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F Cuzin

Publications and source records attributed to F Cuzin.

At least 73 records · Page 4Linked to original sources

Salt-stable binding of the large T protein to DNA in polyoma virus chromatin.

Nucleoprotein complexes extracted from the nuclei of mouse cells lytically infected with polyoma virus contain an ATPase activity which appears to correspond to that of the viral large T protein, as it exhibits the same characteristic properties; in particular, the activity is extensively inhibited by polyclonal antibodies from animals bearing polyoma tumors (anti-T antigen antibodies) and by monoclonal antibodies against large T. Significant amounts of DNA were immunoprecipitated by adding these antibodies to the nucleoprotein complex, suggesting that the protein is tightly bound to DNA in the viral chromatin. Since one of the monoclonal antibodies quantitatively immunoprecipitated the pulse-labeled replicative intermediates, we conclude that some large T protein remains physically associated with the DNA throughout its replication cycle. After exposure to salt concentrations higher than 1 M KCl, about half of the large T-specific ATPase activity was still observed to co-sediment with 21S form I viral DNA. The observations that the sedimentation coefficient of the salt-stable complexes was shifted to 16S after a limited endonucleolytic digestion, and that both the viral DNA and the ATPase activity were co-precipitated in the presence of polyethylene glycol at high ionic strength, further demonstrated that the protein is engaged in an unusually stable complex with DNA in the viral chromatin.

Adenosine Triphosphatases↗

Plasmidial maintenance in rodent fibroblasts of a BPV1-pBR322 shuttle vector without immediately apparent oncogenic transformation of the recipient cells.

A recombinant plasmid was constructed (pV69) which comprises a subgenomic fragment of bovine papilloma virus type 1 (BPV1) DNA, part of plasmid pBR322 DNA and a drug resistance gene expressed in both mammalian fibroblasts and Escherichia coli. This gene (vv2) is a modified form of the bacterial neomycin resistance gene (neo) linked to the herpes simplex virus thymidine kinase (tk) promoter (plasmid pAG60), to which the original bacterial neo promoter from transposon Tn5 was added back, upstream of the eukaryotic promoter. It induced kanamycin resistance in E. coli, as well as resistance to the drug G418 in rat and mouse fibroblasts. Its expression in FR3T3 rat cells was enhanced as compared with the original tk-neo construction. After transfer of plasmid pV69 into C127 mouse cells or FR3T3 rat cells, the number of resistant colonies selected in medium containing G418 was one to two orders of magnitude higher than that of transformed foci in normal medium. In eight independent cell lines selected by drug resistance, pV69 DNA was found to be maintained in a plasmidial state, without any detectable rearrangement or deletion and could be transferred back in E. coli. In contrast, cell lines selected by focus formation in normal medium maintained deleted forms of the original plasmid DNA, and only part of them were resistant to G418. Most of the drug-resistant clones had kept the morphology and growth control of the normal fibroblasts. However, with further passages in culture, these cells spontaneously produced transformed foci with increasing frequencies.

Animals↗

The transformed phenotype in culture and tumorigenicity of Fischer rat fibroblast cells (FR3T3) transformed with bovine papilloma virus type 1.

Unlike cell lines transformed with Polyomaviruses, transformants derived by focus formation or colony formation in agarose medium after transfer into rat fibroblast cells (FR3T3 line) of Bovine Papilloma Type 1 (BPV1) DNA were consistently observed to grow poorly in suspension and to remain highly serum dependent for growth in culture. These cells did not produce detectable amounts of plasminogen activator, and kept the flat morphology and organized cytoskeleton characteristic of the normal fibroblast. However, they induced in syngeneic animals the development of tumors with a greater invasive potential than tumors induced by Polyomaviruses. By contrast with the original transformants, cells recovered from the tumors grew efficiently in suspension and produced high levels of plasminogen activator. They still had, however, extended cytoskeletal structures and remained completely dependent on high serum concentrations for growth in culture. The stepwise transformation process induced by BPV1 thus appears strikingly different from that previously observed with polyoma and SV40 viruses. The observed changes in transformation phenotype between transformed line and tumor cells do not correlate with any important modification of the number of autonomous copies of the viral genome, nor with any rearrangement of viral sequences detectable at the level of the blot analysis.

Animals↗

ob17 cells transformed by the middle-T-only gene of polyoma virus differentiate in vitro and in vivo into adipose cells.

Cell lines were derived from ob17 preadipocyte cells by focus formation after transfer of the complete early region of polyoma virus (ob17PY) or of a modified genome encoding only the middle T protein (ob17MT). Both ob17PY and ob17MT cell lines exhibited a high cloning efficiency in agarose medium containing 10% fetal bovine serum. Fully transformed ob17PY cells grew to high saturation densities and did not differentiate in vitro and in vivo. ob17MT cells and derived subclones did not grow in the absence of serum and were able to differentiate in vitro and to give rise in vivo to adipose tumors. Among these different clones an inverse relationship was observed in culture between their potentiality to overproliferate at low serum and their potentiality to convert into adipose cells. The expression of enzyme markers of adipose conversion was strictly dependent upon the presence of growth hormone. In addition, the hormonal requirements for differentiation were simpler than those of the original ob17 cells and the adipose conversion could take place in serum-free hormone-supplemented medium.

