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Variations in properties of virus released from morphologically different cell lines transformed in vitro by Friend leukemia virus.

The properties of the virus synthesized by each of three morphologically different cell lines originating from DBA/2J fetal liver cells transformed by the anemic strain of Friend leukemia virus in vitro were analyzed. The cells of line G-1 are malignant in syngeneic DBA/2 mice, grow in suspension, and are erythroid in origin. Cells of lines G-2 and G-3 are adherent, are epithelial in appearance, and produce no tumors in DBA/2J mice. Higher reverse transcriptase activity was detected in the culture fluid of lines G-2 and G-3, although virus from G-1 cells was more leukemogenic. Differences were also found in the virion density and size of the viral genome. RNA from the virions produced by G-2 and G-3 cells sedimented at 75 S in a sucrose gradient; virion RNA from G-1 cells sedmiented at 60 S. However, when subjected to polyacrylamide gel electrophoresis, all three virus strains showed identical RNA subunits with an estimated molecular weight of 2.6 X 10(6). Analysis of virion proteins by slab gel electrophoresis showed differences in envelope protein (gp71) components but not in the major core protein (p30). The properties of these viruses are stable and remain unchanged after passage in 3T3 cells.

Animals↗

Selective loss of unmethylated segments of integrated Ad12 genomes in revertants of the adenovirus type 12-transformed cell line T637.

We have studied the stability of integrated adenovirus type 12 (Ad12) DNA sequences and the relation of foreign DNA persistence to the state of methylation of this DNA. In the Ad12-transformed hamster cell line T637, multiple copies of Ad12 DNA are chromosomally integrated. Some of these integrated viral genomes are rearranged in that internal parts of the viral DNA have become juxtaposed to its left terminus. Fluorescent in situ hybridization analyses demonstrate that the Ad12 DNA in cell line T637 and in some of its revertants is located at one site on one of the hamster chromosomes. Major portions of the integrated viral genomes in cell line T637 have become extensively de novo methylated in specific patterns. Most of the rearranged Ad12 DNA sequences in the T637 genome are un- or hypomethylated. In the morphological revertants of the Ad12-transformed hamster cell line T637, the majority of the integrated Ad12 genomes has been lost. Surprisingly, we have found that the un- or hypomethylated rearranged viral sequences have been selectively lost, in contrast to some of the methylated sequences that are stably retained.

Adenoviruses, Human↗

Two simian virus 40 (SV40)-transformed cell lines from the mouse striatum and mesencephalon presenting astrocytic characters. III. A light and electron microscopic study.

In two preceding papers we described the cloning of two astrocytic cell lines by simian virus 40 (SV40) transformation of embryonic mouse mesencephalon (F7-Mes) and striatum (F12-Str). The characterization of these lines as belonging to the astrocytic lineage is based on pharmacological, immunocytochemical and physiological data. Here we present quantitative and qualitative data on the morphological aspects of these two astrocytic clones observed under light and electron microscopy. We show that the clones present ultrastructural characters reminiscent of the morphology of young astrocytes. On one hand, they are rather similar to primary astrocytes in culture; on the other, they differ both from a clonal fibroblastic cell line (BT2) and from embryonic mouse fibroblasts in primary culture. These astroblastic clones display 4 morphologically different cell populations which we called types I, II, III and IV. Types II and III are very similar and represent the most predominant cells; their morphologies strongly remind of that of astroblasts. Type I corresponds to glioblasts and does not account for more than 15-20% of the total population. Type IV, which is very similar to differentiated velamentous astrocytes, normally represent ca. 5% of the cells. However, when the transformed cells are treated with mitomycin or mitomycin + dibutyryl cyclic AMP (dbcAMP), the proportion of type IV cells increases very much (up to more than 50% of the cells) while types I, II and III become less numerous. Morphological analysis therefore confirms that the two cell lines derived from the SV40 transformation of 14-day-old embryonic mesencephalic and striatal cells belong to the astrocytic lineage. Moreover, it seems that they can differentiate in vitro in cell culture conditions either spontaneously or under the action of pharmacological treatments known to enhance normal astrocyte maturation.

