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Establishment and characterization of rat pancreatic beta cell lines transformed by simian virus 40.

Rat pancreatic beta cells were transformed by simian virus 40 (SV40). The established beta cell lines expressed tumor antigen specific to SV40 and retained the ability to produce immunoreactive insulin (IRI) even at a high passage level. One of 12 transformed beta cell lines, SV-PB1205, was further investigated in vitro and in vivo. Firstly, effects of drugs on replication of the pancreatic beta cells were examined in in vitro experiments. Various drugs increased the uptake of 3H-thymidine into the cells. Those included D-glucose, tetragastrin and secretin. However, such effect was not observed for glucagon and growth hormone. Secondly, the SV40-transformed pancreatic beta cells were transplanted into diabetic rats. This produced such improvement of plasma glucose level at least for 2 weeks. The Significance of those experiments was discussed.

Animals↗

The lymphocyte subpopulations involved in cytotoxicity generated by co-culture with autologous and allogeneic Epstein-Barr virus-transformed cell line.

When peripheral blood lymphocytes from healthy adults are cultured with autologous (auto) or allogeneic (allo) Epstein-Barr virus-transformed cells (LCL), non-specific killer activity against NK-sensitive K562 and NK-resistant Raji, as well as specific killer activity against LCL is enhanced or generated. We analyzed the cell subsets possessing such cytotoxicity using monoclonal antibodies (MoAb). OKT3, a MoAb to T cell receptor-associated molecule, added in the effector phase suppressed the killer activity against LCL but not against Raji or K562. In contrast, OKT3 added in the induction phase abolished the generation of cytotoxicity against all targets. The addition of OKT8 in either the effector or induction phase inhibited anti-LCL killing induced by stimulation with alloLCL. This suggests that CD8 is required for recognition of alloLCL. The treatment of effector cells with MoAb and complement(C) revealed that killers against LCL were OKT8+ Leu11-, and those against K562 were OKT8- Leu11+. When auto-LCL were used as stimulator, removal of OKT4+ cells in the induction phase diminished the cytotoxicity against all targets, indicating that CD4+ T cells recognize autoLCL. Elimination of CD8+ cells from responder did not decrease the generation of killer activity. Further experiments suggested that this was caused by the coexistence of CD4+ killer cells or by the increase of residual CD8+ effector cells.

Adult↗

A set of stage-dependent embryonic antigens expressed in cell cultures of BALB/c mouse embryos and in transformed cell lines.

A rabbit antiserum (A2) directed against the detergent-solubilized fraction of the simian virus 40-transformed mouse embryo fibroblast cell line VLM detects common antigens in primary cell cultures from BALB/c mouse embryos and in transformed cell lines from various species. Positively reacting cell cultures show a set of polypeptides with molecular weight species p86, p74, p68, p46, p42, p40, and p35. As tested by Western blotting procedures, all immunoprecipitated proteins carry immunologically reactive determinants. By analysis with two-dimensional gel electrophoresis, all precipitated polypeptides show charge heterogeneities. Concerning the two major members of the protein set, p40 consists of at least four subspecies with isoelectric points in the range of pH 6.2-6.8, whereas p35 is composed of two subspecies focusing between pH 6.4 and pH 7.2. By comparison of the two-dimensional patterns of p35 of various transformed cell lines, a basic (pH 6.6-7.2) and an acidic (6.4-6.6) charge type of p35 could be observed. Comparative analyses of primary cell cultures from 12-16-day mouse embryos show the immunoprecipitated set of polypeptides only in the 16-day embryo cell cultures. After six further propagations, these cells express the immunoreactive proteins as strongly as the primary cell cultures. In embryonic cell cultures of day 14 of gestation the expression of this set of antigens is induced only when cells are propagated at least six times. Under identical conditions these proteins could not be induced in cell cultures of 18-day-old mouse embryos. None of the polypeptides could be immunoprecipitated from primary mouse kidney cell cultures of 12-day-old mice even when the cultures were propagated at least 15 times. This set of polypeptides is also present in simian virus 40-transformed cells of hamster, rat, monkey, and human origin. These findings suggest that in simian virus 40-transformed mouse cells, in addition to p53, the synthesis of other embryonic antigens is reactivated. The presence of the described set of polypeptides in polyoma virus-transformed cells of rat and mouse origin and in cell lines derived from malignant human tumors might indicate common functions in metabolic patterns of transformed cells.