Adipose Tissue↗

Biological activities of v-myc and rearranged c-myc oncogenes in rat fibroblast cells in culture.

Two distinct forms of the myc oncogene were assayed for their ability to induce, in cultured rat fibroblast cells, the alterations of cellular growth controls observed upon transfer of the gene of polyoma virus encoding only the large T protein (plt). Both of these rearranged myc genes and the plt gene had been previously shown to cooperate with ras oncogenes for transformation of rat embryo fibroblasts (REF) and were thought to induce the same early step ("immortalization") of the tumoral transformation pathway. We now report that these two different oncogenes elicite the same response in the following biological assays: (i) reduction of the requirements in serum factors for growth in culture of cells of the established FR3T3 line; (ii) expression of transformed properties in low serum medium after transfer into FR3T3 cells expressing only the middle T protein of polyoma virus (MTT lines); (iii) conferring on REF cells the ability to grow as clonal colonies after seeding at low cell density; (iv) conferring on REF cells the ability to grow continuously in cell culture. These congruent phenotypes suggest that the activities of the large T and myc proteins result in the induction of the same molecular events. These results also provide simple biological assays and selective systems for oncogenes of the myc class.

Animals↗

Expression of the large T protein of polyoma virus promotes the establishment in culture of "normal" rodent fibroblast cell lines.

Transfer into mouse and rat embryo fibroblasts in primary culture of cloned polyoma virus genes encoding only the large T protein led to the establishment of flat colonies in sparse subcultures at a frequency equal to that of transformation by wild-type virus. Cell lines could be derived from such colonies and maintained in culture for large numbers of generations without entering crisis. They exhibited a normal phenotype, by the criteria of growth on plastic to a low saturation density and of anchorage dependency. However, they required a lower serum concentration for growth than spontaneously established 3T3 cells. Similar results were obtained after transfer of recombinant DNA molecules encoding only the amino-terminal 40% of the large T protein, suggesting that this "immortalization" function corresponds to the activity of an amino-terminal domain of the protein. Immunoprecipitation analysis of T antigens in cell lines established after transfer of the full-size and of the truncated large T genes demonstrated the expression of the full-size large T protein and of a Mr 40,000 antigen expressed from the amino-terminal part of the gene, respectively. After transfer of a "large T only" plasmid that carries a tsa mutation, cell lines were established at 33 degrees C with the same efficiency as with the wild-type large T gene, but their growth was arrested after a shift to 40 degrees C, with a progressive loss in cell viability. This result indicates a continuous requirement for a large T function in the maintenance of "immortality."

Animals↗

The roles of individual polyoma virus early proteins in oncogenic transformation.

The expression in normal rat cells of modified polyoma virus genomes, separately encoding large T, middle T or small T antigens, has allowed the investigation of the roles of these proteins in oncogenic transformation. Middle T is sufficient to transform cells of established lines but the transformants are serum dependent. Large T lacks intrinsic oncogenic potential but can relieve the serum dependence of normal and transformed cells. Middle T alone cannot transform primary rat embryo fibroblasts.

Animals↗

Covalent affinity labeling by periodate-oxidized [alpha-32P]ATP of the large-T proteins of polyoma and SV40 viruses.

Incubation of crude extracts from cells lytically infected with polyoma virus in the presence of periodate-oxidized [alpha-32P]ATP led to the radioactive labeling of one main polypeptide immunoprecipitated by anti-T antigen antibodies. It was absent from extracts of mock-infected cells and exhibited an apparent Mr value of 105,000, identical with that of the large-T viral protein. This polypeptide was unambiguously identified as large-T on the basis of the heat sensitivity of the in vitro labeling in extracts from cells infected with a tsa mutant. The amount of incorporated radioactivity was found to increase linearly with that of infected cell extract and with the incubation time. Labeling resulted from the specific binding of an oxidized ATP molecule to a nucleotide binding site of the large-T protein, since it was efficiently completed by unlabeled ATP. Study of the dependence on the concentration of oxidized ATP evidenced a first order kinetic for the labeling reaction. Similar results were obtained for the large-T protein of SV40 virus.

Adenosine Triphosphate↗

Recombinant DNA molecules comprising bovine papilloma virus type 1 DNA linked to plasmid DNA are maintained in a plasmidial state both in rodent fibroblasts and in bacterial cells.