Animals↗

The level of expression of class-I MHC antigens in adenovirus-transformed human cell lines.

The level of expression of the class-I major histocompatibility (MHC) antigen was determined in a series of human embryo cell lines transformed with either adenovirus 12 (Ad 12) early region I (EI) or adenovirus 5 (Ad 5) EI DNA or with combinations of Ad 12 early region IA (EIA) or Ad 2 EIA with activated N-ras DNA. MHC class-I antigen expression was greatly reduced in all Ad 12 transformants, compared to primary cells. Expression was also reduced in the Ad 5 cell lines transformed with EIA and EIB DNA, but levels were near normal in those lines with only EIA DNA present. Amounts of MHC class-I antigen on the cell surface, as determined by RIA and FACS analysis, generally reflected total cellular levels as determined by Western blotting. Expression of beta 2 microglobulin was also much reduced in those cell lines with low levels of MHC class-I antigen. The treatment of primary cells and all the transformants with human gamma-interferon resulted in increased expression of HLA on the cell surface. Infection of primary human cells with Ad 12 or with a series of Ad 12 mutants did not have any effect on the MHC class-I antigens present.

Adenovirus Early Proteins↗

Reconstitution of p53 expression in a nonproducer Ab-MuLV-transformed cell line by transfection of a functional p53 gene.

L12 are Ab-MuLV-transformed cells that express the abl p120 oncogene product but lack the cellularly encoded p53. The functional p53 gene in these cells has been inactivated by the insertion of Moloney virus-like sequences into the first p53 intron. Transfection of L12 cells with a functional p53 gene, contained in a 16 kb Eco RI genomic cloned fragment gave rise to L12-derived cell lines with novel p53 sequences of various sizes and copy number. A high percentage of L12-derived clones efficiently transcribed p53 mRNA and synthesized the p53 protein. Whereas injection of L12 parental cells into syngeneic mice caused the development of local tumors that later regressed, L12-derived clones that expressed p53 caused lethal tumors in syngeneic mice, thus behaving similarly to other Ab-MuLV-transformed p53-producer cell lines. These results suggest that the expression of p53 is essential for tumor cells to exhibit a fully transformed phenotype, manifested in lethal tumors in syngeneic mice.

Abelson murine leukemia virus↗

Conditional responsiveness of a chemically transformed cell line to growth factor stimulated DNA synthesis.

BP3T3, a clonal benzo(a)pyrene-transformed BALB/c-3T3 cell line, is conditionally responsive to growth factor stimulation. Density arrested cell populations deprived of growth factors by pretreatment with 0.5% platelet-poor plasma synthesized DNA both in response to ng/ml concentrations of PDGF, EGF, and somatomedin C, and in response to insulin, plasma, and serum. The above agents acted singly to induce DNA synthesis, but synergism is suggested because a higher percentage of cells were stimulated to enter the S phase when the growth factors were added in combination. Desensitization to growth factors occurred when cultures were pretreated with the high concentration of growth factors present in 10% serum (or plasma). In desensitized cultures none of the above agents, added singly or in combination, stimulated DNA synthesis. This effect appears to be global because pretreatment with one growth factor (e.g., insulin) inhibited the action of another (e.g., PDGF). Cell density appears to play a critical role in regulating DNA synthesis. Unlike nontransformed BALB/c-3T3 cells whose density is regulated by the serum concentration, the density of BP3T3 cells reached a plateau when cultures were grown in a serum (or plasma) concentration of 3% or greater. Such density arrested cultures were growth factor unresponsive; however, the cells rapidly responded to growth factors by synthesizing DNA and replicating when reseeded at a lower cell density. Thus the growth of BP3T3 cells is regulated by both growth factors and cell density.

Animals↗

Comparison of an EBV transformed cell line and an EBV hybridoma cell line producing the same human anti-HBs monoclonal antibody.

A stable human-mouse heterohybridoma secreting human anti-HBs monoclonal antibody in continuous culture for 12 months was generated. It grew faster than the parent EBV transformed lymphoblastoid cell line (LCL) but produced the same level of specific antibody. The LCL was positive for the Epstein-Barr Virus Nuclear Antigen (EBNA), human CD 23 and contained a diploid number of human chromosomes. The heterohybridoma was negative for EBNA, CD 23 and mouse Ly-1 mouse, despite retaining a full complement of diploid mouse chromosomes and a limited number of human chromosomes.

