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Introduction of cloned human papillomavirus genomes into mouse cells and expression at the RNA level.

The entire DNA genomes of five different human papillomaviruses (HPVs) were cloned into the BamHI site of pBR322 (HPV-1a, HPV-3, HPV-4, and HPV-9) or the EcoRI site of pBR325 (HPV-2), using as starting materials virus preparations isolated from papillomas of individual patients. Under stringent hybridization conditions (Tm-28 degrees), the five cloned HPVs exhibited less than 10% homology with one another. To establish model cell systems that may be useful for the identification of HPV genes and HPV gene products, mouse thymidine kinase negative (tk-) cells were cotransformed to the tk+ phenotype with the herpesvirus thymidine kinase gene and each of the five HPV cloned DNAs (either as intact recombinants or excised HPV DNA without removal of pBR). In most tk+ cell clones, a complex pattern of multiple high molecular weight inserts of HPV DNA were present in high copy number. Most of the HPV DNA sequences in the cotransformed cells were not present as unit-length episomal viral DNA. Analyses of the integration pattern (DNA blot) and RNA expression (RNA blot) of several HPV-1a and HPV-3 transformed cell lines suggest that some copies of the viral genome are integrated in a similar manner in different cell lines leading to the expression of identical viral RNA-containing species. Two of the cell lines transformed by the intact HPV-1a/pBR322 recombinant synthesized substantial amounts of four discrete viral polyadenylated cytoplasmic RNA species of 1.9, 3.2, 3.8, and 4.5 kb. Two cell lines transformed by the intact HPV-3/pBR322 recombinant synthesized 4-5 polyadenylated cytoplasmic viral RNA species ranging from 0.8 to 4.6 kb. The analysis shows that each viral RNA species appears to be a hybrid RNA molecule containing both HPV and pBR322 sequences. Based on these findings and the molecular organization of the HPV-1a genome (O. Danos, M. Katinka, and M. Yaniv (1982). EMBO J. 1, 231-237), it is possible that transcription of each of the HPV-1a RNA species is initiated using the HPV early promoter and terminated in pBR322.

Animals↗

Characterization of human transforming genes from chemically transformed, teratocarcinoma, and pancreatic carcinoma cell lines.

Dominant transforming genes that were transferred to mouse NIH3T3 cells by cellular DNAs prepared from a chemically transformed human cell line (MNNG-HOS), a human teratocarcinoma cell line (PA1), and a human pancreatic carcinoma cell line (A1165) were characterized (a) analyzing the repetitive human DNA sequences that were associated with the transforming gene and (b) determining their relationship to the oncogenes of the Harvey (rasH) and Kirsten (rasK) sarcoma viruses and to the human neuroblastoma transforming gene (rasN). The results show that the transforming gene activated in the teratocarcinoma cell line is identical to the neuroblastoma transforming gene and that the transforming gene of the pancreatic carcinoma cell line is a human homologue of rasK. In contrast, the transforming gene activated in the chemically transformed human cell line showed no detectable homology to rasK, rasH, and rasN.

9,10-Dimethyl-1,2-benzanthracene↗

Mapping of the viral mRNA encoding a super-T antigen of 115,000 daltons expressed in simian virus 40-transformed rat cell lines.

Simian virus 40-transformed V11 F1 clone 1 subclone 7 rat cells produced a considerable amount of an elongated form of large-T antigen with an Mr of 115,000 (115K super-T antigen), but these cells did not produce detectable traces of normal-sized large-T antigen (86,000 daltons) (P. May, M. Kress, M. Lange, and E. May, Cold Spring Harbor Symp. Quant. Biol. 44:189-200, 1980). First, a comparison of the tryptic peptide fingerprints of 115K super-T and large-T antigens suggested that 115K super-T antigen is simian virus 40 coded and contains a duplication of amino acid sequences of large-T antigen. Second, from S1 mapping analysis of 115K super-T mRNA, performed with various restriction fragments of simian virus 40 DNA, it was concluded that super-T mRNA is a form of large-T mRNA containing a tandem duplication of the sequence extending from approximately 0.46 to 0.35 map unit. The duplicated sequence corresponded to that region of the simian virus 40 genome in which 12 of 13 tsA mutation sites are clustered (C. J. Lai and D. Nathans, Virology 66:70-81, 1975).

