colony formation and do not release self-stimulating factors, thus excluding autocrine stimulation as a model leading to transformation. All cell lines express unusually high levels of granulocyte-macrophage (GM)- and multi-CSF receptors and, except for one, M-CSF receptors. The high increase in GM-CSF and other growth factor receptors may be causally related to the transformed state of the cells. MHSV can be used as a tool to easily derive cell lines of the macrophage pathway as a model to study myeloid transformation, differentiation, and macrophage function.

Animals↗

Lack of c-jun expression in a transformed cell line isolated by glucocorticoid promotion of ras-transfected rat embryo fibroblasts.

Rat embryo fibroblasts (REFs) are inefficiently transformed by the T24-ras oncogene. A contributing factor to cellular resistance to transformation is the limited tolerance to p21-ras oncoprotein expression. Here we present data suggesting that long-term glucocorticoid treatment of ras oncogene-transfected REFs results in increased tolerance to p21-ras oncoproteins, leading to expression of the transformed phenotype. Stably transformed cell lines that expressed high levels of H-ras and could be maintained in the absence of hormone were isolated. In three out of four lines studied, the AP-1-dependent collagenase gene was expressed at a low level. In one of these lines, low collagenase expression was paralleled by lack of c-jun mRNA. Immunochemical analysis revealed that progression to hormone independence was not paralleled by mutations in the p53 gene. We propose that a decreased expression of AP-1-driven genes may result in increased tolerance to p21-ras oncoprotein.

Animals↗

Production of cytotoxic factor(s) in human T cell lines transformed by a human retrovirus.

Human T cell lines, MT-2, TCL-Ter, TCL-Haz, and TCL-Kan which were transformed by a human retrovirus, constitutively produced cytotoxic factor(s) (CF) in the culture supernatants. In these cell lines, MT-2 produced the largest amount of CF. The amount of CF produced by MT-2 was 9-10 or 3-4 times larger than that produced by a human B cell line, RPMI 1788, or normal peripheral blood leukocytes stimulated with mitogens and phorbol ester. The kinetics of the production by MT-2 was similar in media with and without serum. The activity was stable at 56 degrees C for 30 min but was lost at 80 degrees C for 30 min and at pH 2 for 20 hr. On gel filtration, the molecular weight of the factor produced by MT-2 was approximately 90,000. On isoelectric focusing, the activity was recovered in the fraction at pH 6.5-7.0.

Cell Line↗

Properties of a macrophage cell line transformed by simian virus 40. Morphological changes related to cell functions.

A mouse macrophage clone (line nH-1) transformed by simian virus 40 (SV40) was examined by electron microscopy. In the growing phase of the cultures, NH-1 cells were non-phagocytic and SV40 T antigen-positive, and contained a large number of filament sheaths within their pseudopodia. In the late stationary phase, they became phagocytic, SV40 T antigen-negative and contained a filamentous network within their psudopodia. In addition, NH-1 cells in the late stationary phase were very similar to normal macrophages in other morphological properties.

Cell Line↗

Comparative studies of collagen lattice contraction utilizing a normal and a transformed cell line.

Differences between the behavior of cultured rat skin fibroblasts and that of a line of transformed rat sarcoma cells incorporated into a polymerized collagen lattice were examined. Fibroblast-populated collagen lattices (FPCL) were manufactured. Within 24 to 48 hr after manufacture, both cell lines reduced lattice size by a process known as lattice contraction. Contraction occurred more rapidly in both cell lines when the media were supplemented with 25% serum rather than the usual concentration of 10% serum. Similar growth patterns were observed with transformed cells within collagen lattices and on plastic surfaces. Normal rat fibroblasts were found to contract lattices faster than transformed cells. At the end of a 2-week period, the final contracted size of the transformed cell lattice was the same as that of normal cell lattices. The cellular density of transformed cells within the FPCL was eight times greater than that of FPCL made with normal rat cells. Normal rat fibroblasts elongated and flattened more, and organized the collagen matrix to a greater degree, than did transformed cells. In this instance, therefore, lattice contraction was shown to be linked more to the process of fibroblast elongation and collagen fiber organization than to cell number or density.