Animals↗

High-frequency changes in transcriptional activity in polyomavirus-transformed cell lines.

We applied the Luria and Delbruck fluctuation test to analyze high-frequency changes in the phenotype of rat cells transformed by a plasmid carrying the polyomavirus middle T (pmt) gene. All of the transformed cell lines analyzed were capable of switching to the normal state with rates ranging from 10(-3) to 10(-2) per cell per generation. Analysis of both middle T antigen and middle T transcripts indicated that the reversion occurred by a mechanism involving a transcriptional block of the pmt locus. Cell lines containing two separate loci reverted with a lower rate, suggesting that phenotypic switching in these cells involved two independent events affecting each locus. The flat revertants mutated to the transformed state with rates in the range of 10(-5) to 5 X 10(-5) per cell per generation. To determine whether changes in pmt expression would affect neighboring sequences, we transfected a hybrid plasmid carrying pmt linked to the neo marker and selected either for morphological transformants or for G418-resistant cells. Although their coordinate regulation was not absolute, both genes were usually subject to the same changes, reflected by loss and reacquisition of transcriptional activity.

Animals↗

Expression of tumor-specific transplantation antigen in cell lines transformed by wild-type of tsA mutant simian virus 40.

The simian virus 40-induced tumor-specific surface antigen(s) (TSSA) and tumor-specific transplantation antigen(s) (TSTA)were detected in cells transformed by wild-type or temperature-sensitive mutant simian virus 40 by an antibody-mediated cytolytic assay for TSSA and an immunization test for TSTA. Cells transformed by tsA mutants, which lose their transformed phenotype when grown at nonpermissive temperatures, nonetheless do express TSSA and TSTA as well as T-antigen at both temperatures.

Animals↗

Virogenic properties of bromodeoxyuridine-sensitive and bromodeoxyuridine-resistant simian virus 40-transformed mouse kidney cells.

When simian virus 40 (SV40)-transformed mouse kidney cells (mKS) were grown in the presence of susceptible indicator cells, SV40 was readily recovered from: (i) 15 transformed cell lines, (ii) transformed cells subcultured 45 times over a 7-month period in medium containing antiviral serum and bromodeoxyuridine (dBU), (iii) 45 of 46 clonal lines isolated in the presence of antiviral serum, (iv) 19 of 19 secondary clones isolated from two clonal lines, and (v) dBU-resistant transformed cell lines. dBU-resistant SV40-transformed mouse kidney cell lines were selected and shown to contain the T antigen and to have normal levels of thymidylate kinase and deoxyribonucleic acid (DNA) polymerase, but to be deficient in thymidine (dT) kinase. Radioautographic and biochemical experiments demonstrated that very little (3)H-dT was incorporated into DNA of dBU-resistant cells during a 6-hr labeling period. After infection of dT kinase-deficient mKS cells with vaccinia virus, high levels of dT kinase were induced. The properties of SV40 recovered from dBU-sensitive and dBU-resistant cells were studied. SV40 recovered from transformed cells was shown to express in CV-1 cells at least six functions characteristic of parental virus: synthesis of capsid antigen, synthesis of T antigen, synthesis of viral DNA, induction of dT kinase, induction of DNA polymerase, and induction of host cell DNA synthesis. In addition, SV40 recovered from the transformed cells induced T antigen, dT kinase, deoxycytidylate deaminase, thymidylate kinase, and DNA polymerase in abortively infected mouse kidney cultures, and the virus was also capable of transforming primary cultures of mouse kidney cells.

Animals↗

A factor from a transformed cell line that affects cell migration.