Animals↗

Characterization of a large genomic size Moloney murine sarcoma virus produced by a transformed rat cell line.

A rat cell line (78A1) transformed by the Moloney murine sarcoma virus-Moloney murine leukaemia virus (Mo-MuSV-MuLV) complex was found to produce a sarcoma virus different from the isolates previously described. Analysis of intracellular RNA of the 78A1 cell line by electrophoresis on agarose gel, and hybridization with DNA probes specific to M1-Mo-MuSV and v-mosMo sequences revealed a size of 6.7 kilobases (kb) for the RNA of this sarcoma virus. This genome is larger than those of m1, m3, HT1 and 124 isolates and slightly smaller than the myeloproliferative sarcoma virus genome (7.0 kb).

Animals↗

[Studies on cell surface fibronectin of transformed Syrian hamster lung cells induced by butyric acid].

In this paper, Fn was analysed qualitatively and quantitatively in three Syrian hamster cell lines, ie, nontransformed baby hamster lung fibroblasts cell line (BHL), a transformed cell line (BHLB4) and a butyric acid-induced phenotypically reversed cell line (ButB4) respectively. Fn was visualized on cell surface by means of indirect immunofluorescence technique. Immunofluorescence of Fn on the surface of BHL was bright with a stripe-like distribution, while that on the surface of BHLB4 was very dim or dispersed. On ButB4 cell surface, the intensity and distribution of immunofluorescence was similar to that on BHLB4 cells. Fn was isolated by affinity chromatography from the cell surface of the three cell lines. Its molecular weight was 250 kDa on SDS-polyacrylamide electrophoresis. The quantity of Fn isolated from surface of ButB4 was a bit lower than that from BHL, but was much higher than that from BHLB4. The result offers us a useful criterion for transformation and reverse transformation.

Animals↗

Expression of P2 receptors in human B cells and Epstein-Barr virus-transformed lymphoblastoid cell lines.

BACKGROUND: Epstein-Barr virus (EBV) infection immortalizes primary B cells in vitro and generates lymphoblastoid cell lines (LCLs), which are used for several purposes in immunological and genetic studies. Purinergic receptors, consisting of P2X and P2Y, are activated by extracellular nucleotides in most tissues and exert various physiological effects. In B cells, especially EBV-induced LCLs, their expression and function have not been well studied. We investigated the expression of P2 receptors on primary human B cells and LCLs using the quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) method for revealing the gene expression profile of the P2 receptor subtypes and their changes during transformation. RESULTS: The mRNA transcripts of most P2 receptors were detected in primary B cells; the expression of P2X3 and P2X7 receptors was the lowest of all the P2 receptors. By contrast, LCLs expressed several dominant P2 receptors--P2X4, P2X5, and P2Y11--in amounts similar to those seen in B cells infected with EBV for 2 weeks. The amount of most P2 subtypes in LCLs or EBV-infected B cells was lower than in normal B cells. However, the amount of P2X7 receptor expressed in LCLs was higher. Protein expression was studied using Western blotting to confirm the mRNA findings for P2X1, P2X4, P2X7, P2Y1, and P2Y11 receptors. ATP increased the intracellular free Ca2+ concentration ([Ca2+]i) by enhancing the Ca2+ influx in both B cells and LCLs in a dose-dependent manner. CONCLUSION: These findings describe P2 receptor expression profiles and the effects of purinergic stimuli on B cells and suggest some plasticity in the expression of the P2 receptor phenotype. This may help explain the nature and effect of P2 receptors on B cells and their role in altering the characteristics of LCLs.

Adenosine Triphosphate↗

Conditioned medium from a clonal Rous sarcoma virus transformed cerebellar cell line induces process extension in glial lines.

A Rous Sarcoma virus transformed cerebellar cell line, BC6, secretes a factor which causes clonal glial cell lines to rapidly (1 h) extend processes. The factor shows a degree of specificity since only 3 out of 10 lines which exhibit either glial or combined glial and neuronal properties respond. The active factor appears to be a soluble protein since it remains in the supernatant after centrifugation at 100,000 g for 2 h and is trypsin-sensitive. When conditioned medium is fractionated on a Sephadex G-100 column, activity elutes in and just behind the void volume. By several criteria the factor is distinct from glia maturation factor.

