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The binding of simian virus 40 large T antigen to the polyphosphate backbone of nucleic acids
Abstract:
Simian virus 40 (SV40) large tumor antigen (T antigen), a phosphoprotein found in nuclei of SV40-infected and -transformed cells, binds nonspecifically to DNA. To study this mechanism the binding properties of T antigen to double-stranded (ds) and single-stranded (ss) DNA-cellulose as well as to phosphocellulose were compared. After incubation of [35S] methionine or [3H] leucine/[32 P] phosphate radioactively-labeled cell extracts at different pH values (6.0, 7.3, 9.0) with DNA- or phosphocellulose, bound and unbound species of T antigen were purified and analyzed by SDS-polyacrylamide gel electrophoresis for both the yield and the possible correlation with protein phosphorylation. T antigens bound with comparable affinities to ds- and ss-DNA-cellulose and phosphocellulose. These results suggest the binding of T antigen to the polyphosphate backbone of DNA as a molecular mechanism for its nonspecific binding. The evidence for this observation was supported by blocking the binding of T antigen to DNA-cellulose by divalent cations (Ca2+, Mg2+). 3H/32P ratios of T antigen obtained by double-labeling cells for various times imply that higher phosphorylated forms of T antigen bound more strongly to ds- and ss-DNA as well as to phosphocellulose. Thus, in the presence of cellular proteins and other components the binding activity of T antigen to the polyphosphate backbone of DNA seems to be positively correlated with its phosphorylation. These observations are consistent with the hypothesis that the binding affinities of SV40 T antigen to host cell DNA may be regulated by its phosphorylation.
Insights
Simian virus 40 (SV40) large tumor antigen (T antigen) binds nonspecifically to DNA. Its binding affinity to DNA is positively correlated with phosphorylation, suggesting regulation by this modification.
Area of Science:
- Molecular biology
- Virology
- Biochemistry
Background:
- Simian virus 40 (SV40) large tumor antigen (T antigen) is a nuclear phosphoprotein.
- T antigen is found in SV40-infected and transformed cells.
- T antigen exhibits nonspecific DNA binding properties.
Purpose of the Study:
- To investigate the mechanism of SV40 T antigen's nonspecific DNA binding.
- To compare the binding affinities of T antigen to double-stranded (ds) DNA, single-stranded (ss) DNA, and phosphocellulose.
- To explore the correlation between T antigen phosphorylation and its DNA binding activity.
Main Methods:
- Radioactively labeled T antigen ([35S] methionine or [3H] leucine/[32P] phosphate) was incubated with DNA-cellulose (ds and ss) and phosphocellulose at various pH levels.
- Bound and unbound T antigen were purified and analyzed using SDS-polyacrylamide gel electrophoresis.
- Divalent cations (Ca2+, Mg2+) were used to block T antigen binding to DNA-cellulose.
Main Results:
- T antigen demonstrated comparable binding affinities to ds-DNA-cellulose, ss-DNA-cellulose, and phosphocellulose.
- Divalent cations blocked T antigen binding to DNA-cellulose, supporting binding to the polyphosphate backbone.
- Higher phosphorylated forms of T antigen exhibited stronger binding to DNA and phosphocellulose.
Conclusions:
- SV40 T antigen likely binds to the polyphosphate backbone of DNA.
- T antigen's DNA binding affinity appears to be regulated by its phosphorylation status.
- Phosphorylation may control the interaction of SV40 T antigen with host cell DNA.