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p53 elevation in human cells halt SV40 infection by inhibiting T-ag expression
Nir Drayman1,2, Orly Ben-Nun-Shaul1, Veronika Butin-Israeli1
1Department of Hematology, Hebrew University Faculty of Medicine and Hadassah University Hospital, Jerusalem, Israel.
Abstract:
SV40 large T-antigen (T-ag) has been known for decades to inactivate the tumor suppressor p53 by sequestration and additional mechanisms. Our present study revealed that the struggle between p53 and T-ag begins very early in the infection cycle. We found that p53 is activated early after SV40 infection and defends the host against the infection. Using live cell imaging and single cell analyses we found that p53 dynamics are variable among individual cells, with only a subset of cells activating p53 immediately after SV40 infection. This cell-to-cell variabilty had clear consequences on the outcome of the infection. None of the cells with elevated p53 at the beginning of the infection proceeded to express T-ag, suggesting a p53-dependent decision between abortive and productive infection. In addition, we show that artificial elevation of p53 levels prior to the infection reduces infection efficiency, supporting a role for p53 in defending against SV40. We further found that the p53-mediated host defense mechanism against SV40 is not facilitated by apoptosis nor via interferon-stimulated genes. Instead p53 binds to the viral DNA at the T-ag promoter region, prevents its transcriptional activation by Sp1, and halts the progress of the infection. These findings shed new light on the long studied struggle between SV40 T-ag and p53, as developed during virus-host coevolution. Our studies indicate that the fate of SV40 infection is determined as soon as the viral DNA enters the nucleus, before the onset of viral gene expression.
Insights
Early p53 activation halts SV40 infection. The tumor suppressor p53 defends against simian virus 40 (SV40) by binding viral DNA, preventing T-antigen expression and determining infection fate early.
Area of Science:
- Virology
- Molecular Biology
- Cellular Biology
Background:
- SV40 large T-antigen (T-ag) is known to inactivate the tumor suppressor p53.
- The early events of SV40 infection and host defense mechanisms are not fully understood.
Purpose of the Study:
- To investigate the early interaction between p53 and SV40 T-ag during infection.
- To elucidate the role of p53 in host defense against SV40 infection.
Main Methods:
- Live cell imaging
- Single-cell analyses
- SV40 infection assays with p53 level manipulation
Main Results:
- p53 is activated early after SV40 infection, with variable dynamics among individual cells.
- Elevated p53 levels early in infection prevent T-ag expression and lead to abortive infections.
- p53 directly binds to the SV40 T-ag promoter region, inhibiting Sp1-mediated transcriptional activation and halting infection progression.
- p53-mediated defense against SV40 does not involve apoptosis or interferon-stimulated genes.
Conclusions:
- p53 acts as an early defense mechanism against SV40 infection.
- The outcome of SV40 infection is determined at the nuclear entry of viral DNA, prior to viral gene expression.
- This study reveals a novel mechanism of p53-mediated host defense against viral infection.
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