Animals↗

Human papillomavirus (HPV) type 18 E7 protein is a short-lived steroid-inducible phosphoprotein in HPV-transformed cell lines.

We used a capture ELISA to quantify the E7 protein of human papillomavirus type 18 (HPV-18). In HeLa cells, which express low levels of immunoreactive E7 protein (iE7), iE7 had a mean half-life of 13.5 min. In HPV-18 E7 recombinant baculovirus (E7rec BV)-infected Sf21 cells, which express higher levels of E7, the half-life of iE7 was much longer (90 min and > 24 h, with two different E7rec BVs). For two transformed human cervical cell lines expressing HPV-18 E7, exposure of the cells to hydrocortisone resulted in a twofold increase in steady-state levels of the E7 protein: no similar effect was observed with progesterone, oestrogen or testosterone. The half-life of iE7 was unaltered by hydrocortisone or progesterone exposure. An immunoassay which distinguished Ser33-phosphorylated E7 from E7 not phosphorylated at this residue (Ser33dephospho-E7), showed that in HeLa and Sf21 cells the majority of E7 was phosphorylated: the half-life of both species of E7 was similar in HeLa cells, but the half-life of Ser33dephospho-E7 was much shorter (90 min) in Sf21 cells than that of Ser33phospho-E7 (> 24 h). A HeLa-fibroblast fusion cell line with tumorigenic potential (CGL-1) had a similar ratio of dephospho-E7 to total E7 (0.06), as a similar fusion cell line (CGL-4) with no tumorigenic potential (0.03). We conclude that E7 is a labile phosphoprotein, and that the expression and steady-state level of the E7 protein in eukaryotic cells may be influenced by the hormonal environment of the cells.

Amino Acid Sequence↗

Histocompatible miniature, boar model: selection of transformed cell lines of B and T lineages producing retrovirus.

A lymphoblastoid cell line (B1) was isolated in culture following a brief exposure to 5-azacytidine from peripheral-blood mononuclear cells of a boar previously injected with cells (Shimozuma) producing porcine retrovirus (Tsukuba-1) and suffering a severe non-neoplastic syndrome at autopsy. B1 cell line and 5 of its sublines were propagated for more than 100 generations, retaining doubling times comprised between 16.8 and 27.5 hr and growing readily in agarose or agar (plating efficiency: 5 to 50%). Karyotype analyses showed that 4 sublines were nearly diploid, except for cells of L14, which displayed a monosomy affecting chromosome 18 pair. Two sublines (L35 and L45) were considered as being of T-cell lineage, since MSA, antigen was observed on the surface of approximately 30% of cells. Three sublines (L23, L14 and L52) were considered of B-cell lineage, since membrane immunoglobulins were observed on the cell surface. In addition, sublines L23 and L52 were actively secreting immunoglobulin of mu isotype. Retrovirus particles were evidenced in gradient-purified preparation of 200-fold-concentrated cell culture supernatants of the B1 cell line, L14, L35 and L52 sublines, using both a reverse transcriptase activity assay and electron microscopic observation. These cell lines can be used to select for porcine retrovirus variants with transforming potential for lymphocytes of B and T lineages.

Animals↗

Identification of conserved and variant epitopes of human immunodeficiency virus type 1 (HIV-1) gp120 by human monoclonal antibodies produced by EBV-transformed cell lines.