Animals↗

Comparative study of antiseptic toxicity on basal keratinocytes, transformed human keratinocytes and fibroblasts.

The cytotoxic effects of a range of antiseptic agents were examined on cultured human fibroblasts and basal keratinocytes and compared to those on a transformed keratinocyte line (SVK 14 cells). Cells were exposed to chlorhexidine, hydrogen peroxide and sodium hypochlorite for 15 min and cell viability was assessed 24 h later with a colorimetric assay which utilizes the tetrazolium salt 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT). At concentrations recommended for wound cleansing all agents produced 100% killing of all cell types. The results show that fibroblasts and keratinocytes, cells which are fundamental to the wound healing process are equally sensitive to the effects of the antiseptic agents tested, and are highly susceptible to the effects of free-chlorine containing agents. These observations are of particular importance to the use of cultured keratinocytes (culture grafts) to enhance wound healing; the application of antiseptics to such wounds is contraindicated. All three cell types tested showed similar susceptibilities to the agents tested. These findings suggest that the transformed cell line, which has the advantage of immortality and ready availability, can replace fibroblasts and keratinocytes in studies designed to investigate the adverse effects of antiseptic agents in vitro. Comparison of the ED50 concentration for each agent on all cell types to the standard use concentration produced a ranking order of toxicity which showed chlorhexidine to be the least toxic agent and sodium hypochlorite the most.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Line, Transformed↗

Heparan sulfates of mouse cells. Analysis of parent and transformed 3T3 cell lines.

Heparan sulfate from the surface of a variety of mouse cells at different cell densities was examined by ion-exchange chromatography. The results of this analysis show that: (1) The heparan sulfate from new isolates of Swiss 3T3 cells transformed by SV40 virus (a DNA tumor virus) elutes from DEAE-cellulose at a lower ionic strength than that from the parent cell type. This finding confirms our earlier observation with an established SV40-transformed cell line (Underhill and Keller, '75) and eliminates the possibility that this change is caused by extended passage in culture. (2) For both parent and transformed 3T3 cells, the heparan sulfates from low and high density cultures were the same as judged by chromatography on DEAE-cellulose. This result demonstrates that the transformation-dependent change which we have observed is independent of cell density. (3) The heparan sulfate from Balb/c 3T3 cells transformed with Kirsten murine sarcoma virus (an RNA tumor virus) elutes from DEAE-cellulose prior to that from parent Balb/c 3T3 cells. This result extends the transformation dependent change in heparan sulfate to the Balb/c 3T3 cell line and to cells transformed with an RNA virus.

Cell Count↗

Nucleotide sequence analysis of the linked left and right hand terminal regions of adenovirus type 5 DNA present in the transformed rat cell line 5RK20.

A peculiar phenomenon is observed in several adenovirus type 2 or 5 (Ad2 or Ad5) transformed cell lines: the right hand and left hand terminal regions of the viral genome present in the viral DNA insertions of these cell lines are found to be linked together. A large part of the viral DNA insertion present in the Ad5 transformed rat cell line 5RK20 has been cloned in the lambda vector Charon21A, including the segment containing the linked terminal regions. Sequence analysis of the linkage region showed a perfect homology with the Ad5 DNA sequence and a direct linkage of basepair (bp) 63 of the left hand end of the viral genome to bp 108 of the right hand end. No cellular or rearranged viral sequences were present. Our findings suggest that the joining of viral sequences into the cellular genome.

Adenoviruses, Human↗

Two polypeptide changes associated with butyric acid resistance and the neoplastic state of Syrian hamster cells.