Transformed cells obtained after transfecting FR3T3 rat fibroblasts with DNA of bovine papilloma virus type 1 ( BPV1 ) maintained only free copies of the viral genome. Transfection with BPV1 DNA inserted in a bacterial plasmid (pBR322 or pML2 ) did not produce transformants at a detectable rate, unless the viral sequences had been first excised from the plasmid. In contrast, transfer of the same plasmids by polyethylene glycol-induced fusion of bacterial protoplasts with FR3T3 rat or C127 mouse cells led to significant transformation frequencies. A total of eight cell lines were studied, three rat and five mouse transformants, obtained with various BPV1 - pML2 recombinants. In all cell lines, both BPV1 and plasmid sequences were maintained as non-integrated molecules, predominantly as oligomeric forms of the transforming DNA. In the three rat transformants and in two of the mouse lines, parts of the non-transforming viral region and some bacterial sequences were deleted. In the remaining three mouse lines, the monomeric repeat was a non-rearranged plasmid molecule which could be re-established as a plasmid in Escherichia coli after cleavage with "one-cut" restriction endonucleases and circularization of the molecule.

Animals↗

The high affinity binding site on polyoma virus DNA for the viral large-T protein.

In order to map the high affinity binding site for the viral large-T protein on polyoma virus DNA, we have developed an assay which does not require purified protein. It is based on the specific elution of the large-T ATPase activity from calf thymus DNA cellulose by recombinant DNA molecules including known sequences of the viral DNA. Using this assay, a high affinity binding site has been mapped on the early region side of the ori region. Binding requires the integrity of a sequence /AGAGGC/TTCC/AGAGGC/ (nucleotides 49 to 64 in the DNA sequence of the A2 strain). Similar repeats of a PuGPuGGC sequence within less than 20 bases are not found within the viral coding regions, but are strikingly common in the control regions of papovaviruses and other eukaryotic DNAs.

Adenosine Triphosphatases↗

Initiation of polyoma virus DNA replication in vitro and its dependence on the viral gene A protein.

Initiation of polyoma virus DNA replication is dependent on the activity of the early protein affected by the tsa mutations (large-T antigen). An in vitro DNA synthesizing system blocked at the initiation stage was designed by preparing nuclei from cells shifted to high temperature after infection with a polyoma tsa mutant. Addition to these nuclei of extracts from wild type virus-infected cells resulted in a limited, but reproducible stimulation of deoxynucleoside monophosphate incorporation. At least for a significant part, this stimulation was shown to correspond to an increased synthesis of molecules identified as polyoma replicative intermediates by their sedimentation coefficient and endonuclease Hpa II cleavage pattern. The non-random distribution of label observed among restriction fragments was that expected from an initiation event occuring at the physiological origin. This activity was reduced to background level in extracts from tsa-infected cells shifted to high temperature and was specifically inhibited by addition of Fab fragments from anti-polyoma virus T antigen immunoglobulins.

Animals↗

Integration sites and sequence arrangement of SV40 DNA in a homogeneous series of transformed rat fibroblast lines.

The state and organization of viral DNA sequences present in independently isolated rat cell lines transformed with SV40 were investigated using restriction-enzyme cleavage of the cellular DNA and blot hybridization with a viral probe. The transformed lines were established under conditions as identical as possible, except for a limited number of variables (multiplicity of infection, physiological state of the cells after infection and procedures used for selecting the transformed derivatives). They were characterized after a limited number of generations in culture. Two distinct types of organization were found: covalently integrated viral genomes were present either as single inserts or as head-to-tail oligomeric structures. The latter was observed among transformants derived from cells maintained after infection under growth-inhibiting conditions (suspension in agarose medium, confluency on a solid substrate). Single inserts were observed only among cell lines isolated after an initial period of active growth. Recurrent patterns of hybridizaton were observed in independently isolated lines, indicating that the sites of the integrative recombinations were close enough, both in the viral and the cellular sequences, not to be distinguished at the level of sensitivity of the technique (more than +/- 100 bp). Among cell lines with multiple integration sites, only part of the inserts were found in several instances to be identical to inserts observed in other transformed lines.

Animals↗

ATP phosphohydrolase (ATPase) activity of a polyoma virus T antigen.

Among the various polyoma virus T antigens which have so far been identified, only the large-T and a 63 000-Mr polypeptide were found to bind to double-stranded calf thymus DNA. The proteins were not retained on single-stranded DNA-cellulose columns, and a purification procedure was designed on the basis of this observation. Purified fractions (approx. 1000-fold) exhibited an enzymatic activity which converts ATP into ADP and Pi. This activity was quantitatively inhibited after preincubation in the presence of anti-(polyoma T antigen) immunoglobulins and was shown to be dependent on a virus-coded gene product (alpha gene) on the basis of the following observations: (a) ATPase activity from cells infected with tsa mutants of polyoma was reduced after a shift to the restrictive temperature; (b) the enzyme purified from tsa-infected cells maintained at the permissive temperature was more thermolabile in vitro than that prepared in parallel from cells infected with wild-type virus.

Adenosine Triphosphatases↗