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Murine polyomavirus and simian virus 40 large T antigens produce different structural alterations in viral origin DNA
S Bhattacharyya1, H E Lorimer, C Prives
1Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Abstract:
Murine polyomavirus (Py) and simian virus (SV40) encode homologous large T antigens (T Ags) and also have comparable sequence motifs in their core replication origins. While the ability of SV40 T Ag to produce specific distortions within the SV40 core replication origin (ori) in a nucleotide-dependent fashion has been well documented, little is known about related effects of Py T Ag on Py ori DNA. Therefore, we have examined viral origin DNA binding in the presence of nucleotide and the resulting structural changes induced by Py and SV40 T Ags by DNase I footprinting and KMnO4 modification assays. The structural changes in the Py ori induced by Py T Ag included sites within both the A/T and early side of the core origin region, consistent with what has been shown for SV40. Interestingly, however, Py T Ag also produced sites of distortion within the center of the origin palindrome and at several sites within both the early and late regions that flank the core ori. Thus, Py T Ag produces a more extensive and substantially different pattern of KMnO4 modification sites than does SV40 T Ag. We also observed that both T Ags incompletely protected and distorted the reciprocal ori region. Therefore, significant differences in the interactions of Py and SV40 T Ags with ori DNA may account for the failure of each T Ag to support replication of the reciprocal ori DNA in permissive cell extracts.
Insights
Murine polyomavirus (Py) T antigen causes distinct DNA structural changes at its origin compared to simian virus 40 (SV40) T antigen. These differences in viral origin DNA binding explain why each T antigen cannot replicate the other's origin.
Area of Science:
- Virology
- Molecular Biology
- Structural Biology
Background:
- Murine polyomavirus (Py) and simian virus 40 (SV40) possess homologous large T antigens (T Ags) and similar replication origin sequences.
- SV40 T Ag's nucleotide-dependent distortion of its origin (ori) is known, but Py T Ag's effects on Py ori are less understood.
Purpose of the Study:
- To investigate the viral origin DNA binding and structural changes induced by Py and SV40 T Ags.
- To compare the interactions of Py T Ag with Py ori and SV40 T Ag with SV40 ori.
Main Methods:
- DNase I footprinting assays.
- Potassium permanganate (KMnO4) modification assays.
Main Results:
- Py T Ag induced structural changes in Py ori, including the A/T region, early side, origin palindrome center, and flanking regions.
- Py T Ag caused a more extensive and different pattern of KMnO4 modification than SV40 T Ag.
- Both T Ags incompletely protected and distorted the reciprocal ori region.
Conclusions:
- Py T Ag induces distinct and more widespread DNA distortions in Py ori compared to SV40 T Ag in SV40 ori.
- Differences in T Ag-ori DNA interactions likely explain the inability of each T Ag to support replication of the other's ori.