Seven differences in the polypeptide species of parental Syrian hamster embryo cells and cells of the highly tumorigenic derivative cell line BP6T were identified previously by employing the technique of two-dimensional polyacrylamide gel electrophoresis (Leavitt, J. and Moyzis, R. (1978) J. Biol. Chem. 253, 2497-2500). To determine which of these polypeptide changes are correlated with expression of the neoplastic state this work was extended to the comparative examination of nine established neoplastic cell lines which resulted from independent transformation events catalyzed by chemical carcinogen treatment, virus infection, or an unknown spontaneous event. Although no perfect correlation with a specific polypeptide change was found, two polypeptide changes, occurring independently or simultaneously, appear to be consistently associated with expression of neoplasticity. One polypeptide species, designated tau, having an isoelectric point of 4.6 and a molecular weight of 60 000 was lost or physically altered in all but one of these transformed cell lines; a second polypeptide species designated nu having an isoelectric point 5.5 and a molecular weight of 42 000 appeared in highly tumorigenic chemically transformed cell lines and in two virally transformed cell lines. A butyric acid supplement, used as a selective agent for butyric acid resistant cells, was employed to identify and isolate in a single step nascent neoplastic clonal lines transformed by ethylmethanesulfonate. These cell lines exhibited alterations either in tau or nu. The changes observed in tau are consistent with those expected to result from a somatic mutation event in the structural gene coding for tau; however, the alterations in tau could also be governed by a post-translational process. These findings suggest that alterations in expression of at least two major polypeptide species, tau and nu, are closely associated with primary steps in the neoplastic transformation process of Syrian hamster cells irrespective of the nature of the transforming agent.

Animals↗

Structure of viral DNA in a rat cell line, GY1, transformed by Ad12 HindIII fragment-G.

The cell line GY1, established by transformation of a rat cell line 3Y1 with the Ad12 HindIII fragment-G (leftmost 6.8%, nucleotide 1 to 2322), contains more than 100 viral copies per haploid genome. The viral DNAs in this cell line were cloned into a phage vector, lambda gtWES lambda B, and recloned into pBR322 with their flanking cellular DNAs. Independently isolated 39 clones were analyzed by restriction enzyme cleavage and Southern blot hybridization experiment and divided into 11 classes. Some of classes contained multiple identical clones, at maximum 16 clones. It may be interpreted that amplification of some of the recombined sequences had occurred after the multiple integrations of transfected DNAs within cells. Using five clones from different classes the sequences of recombination sites were determined. Viral DNAs deleted with varying degrees at both ends were flanked by quite different cellular sequences in different clones and no common sequences were revealed around viral-cellular junctions. Tandemly repeated viral DNAs were found in one of the clones to be integrated in a head to tail manner into cellular DNA. The linkage of these two viral DNAs had occurred at the site where parental viral DNAs shared 2 bp. Palindrome structures could be constructed around viral-cellular and viral-viral junction sites and around the regions of parental viral DNAs corresponding to the junction sites in all of the cases investigated.

Adenoviridae↗

The purification of an acid- and heat-labile transforming growth factor from an avian sarcoma virus-transformed rat cell line.

A new class of transforming growth factor (TGF), with chemical characteristics differing from previously reported TGFs, was isolated and purified from an avian sarcoma virus-transformed rat cell line, 77N1 . Purification steps were simple and consisted of ion-exchange chromatography on diethylaminoethyl (DEAE)-Sephacel, ammonium sulfate precipitation, Chromatofocusing, and DEAE-Sephadex A-25 chromatography. The purified TGF is a heat- and acid-labile protein with a molecular mass of 12,000 daltons and isoelectric point of 5.2-5.4. Because of the acid lability of this TGF, purification was carried out at neutral pH. The TGF induced DNA synthesis in growth-arrested BALB 3T3 cells and promoted anchorage-independent growth of nontransformed BALB 3T3 cells in soft agar; the latter activity is specific for the peptide growth factors, called TGFs, but it did not compete with epidermal growth factor (EGF) for binding to the EGF membrane receptors. The TGF activity was not potentiated by EGF. The purified preparation of the TGF stimulated BALB 3T3 cells to grow progressively in soft agar at a dose of 20 ng/ml.

Amino Acids↗

Regulation of expression of T cell gamma chain, L3T4 and Ly-2 messages in Abelson/Moloney virus-transformed T cell lines.

