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The DNA damage response promotes polyomavirus JC infection by nucleus to cytoplasm NF- kappaB activation
Martyn K White1, Anna Bellizzi1,2, Gabriele Ibba1
1Center for Neurovirology, Department of Neuroscience, Lewis Katz School of Medicine at Temple University, 3500 N. Broad Street, Philadelphia, PA, 19140, USA.
Background:
Infection of glial cells by human neurotropic polyomavirus JC (JCV), the causative agent of the CNS demyelinating disease progressive multifocal leukoencephalopathy (PML), rapidly inflicts damage to cellular DNA. This activates DNA damage response (DDR) signaling including induction of expression of DNA repair factor Rad51. We previously reported that Rad51 co-operates with the transcription factor NF-κB p65 to activate JCV early transcription. Thus Rad51 induction by JCV infection may provide positive feedback for viral activation early in JCV infection. DDR is also known to stimulate NF-κB activity, a phenomenon known as nucleus to cytoplasm or "inside-out" NF-κB signaling, which is initiated by Ataxia telangiectasia mutated (ATM) protein, a serine/threonine kinase recruited and activated by DNA double-strand breaks. Downstream of ATM, there occurs a series of post-translational modifications of NF-κB essential modulator (NEMO), the γ regulatory subunit of inhibitor of NF-κB (IκB) kinase (IKK), resulting in NF-κB activation.
Methods:
We analyzed the effects of downstream pathways in the DDR by phosphospecific Western blots and analysis of the subcellular distribution of NEMO by cell fractionation and immunocytochemistry. The role of DDR in JCV infection was analyzed using a small molecule inhibitor of ATM (KU-55933). NEMO sumoylation was investigated by Western and association of ATM and NEMO by immunoprecipitation/Western blots.
Results:
We show that JCV infection caused phosphorylation and activation of ATM while KU-55933 inhibited JCV replication. JCV infection caused a redistribution of NEMO from cytoplasm to nucleus. Co-expression of JCV large T-antigen and FLAG-tagged NEMO showed the occurrence of sumoylation of NEMO, while co-expression of ATM and FLAG-NEMO demonstrated physical association between ATM and NEMO.
Conclusions:
We propose a model where JCV infection induces both overexpression of Rad51 protein and activation of the nucleus to cytoplasm NF-κB signaling pathway, which then act together to enhance JCV gene expression.
Insights
Human neurotropic polyomavirus JC (JCV) infection activates DNA damage response (DDR) pathways, including Rad51 and NF-κB signaling. This study reveals how DDR enhances JCV replication by activating ATM and NEMO, promoting viral gene expression.
Area of Science:
- Neurovirology
- Cellular Biology
- Molecular Biology
Background:
- Human neurotropic polyomavirus JC (JCV) causes progressive multifocal leukoencephalopathy (PML), a CNS demyelinating disease.
- JCV infection triggers DNA damage response (DDR) pathways, including Rad51 induction and NF-κB activation.
- DDR stimulates NF-κB signaling via ATM kinase and NEMO modifications, leading to NF-κB activation.
Purpose of the Study:
- To investigate the role of DDR in JCV infection.
- To analyze the effects of ATM and NEMO on JCV replication.
- To elucidate the mechanism of JCV-induced NF-κB activation.
Main Methods:
- Phosphospecific Western blots and subcellular distribution analysis of NEMO.
- Cell fractionation and immunocytochemistry.
- Inhibition of ATM using KU-55933 and analysis of JCV replication.
- Investigation of NEMO sumoylation and ATM-NEMO association via Western blots and immunoprecipitation.
Main Results:
- JCV infection activated ATM, and KU-55933 inhibited viral replication.
- JCV infection caused NEMO redistribution from the cytoplasm to the nucleus.
- NEMO sumoylation and physical association between ATM and NEMO were observed.
Conclusions:
- JCV infection induces Rad51 overexpression and activates the nucleus-to-cytoplasm NF-κB signaling pathway.
- These pathways cooperate to enhance JCV gene expression and replication.
- A model is proposed where DDR activation by JCV promotes viral propagation.
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