Using Epstein-Barr virus (EBV) transformation of B cells isolated from peripheral blood of two asymptomatic human immunodeficiency virus type 1-(HIV-1) infected subjects, we have produced four IgG1 human monoclonal antibodies (HMAbs) that bind to HIV-1 gp120, as determined by Western blot analysis. Two of these HMAbs, designated N70-1.5e and N70-2.3a, react with epitopes of gp120 expressed by all strains tested thus far, and therefore, appear to identify conserved epitopes. The other two HMAbs, K24-3b and N70-1.9b, identify variant epitopes; K24-3b binds to an epitope which is absent from two strains but heterogeneously expressed in eight other strains; N70-1.9b binds to an epitope that is found in relatively few strains. We also describe a novel immunoassay in which viral glycoproteins, produced by HIV-1-infected cells grown in serum-free medium, are affinity immobilized in Concanavalin A-coated wells of enzyme-linked immunosorbent assay (ELISA) plates. This method greatly facilitates the preparation of solid-phase HIV envelope glycoproteins from multiple virus strains and screening immunoassays based on this method are highly sensitive and effective in detecting antibodies to gp120.

Acquired Immunodeficiency Syndrome↗

Genetic alteration of chromosome 8 is a common feature of human mammary epithelial cell lines transformed in vitro with benzo[a]pyrene.

While some epidemiological risk factors for breast cancer have been identified, the environmental factors responsible for transformation of mammary epithelial cells are not clear. We have exposed the spontaneously immortalized human mammary epithelial cell line MCF-10A to benzo[a]pyrene and selected transformed clones based on a loss of contact inhibition and anchorage-dependent growth. Cytogenetic studies showed that each of the transformed sublines possess an isochromosome 8q aberration. The c-Myc proto-oncogene, which is positioned at 8q24, was analyzed for changes in expression. Both c-Myc mRNA and protein levels were increased in the transformed clones relative to the parental cells. The transformed clones were not able to grow as tumors in vivo when injected into nude or SCID mice. To determine whether the involvement of chromosome 8 in BP-induced mutagenesis was a reproducible event, transformed clones were selected from three additional independently treated sets of BP-exposed MCF-10A cultures and analyzed by spectral karyotyping (SKY). These transformed sublines also harbored the isochromosome 8q abnormality. Data from this model show that benzo[a]pyrene, a ubiquitous procarcinogen, can induce selectable morphologic changes in a human mammary epithelial cell line, and that these transformed cells possess chromosomal aberrations frequently found in human breast tumors.

Animals↗

Interferon production by Theileria annulata-transformed cell lines is restricted to the beta family.

Theileria are tick-transmitted protozoans causing often fatal diseases in ruminants. Theileria sporozoites immortalize and transform host cells of haematopoietic origin. Transformation is associated with profound functional alterations. For example, bovine cells infected by Theileria annulata or T. parva. constitutively produce interferon (IFN). In this study, the type and family of IFN produced by a panel of T. annulata-transformed cell lines and a T. parva-transformed cell line was investigated, using molecular probes specific for the members of the IFN-alpha, IFN-beta, IFN-gamma and IFN-omega family. T. parva-transformed cells produced IFN-gamma exclusively, whereas T. annulata-infected cells expressed type I IFN only. Analysis of mRNA expression showed that this type I IFN was confined to IFN-beta, regardless of the cellular origin of the transformed cells. When cells were exposed to double-stranded RNA (poly (I:C)) which induces IFN production in other systems, a 10-5,000 fold increase in IFN activity was noted. The amounts of IFN-beta mRNA were increased, but mRNA coding for IFN-alpha, IFN-omega or IFN-gamma was not detected. In contrast, primary macrophages, from which many of the tested lines were derived, expressed IFN-alpha, IFN-beta and IFN-omega mRNA to similar degrees when stimulated by LPS or poly (I:C). Thus, T. annulata appears to constitutively turn on IFN-beta gene transcription while silencing the genes coding for IFN-alpha and IFN-omega.

Animals↗

Elevated levels of eukaryotic translation initiation factor eIF-4E, mRNA in a broad spectrum of transformed cell lines.

Translation initiation factor eIF-4E, which binds to the 5' cap structure of eukaryotic mRNAs, is believed to play an important role in the control of cell growth. Over-expression of eIF-4E in fibroblasts results in their malignant transformation. However, no information on eIF-4E expression in established transformed cell lines has been available. We report here that a variety of tumor cell lines, chemically, virally and oncogenically transformed, exhibit elevated levels of eIF-4E mRNA expression as compared to their normal counterparts. Overexpression of eIF-4E, which is normally rate-limiting in protein synthesis, may stimulate the translation of regulatory and oncogenic proteins involved in transformation.

