Mutants of SV40 with an altered small t protein are reduced in their ability to transform cells
Abstract:
Mutants of SV40 with deletions of various sizes mapping between 0.54 and 0.59 on the genome grow at a rate equal to or slightly slower than that of wild-type virus, in a range of host cells. Their ability, however, to induce transformation in several mouse, rat and rabbit cell lines is impaired. The extent of transformation observed is dependent upon the assay used to measure it, but in general, the ability of the mutants to transform falls as the size of the deletion increases. In addition, rat embryo fibroblasts transformed by deletion mutants have fewer of the characteristics of a fully transformed phenotype (for example, growth in low serum, increased saturation density, growth in semi-solid medium) than those transformed by wild-type virus. During lytic infection, immunoprecipitable T antigen produced by the deletion mutants is of the same size as that seen during infection with wild-type virus, and is present at a similar level. Mutant virus-coded small t protein, however, is reduced in size compared with that from wild-type virus. For each mutant, the reduction in protein size is dependent upon the amount of DNA deleted, but not on the relative position of the deletion in the genome. These results demonstrate that the DNA sequences mapping between 0.54 and 0.59 on the viral genome code for the small t protein, and that SV40-induced transformation is at least partially dependent upon the expression of this protein.
Insights
Simian virus 40 (SV40) deletion mutants show impaired cell transformation abilities. These findings indicate that the small t protein is crucial for SV40-induced transformation.
Area of Science:
- Virology
- Molecular Biology
- Oncogenesis
Background:
- Simian virus 40 (SV40) is a well-studied DNA tumor virus.
- Understanding the functions of viral proteins is key to comprehending viral oncogenesis.
Purpose of the Study:
- To investigate the role of specific SV40 genome regions in viral transformation.
- To determine the function of the small t protein in SV40-induced cell transformation.
Main Methods:
- Construction and characterization of SV40 deletion mutants.
- Assays for cell transformation and phenotypic analysis.
- Analysis of viral protein expression (T antigen and small t protein).
Main Results:
- SV40 mutants with deletions between 0.54 and 0.59 showed reduced transformation efficiency.
- Transformed cells exhibited fewer characteristics of a fully transformed phenotype.
- Small t protein size was reduced in deletion mutants, correlating with deletion size.
Conclusions:
- The DNA sequences between 0.54 and 0.59 encode the SV40 small t protein.
- SV40-induced cell transformation is at least partially dependent on the expression of the small t protein.
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