Recent results have suggested that T cells may exist in two distinct pathways, one expressing alpha and beta chain of the T cell receptor genes with either or both of the cell surface markers CD4 and CD8, while the other is negative for these cell surface markers and expresses the T cell-specific gamma chain genes. The relationship between these two pathways is not known. In this study, we have examined a series of either Abelson virus or Moloney virus-derived T cell lines for their expression of these T cell receptor and cell surface marker genes. Results indicate that the Abelson T cell lines do not express the cell surface markers CD4 and CD8, but express relatively high levels of gamma chain transcripts. After culture of these cell lines with the phorbol ester phorbol myristate acetate and interleukin 2, a down-regulation of these gamma chain transcripts can be observed. More interestingly, we found that the Moloney virus-derived T cell lines, which express the cell surface markers CD4 and/CD8, contain high levels of alpha and beta chain T cell receptor transcripts but little or no gamma transcripts even though they have rearranged these latter genes. The gamma transcripts, however, can be induced to high levels after culture with phorbol myristate acetate and interleukin 2. In the process, the cell surface markers CD4 and CD8 and their transcripts were dramatically down-regulated resulting in cells with high levels of gamma chain transcripts and a CD4-CD8- phenotype. The regulation of expression of these genes is reversible. Taken together, these results indicate that the T cell receptor gamma chain genes and those of the cell surface markers CD4 CD8 can be regulated in vitro by external factors and it opens up the possibility of studying the regulatory sequences associated with these genes.

Abelson murine leukemia virus↗

Biochemical diagnosis of Hunter syndrome on Epstein-Barr virus-transformed lymphoblastoid cell lines.

Long-term lymphoblastoid cell lines have been established from a patient with Hunter syndrome, from his mother, an obligate heterozygote, and from several control individuals. Biochemical analyses show that lymphoblastoid cells represent a suitable biological material for the diagnosis of hemizygous, affected males and for heterozygous females: clonal analysis demonstrates the mosaicism predicted by the Lyon hypothesis.

Cell Line, Transformed↗

Cyclic-AMP-induced c-fos expression and its relevance to differentiation of a transformed mast cell line.

The effects of cyclic AMP on expression of the oncogenes c-myc, c-myb and c-fos in murine P815 mastocytoma cells were examined in relation to growth and differentiation. Induction of differentiation in mastocytoma cells by cyclic AMP was accompanied by a rapid increase in c-fos expression. Cyclic AMP induced stable expression of c-fos mRNA by increasing c-fos transcription 4-5-fold and slightly increasing the stability of c-fos mRNA. However, a high level of c-fos expression was not essential for differentiation of two temperature sensitive-mutant P815 cell lines, as c-fos mRNA did not increase in differentiating temperature-sensitive P815 cells. These results do not support an essential role for c-fos expression in the differentiation of mast cells. Although c-myc expression was lower after growth arrest by cyclic AMP, this decrease did not correlate with growth inhibition by cyclic AMP, since c-myc expression decreased only after cells had started to arrest in G1 phase.

Animals↗

Antisense inhibition of methylenetetrahydrofolate reductase reduces survival of methionine-dependent tumour lines.

Transformed cells have been documented to be methionine-dependent, suggesting that inhibition of methionine synthesis might be useful for cancer therapy. Methylenetetrahydrofolate reductase synthesises 5-methyltetrahydrofolate, the methyl donor utilised in methionine synthesis from homocysteine by vitamin B(12)-dependent methionine synthase. We hypothesised that methylenetetrahydrofolate reductase inhibition would affect cell viability through decreased methionine synthesis. Using medium lacking methionine, but containing homocysteine and vitamin B(12) (M-H+), we found that nontransformed human fibroblasts could maintain growth. In contrast, four transformed cell lines (one colon carcinoma, two neuroblastoma and one breast carcinoma) increased proliferation only slightly in the M-H+ medium. To downregulate methylenetetrahydrofolate reductase expression, two phosphorothioate antisense oligonucleotides, EX5 and 677T, were used to target methylenetetrahydrofolate reductase in the colon carcinoma line SW620; 400 nM of each antisense oligonucleotide decreased cell survival by approximately 80% (P<0.01) and 70% (P<0.0001), respectively, compared to cell survival after the respective control mismatched oligonucleotide. Western blotting and enzyme assays confirmed that methylenetetrahydrofolate reductase expression was decreased. Two neuroblastoma and two breast carcinoma lines also demonstrated decreased survival following EX5 treatment whereas nontransformed human fibroblasts were not affected. This study suggests that methylenetetrahydrofolate reductase may be required for tumour cell survival and that methylenetetrahydrofolate reductase inhibition should be considered for anti-tumour therapy.

Antineoplastic Agents↗