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Biomedical subjects

F Cuzin

Publications and source records attributed to F Cuzin.

At least 91 records · Page 5Linked to original sources

Transformation of rat fibroblast cells with early mutants of polyoma (tsa) and simian virus 40 (tsA30): occurrence of either A or N transformants depends on the multiplicity of infection.

Infection of rat fibroblasts with early mutants of polyoma virus (tsa) or simian virus 40 (tsA30) leads to the establishment of either temperature-independent A transformants or N transformants temperature-sensitive for the expression of the transformed phenotype. The choice between the A- and N-transformed states is not only dependent, as we reported previously (Rassoulzadegan et al., j. Virol., 28:421-426, 1978), on the growth conditions after infection, but is also a function of the multiplicity of infection (MOI); high MOI led to the predominant occurrence of A derivatives, and lower MOI led to that of N transformants.

Animals↗

Expression of simian virus 40 early genes in transformed rat cells is correlated with maintenance of the transformed phenotype.

Early viral polypeptides synthesized in simian virus 40 rat transformants were identified by immunoprecipitation using anti-T (tumor) antigen immune serum. Four polypeptide classes could be identified, which were not detectable in extracts of nontransformed cells and were not precipitated from transformed cell extracts by nonimmune serum. Their apparent M(r) were 92,000, 63,000, 56,000, and 19,000. A similar pattern was observed in extracts from lytically infected cells, but the relative rate of radioactive labeling of the M(r) 63,000 and 56,000 species was in this case significantly lower than in transformed cells. In tsA30 transformants of type A, which maintain the transformed phenotype at high temperature, only minor quantitative variations of this pattern were observed when the cultures were shifted from 33 degrees to 40.5 degrees . In contrast, the rate of labeling of the four virus-specific polypeptides was decreased by 90% or more at high temperature in the temperature-sensitive N transformants. In all cases, a coordinated variation of the radioactivity associated with the different polypeptide classes was observed. These results suggest that the synthesis or processing, or both, of the viral early proteins may be controlled by different mechanisms in various types of simian virus 40 transformants and, furthermore, that it may be under the positive control of a virus-coded protein in transformed cells of type N.

Antigens, Neoplasm↗

Growth control in simian virus 40-transformed rat cells: temperature-independent expression of the transformed phenotype in tsA transformants derived by agar selection.

Fisher rat fibroblasts (FR 3T3), transformed with the tsA30 mutant of simian virus 40 and selected by colony formation in soft agar, maintained the transformed phenotype at high temperature, whereas most transformants isolated from foci were found to undergo a phenotypic reversion toward the normal state in their saturation density, ability to grow in soft agar, and rate of 2-deoxyglucose transport. The temperature-independent phenotype observed in agar-selected transformants was not due to a reversion of the viral mutation. These results, similar to those previously obtained with polyoma virus tsa mutants, further suggest that two distinct mechanisms may operate in both cases for maintaining the transformed phenotype. Immunofluorescence studies suggested a different regulation of T antigen synthesis in these two classes of transformants.

Agar↗

Conditions leading to the establishment of the N (a gene dependent) and A (a gene independent) transformed states after polyoma virus infection of rat fibroblasts.

Infection of normal rat fibroblasts (FR 3T3) with the early tsa mutant of polyoma virus may lead to either the A or the N phenotype, tsa-A transformants, originally derived by agar selection, are not temperature dependent for maintenance of the transformed phenotype, whereas tsa-N transormants revert at high temperature to normal growth control. A transformants did not result from an independent cellular mutation selected in agar medium, but rather from a transformation process distinct from that leading to the N state. It occurred in both liquid and agar media when the infected cells were maintained under growth-restricting conditions, such as absence of anchorage and contact inhibition at confluency. N transformation occurred in cells maintained in active growth after virus infection (sparse cultures on a solid substratum). Physiological conditions during a critical period after virus infection thus appear to be a crucial parameter of the transformation process.

Agar↗

Temperature-sensitive growth regulation in one type of transformed rat cells induced by the tsa mutant of polyoma virus.

A fibroblast line of the 3T3 type with a low saturation density was established from Fisher rat embryo cells. After infection with either wild-type or tsa mutant polyoma virus, transformants were isolated and cloned at 33 degrees C on the basis of their ability either to grow as dense foci on plastic in liquid medium (type N) or to form colonies in soft agar (type A). Polyoma T antigen was detected in all of the transformed lines. The following growth characteristics were studied for both types at 33 and 41 degrees C: saturation density, growth in soft agar and at a low serum concentration, colony-forming ability, and generation time. tsa-N transformants behaved at 33 degrees C similarly to transformed cells, but reverted at 41 degrees C to the nontransformed phenotype for all of these characters. tsa-A transformants and all of the wild-type transformants exhibited the transformed phenotype at both low and high temperatures. These results led us to distinguish at least two types of virus-induced transformants. In one of them, the activity of the protein affected by the tsa mutation appears to be necessary for the expression of several of the characters defining the transformed state.

Antigens, Viral↗

Origin of polyoma virus-associated endonuclease.

Polyoma virus particles purified from infected cells, but not from the culture medium, exhibited an endonuclease activity distinct from the serum contaminant recently described. This endonuclease cleaved form I polyoma DNA once only per molecule, at one of three possible sites corresponding to the known adenosine-ribosylthymine-rich regions of the molecule.

Cell Line↗

Polyoma virus T antigen. I. Synthesis of modified heat-labile T angiten in cells transformed with the ts-a mutant.

In mouse cells transformed with the ts-a mutant of polyoma virus (ts-a-3T3), only low amounts of the virus-specific T antigen were synthesized at high temperature (39 C). After a shift-down to the permissive temperature (31 C), these cells exhibited the same level of T-antigen production as wild-type polyoma transformants. The T antigen produced by ts-a-transformed cells was inactivated at 39 C in vitro at a faster rate than that produced by wild-type-transformed cells. These observations indicate that T antigen is, or includes, a virus-coded peptide.

Animals↗

Immunochemical procedure for partial purification of newly synthesized proteins in polyoma virus-infected mouse cells.

A broad-spectrum antiserum has been obtained against nuclear proteins from normal mouse fibroblasts. Solid phase immunoadsorbants prepared from the serum specifically bind the corresponding antigens. The removal in this way of a significant fraction of host proteins leads to partial purification of viral and virus-induced polypeptides from polyoma virus-infected cell extracts. Four main peptides can be selected, with respective molecular weights of 90,000, 70,000, 46,000, and 41,000.

Adsorption↗