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SV40 virus-specific RNA synthesis in transformed human cells   总被引:1,自引:0,他引:1  
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Differentiation of human epidermal cells transformed by SV40   总被引:17,自引:3,他引:17       下载免费PDF全文
Human epidermal cells were transformed with DNA from wild-type SV40 virus or with DNA from a temperature-sensitive A mutant (tsA209). The SV40-transformed cells differed from nontransformed cells in their morphologic appearance, growth properties, and expression of certain characteristics associated with differentiation. The transformed cells were more variable in size and shape than their nontransformed counterparts and were less stratified and less keratinized. While the growth properties of the cells were similar under optimal growth conditions, the transformed cells could be propagated under stringent growth conditions that did not support the growth of nontransformed human epidermal cells. The transformants still required a 3T3 feeder layer for growth, remained anchorage dependent as assayed in soft agar, and were not tumorigenic in athymic nude mice. The expression of certain differentiated functions of the human epidermal cell, the presence of keratins and cross-linked envelopes, was decreased in the transformed cells, and these functions could be restored at the nonpermissive temperature in the tsA209 transformed cells.  相似文献   

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The relative importance of viral tumor antigen expression and the cellular background in the maintenance of a transformation phenotype was examined in five SV40-transformed teratocarcinoma-derived cell lines. These cell lines show qualitative differences in growth characteristics associated with transformation, and vary in their state of differentiation. Viral T antigen expression was evaluated by two criteria: 1) the amount of immunoprecipitated antigen in growing cells, and 2) the amount and rate of antigen synthesis in density-inhibited cells. There was no direct correlation found between retention, or rate of synthesis, of the viral T antigen and the degree of transformation. These findings imply that the cellular environment has a more important influence on the growth properties of a stably transformed cell than the quantitative levels of viral T antigen expression.  相似文献   

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Quiescent SV40 virus transformed 3T3 cells in culture   总被引:6,自引:0,他引:6  
Serum counteracts low nutrient concentrations in the culture medium in SV40 virus transformed 3T3 (SV3T3) cells. The transport of [3H]-leucine into TCA soluble material in SV3T3 cells is stimulated by serum and inhibited by But2-cAMP. When SV3T3 cells are cultured in low leucine concentrations (? 8 × 10?6 M), the cell's morphology is similar to the one of cells incubated in complete medium in the presence of But2-cAMP and cells become quiescent. Cells become arrested throughout the cell cycle. The results suggest that the mechanism by which But2-cAMP inhibits growth of SV3T3 cells is by inhibiting the transport of leucine in SV3T3 cells.  相似文献   

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Five types of variation in the appearance of SV40 T antigen have been observed by immunofluorescence in wild-type and tsD*101 transformed BALB and Swiss/3T3 cells: (1) clones having more than 95% uniformly stained nuclei; (2) clones having variable stained nuclei; (3) clones having T-negative nuclei at the periphery at 39 °C, but not at 33 °C; (4) D101 cells having T-negative nuclei at 39 °C, but not at 33 °C, during growth and after saturation; and (5) wild type cells having T-negative nuclei after confluence at both 33 and 39 °C. This fifth type of variation may involve an immuno-specificity change in the T antigen molecule. Any models proposed for the regulation of SV40 T antigen in transformed cells will have to explain these variations.  相似文献   

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Nuclear matrices were isolated by the high-salt, non-ionic detergent method from SV40-transformed hamster fibroblasts (TSV5 cell line), and from hamster tumours derived from these cells. DNA isolated from matrices and total nuclei was hybridized with nick-translated SV40 DNA. The enrichment of matrix DNA with SV40 DNA sequences was observed in all five experiments with matrix DNA of TSV5 cells but only in five out of nine matrix DNA isolated from tumour cells.  相似文献   

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