Animals↗

Effect of adeno-associated virus on transformation of NIH 3T3 cells by ras gene and on tumorigenicity of an NIH 3T3 transformed cell line.

Transfection of NIH-3T3 cells with the plasmid pJ234, containing DNA from the human bladder carcinoma T24 cell line (ras gene), results in their transformation. Adeno-associated virus did not affect significantly the number of the transformed foci when different multiplicities of infection were used and when the virus was added to the cultures at different time intervals before or after transfection. A transformed cell line was derived following transfection of NIH 3T3 cells by the ras gene. Infection of these cells with adeno-associated virus resulted in a decrease in their growth rate and cloning efficiency. These infected cells showed a dose-dependent reduction in the frequency and an increase in the latent period for tumor appearance in nude mice.

Animals↗

Concatameric replication of Epstein-Barr virus: structure of the termini in virus-producer and newly transformed cell lines.

The linear form of Epstein-Barr virus (EBV) DNA has homologous direct tandem repeats of approximately 500 bp at each terminus (TR). After infection, EBV DNA circularizes via the TR to form the intracellular episomal DNA. To analyze the mechanism of the synthesis of linear DNA through possible replicative intermediates, the terminal fragments were identified in the total intracellular DNA and the covalently closed circular DNA from a productively infected cell line after induction of replication or after treatment with an inhibitor of viral DNA synthesis. These studies indicate that some of the fused terminal fragments detected in the total intracellular DNA are replication-dependent forms which are selectively excluded from the covalently closed circular fraction and are eliminated after treatment with acyclovir. The EBV terminal restriction enzyme fragments were identified in three producer cell lines, each with a characteristic number of TR in the intracellular episomal DNA. Identification of the termini in cell lines established with the three virus strains revealed that the newly transformed cell lines had a greater number of TR than did the template DNA in the producer cell line. The increase in the number of TR in progeny episomes indicates that linear DNA is produced from concatameric replicative intermediates rather than from amplified catenated circular intermediates.

Cell Line↗

[The establishment of B(a)P and TPA transformed cell line and its biological characteristics].

PURPOSES: To transform HPV E6/E7 immortalized human oral epithelial cell line HIOEC cells by benzo(a)pyrene B(a)P and tetradecanoyl phorbol acetate (TPA) in vitro, and establish a carcinogenesis model of oral squamous cell carcinoma. METHODS: HIOEC cells were treated with 0.1 microg/ml -1.2 microg/ml B(a)P for 6 months. Some of these cells were treated with 0.1 microg/ml TPA 24 hours at 4th passage and 10th passage, respectively. The cells were cloned at 18th passage, and then were cultured with DMEM medium contain 10% FBS at 21st passage. The cells were cultured in vitro for 1 year and developed into a malignant cell line HIOEC-B(a)P-TPA. The morphological changes of the cells were observed with differential interference contrast microscope and HE staining. The expression of cytokeratin and vimentin was identified with immunohistochemical staining. The soft agar colonies forming ability and tumorigenesity of the cells were identified to confirm the malignant characteristics of HIOEC-B(a)P-TPA cells. RESULTS: (1) After HIOEC cells were treated with B(a)P plus TPA for 6 months, HIOEC-B(a)P-TPA cells grew well in DMEM medium containing with physical concentration of calcium and 10% FBS. (2) During HIOEC cells were treated with chemical carcinogens, the morphology of the cells was changed. HIOEC-B(a)P-TPA cells showed as fibroblast-like cells with many atypical mitosis. (3) The expression of cytokeratin decreased in the cells while that of vimentin increased in the cells. (4) HIOEC-B(a)P-TPA cells had strong soft agar colony formation ability and the colony formation ratio was 24.5%. (5) HIOEC-B(a)P-TPA cells have no tumorigenisity till now. CONCLUSIONS: We established a biological factors and chemical carcinogens induced malignant cell line-HIOEC-B(a)P-TPA after a long period. It will provide a good multiple factors, multistage carcinogenesis model of OSCC for further research.

Benzo(a)pyrene↗