When a monolayer culture of normal Balb/c3T3 cells is wounded by scraping away part of the cell sheet, the cells do not migrate into the cleared area unless there is serum in the culture medium. By contrast, SV40-transformed Balb/c3T3 cells do migrate into the wound area without serum. A quantitative assay for the migration of Balb/c3T3 cells into wounds is described. This assay is used in the partial purification of a migration factor released into serum-free medium by SV28 cells. SV28 is a line of BHK21/13 hamster cells transformed by SV40 chosen for its malignancy. The most purified fractions have about 1500 times the specific activity of whole calf serum. These fractions have an activity that promotes overgrowth of Balb/c3T3 cells to high density and an activity that prolongs cell survival without serum. The SV28 migration factor is not extractable from the medium of untransformed BHK21/13 cells or from serum. This migration factor might contribute to the malignancy of SV28 cells.

Animals↗

K+ fluxes mediated by Na(+)-K(+)-Cl- cotransport and Na(+)-K(+)-ATPase pumps in renal tubule cell lines transformed by wild-type and temperature-sensitive strains of Simian virus 40.

The relative contributions of Na(+)-K(+)-ATPase pumps and Na(+)-K(+)-Cl- cotransport to total rubidium (Rb+) influx into primary cultures of renal tubule cells (PC.RC) and cells transformed either with the wild-type or a temperature-sensitive mutant of the simian virus 40 (SV40), were measured under various growth conditions. The Na(+)-K(+)-ATPase-mediated component represented 74% and 44-48% of total Rb+ influx into PC.RC and SV40-transformed cells, respectively. Proliferating transformed cells showed substantial ouabain-resistant bumetanide-sensitive (Or-Bs) Rb+ influx (41-45% of total) which indicated the presence of a Na(+)-K(+)-Cl- cotransport. The Or-Bs component of Rb+ influx was greatly reduced when temperature-sensitive transformed renal cells (RC.SVtsA58) grown in Petri dishes or on permeable filters were shifted from the permissive (33 degrees C) to the restrictive temperature (39.5 degrees C) to arrest cell growth. The ouabain-sensitive Rb+ influx mediated by the Na(+)-K(+)-ATPase, the total and amiloride-sensitive Na+ uptakes were not modified following inhibition of cell proliferation. A similar fall in the Or-Bs influx was obtained when renal tubule cells transformed by the wild-type SV40 (RC.SV) were incubated with the K+ channel blocker, tetraethylammonium (TEA) ion, which we had previously shown to arrest cell growth without affecting cell viability (Teulon et al.: J. Cell. Physiol., 151:113-125, 1992). Reinitiation of cell growth by removal of TEA or return to 33 degrees C of the temperature-sensitive cells restored the Or-Bs component of Rb influx. Taken together, these results indicate that the Na(+)-K(+)-Cl- cotransport activity is critically dependent on cell growth conditions.

Animals↗

Analysis of tumor progression by transcriptional profiling of mouse MK16 cell lines transformed with human papillomavirus type 16 E6 and E7 oncogenes and activated H-ras.

A better understanding of the molecular basis of tumor progression and invasion is needed to improve therapy for malignant tumors. Recently, we established a mouse metastatic MK16 model by transduction of secondary kidney cells with human papillomavirus type 16 (HPV16) E6 and E7 oncogenes and human H-ras activated by G12V mutation. In this study, we extended the model to MK16 cell lines derived from lung metastases and compared the oncogenicity of seven cell lines successively isolated from primary tumors or metastases. By observing the formation and growth of subcutaneous tumors and generation of lung metastasis, we showed a gradual increase in oncogenicity of MK16 cell lines. Interestingly, we demonstrated metastatic potential of MK16/A cells with low oncogenic potential in primary tumor development. To detect changes in gene expression associated with increasing oncogenicity of MK16 cell lines, we performed transcriptional profiling with the Atlas Plastic Mouse 5K microarray. We found that a substantial proportion of up-regulated genes encoded ribosomal proteins. Among the down-regulated genes, the highest number (n=10) belonged to a group coding for transcription factors. Expression of two of these, Pou3f2 and Gtl3, was reduced both in cells derived from primary tumors and those isolated from metastases. Furthermore, microarray hybridization suggested that the down-regulation of cyclin-dependent kinase inhibitors p16(Ink4a) and p57(Kip2) and up-regulation of A6 and A10 members of the S100 protein family might play a role in the increase of MK16 oncogenicity.