Animals↗

The use of EBV-transformed cell lines of breast cancer patients to measure chromosomal radiosensitivity.

To investigate the chromosomal radiosensitivity of lymphocytes in cancer patients the micronucleus (MN) assay is often used and performed on freshly drawn peripheral blood lymphocytes. The use of Epstein-Barr virus (EBV)-transformed lymphoblastoid cell lines may have a lot of advantages (e.g. large pool of cells) compared with fresh blood samples. In this study we have investigated whether the response of EBV-transformed lymphoblastoid cell lines to irradiation in the G1/S/G2 phases of the cell cycle is the same as in concordant whole blood cultures where primary lymphocytes were irradiated in the G0 phase of the cell cycle. For this study the MN assay (2 Gy) was performed on EBV-transformed cell lines of breast cancer patients and a group of healthy women. Those breast cancer patients were selected who showed an elevated chromosomal radiosensitivity in fresh blood samples in a previous study. The results demonstrated that the enhanced chromosomal radiosensitivity observed in fresh blood cultures of breast cancer patients is not present in EBV-transformed cell lines derived from the same blood samples. Therefore, care must be taken when EBV cell lines are used to assess chromosomal radiosensitivity in breast cancer patients.

Breast Neoplasms↗

Tyrosyl phosphorylation and DNA binding activity of signal transducers and activators of transcription (STAT) proteins in hematopoietic cell lines transformed by Bcr/Abl.

Bcr/Abl is a chimeric oncogene that can cause both acute and chronic human leukemias. Bcr/Abl-encoded proteins exhibit elevated kinase activity compared to c-Abl, but the mechanisms of transformation are largely unknown. Some of the biological effects of Bcr/Abl overlap with those of hematopoietic cytokines, particularly interleukin 3 (IL-3). Such effects include mitogenesis, enhanced survival, and enhanced basophilic differentiation. Therefore, it has been suggested that p210Bcr/Abl and the IL-3 receptor may activate some common signal transduction pathways. An important pathway for IL-3 signaling involves activation of the Janus family kinases (JAKs) and subsequent tyrosyl phosphorylation of STAT proteins (signal transducers and activators of transcription). This pathway directly links growth factor receptors to gene transcription. We analyzed JAK activation, STAT protein phosphorylation, and the formation of specific DNA-binding complexes containing STAT proteins, in a series of leukemia cell lines transformed by Bcr/Abl or other oncogenes. We also examined these events in cell lines transformed by a temperature sensitive (ts) mutant of Bcr/Abl, where the kinase activity of Abl could be regulated. STAT1 and STAT5 were found to be constitutively phosphorylated in 32D, Ba/F3, and TF-1 cells transformed by Bcr/Abl, but not in the untransformed parental cell lines in the absence of IL-3. Phosphorylation of STAT1 and STAT5 was also observed in the human leukemia cell lines K562 and BV173, which express the Bcr/Abl oncogene, but not in several Bcr/Abl-negative leukemia cell lines. Phosphorylation of STAT1 and STAT5 was directly due to the tyrosine kinase activity of Bcr/Abl since it could be activated or deactivated by temperature shifting of cells expressing the Bcr/Abl ts mutant. DNA-STAT complexes were detected in all Bcr/Abl-transformed cell lines and they were supershifted by antibodies against STAT1 and STAT5. DNA-STAT complexes in 32Dp210Bcr/Abl cells were similar, but not identical, to those formed after IL-3 stimulation. It is interesting to note that JAK kinases (JAK1, JAK2, JAK3, and Tyk2) were not consistently activated in Bcr/Abl-positive cells. These data suggest that STATs can be activated directly by Bcr/Abl, possibly bypassing JAK family kinase activation. Overall, our results suggest a novel mechanism that could contribute to some of the major biological effects of Bcr/Abl transformation.

Base Sequence↗