Animals↗

Establishment and characterization of an Epstein-Barr virus transformed cell line with strong phagocytic activity.

An immunoglobulin M (IgM)-positive cell line, Ms 28, apparently spontaneously transformed by Epstein-Barr virus (EBV) was established from peripheral blood cells of a patient with immature myeloblastic leukemia. It has been characterized according to phenotype, cytochemistry, and membrane antigen pattern. The cell line expresses lymphoid markers like CD 19, CD 22, and CD 30 and synthesizes and secretes IgM. Monocyte markers CD 11c, CD 14, and CD 15 are absent. Neither interleukin-1 (IL-1), nor tumor necrosis factor (TNF-alpha) are produced. But Ms 28 cells show strong phagocytic activity and engulf Latex particles and sheep RBCs (SRBCs) that need not to be opsonized. The phagocytic activity can be inhibited by chloroquine. Both phagocytosis and EBV nuclear-antigen (EBNA) expression can be observed in one and the same cell. Ms 28 cells might be useful to study immunologic activities like antigen processing and presentation.

Antigens, Differentiation↗

A human homolog of the yeast CDC7 gene is overexpressed in some tumors and transformed cell lines.

The Cdc7 protein kinase of Saccharomyces cerevisiae is a critical regulator of several aspects of DNA metabolism and cell cycle progression. We describe the isolation of a human gene encoding a Cdc7 homolog. The Cdc7Hs protein sequence is 27% identical to that of the yeast protein, includes features unique to yeast Cdc7, and contains all conserved catalytic residues of protein kinases. The human sequence also shows significant similarity to the cyclin-dependent kinases, in accordance with evidence that yeast Cdc7 is related to the cdks. CDC7Hs is expressed in many normal tissues, but overexpressed in certain tumor types and all transformed cell lines examined. In some of the tumors tested, CDC7Hs expression correlates with expression of a proliferation marker, the histone H3 gene. In other cases, no such correlation was observed. This suggests that CDC7Hs expression may be associated hyperproliferation in some tumors and neoplastic transformation in others.

Biomarkers↗

A novel MDMX transcript expressed in a variety of transformed cell lines encodes a truncated protein with potent p53 repressive activity.

The MDMX gene product is related to the MDM2 oncoprotein, both of which interact with the p53 tumor suppressor. We have identified a novel transcript of the MDMX gene that is expressed in a variety of cell lines, and in particular, in growing and transformed cells. This transcript is identical to the published sequence yet it has a short internal deletion of 68 base pairs. This deletion produces a shift in the reading frame after codon 114, resulting in the inclusion of a stop codon at amino acid residue 127 (full-length MDMX is 489 residues). This truncated MDMX protein is termed MDMX-S ("short form"), represents only the p53-binding domain, and appears to bind p53 better than full-length MDMX. The MDMX-S protein can be detected in cell extracts and when overexpressed is much more effective than MDMX at inhibiting p53-mediated transcriptional activation and induction of apoptosis. Since MDMX-S lacks the central and carboxyl-terminal regions contained within full-length MDMX, it is likely to play a key role in the regulation of cell proliferation and apoptosis in a way distinct from MDMX.

3T3 Cells↗

Lack of reactivity of sera from Theileria parva-infected and recovered cattle against cell membrane antigens of Theileria parva transformed cell lines.

Sera from Theileria parva infected, recovered and rechallenged cattle were tested in complement-dependent cytotoxicity, membrane immunofluorescence and antibody-dependent cellular cytotoxicity assays for the presence of antibodies against cell membrane antigens of T. parva transformed cell lines. In the complement-dependent antibody-mediated cytotoxicity assay, sera from lethally infected animals were negative. Some recovered cattle showed a positive reaction, but such reactions were also observed when an eland cell line infected with T. taurotragi, and bovine lymphoblastoid cells were used as targets. Reaction was less against Ig-negative peripheral blood lymphocytes. Evidence is presented that these reactions could be evoked by attachment of immune complexes to Fc-receptors. It is concluded that cattle exposed to T. parva infection do not develop antibodies against specific T. parva (or T. parva-induced) cell surface antigens.

Animals↗