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Published on: July 13, 2019
Pur-Alpha Induces JCV Gene Expression and Viral Replication by Suppressing SRSF1 in Glial Cells
Ilker Kudret Sariyer1, Rahsan Sariyer1, Jessica Otte1
1Department of Neuroscience, Center for Neurovirology, Temple University Lewis Katz School of Medicine, 3500 North Broad Street, 7th Floor, Philadelphia, PA 19140, United States of America.
Objective:
PML is a rare and fatal demyelinating disease of the CNS caused by the human polyomavirus, JC virus (JCV), which occurs in AIDS patients and those on immunosuppressive monoclonal antibody therapies (mAbs). We sought to identify mechanisms that could stimulate reactivation of JCV in a cell culture model system and targeted pathways which could affect early gene transcription and JCV T-antigen production, which are key steps of the viral life cycle for blocking reactivation of JCV. Two important regulatory partners we have previously identified for T-antigen include Pur-alpha and SRSF1 (SF2/ASF). SRSF1, an alternative splicing factor, is a potential regulator of JCV whose overexpression in glial cells strongly suppresses viral gene expression and replication. Pur-alpha has been most extensively characterized as a sequence-specific DNA- and RNA-binding protein which directs both viral gene transcription and mRNA translation, and is a potent inducer of the JCV early promoter through binding to T-antigen.
Methods And Results:
Pur-alpha and SRSF1 both act directly as transcriptional regulators of the JCV promoter and here we have observed that Pur-alpha is capable of ameliorating SRSF1-mediated suppression of JCV gene expression and viral replication. Interestingly, Pur-alpha exerted its effect by suppressing SRSF1 at both the protein and mRNA levels in glial cells suggesting this effect can occur independent of T-antigen. Pur-alpha and SRSF1 were both localized to oligodendrocyte inclusion bodies by immunohistochemistry in brain sections from patients with HIV-1 associated PML. Interestingly, inclusion bodies were typically positive for either Pur-alpha or SRSF1, though some cells appeared to be positive for both proteins.
Conclusions:
Taken together, these results indicate the presence of an antagonistic interaction between these two proteins in regulating of JCV gene expression and viral replication and suggests that they play an important role during viral reactivation leading to development of PML.
Insights
Pur-alpha counteracts SRSF1
Area of Science:
- Neurovirology
- Molecular Biology
Background:
- Progressive multifocal leukoencephalopathy (PML) is a fatal CNS demyelinating disease caused by JC virus (JCV).
- JCV reactivation is linked to immunosuppression, particularly in AIDS patients and those on monoclonal antibody therapies.
- Pur-alpha and SRSF1 are key regulatory proteins identified in JCV T-antigen regulation.
Purpose of the Study:
- To investigate mechanisms regulating JCV reactivation in a cell culture model.
- To identify pathways affecting early gene transcription and T-antigen production for blocking JCV reactivation.
- To elucidate the roles of Pur-alpha and SRSF1 in JCV gene expression and replication.
Main Methods:
- Investigated JCV reactivation in a cell culture model.
- Analyzed the interaction between Pur-alpha and SRSF1 in glial cells.
- Utilized immunohistochemistry on brain sections from PML patients.
Main Results:
- Pur-alpha and SRSF1 directly regulate the JCV promoter.
- Pur-alpha suppresses SRSF1 at both protein and mRNA levels, counteracting SRSF1-mediated inhibition of JCV gene expression and replication.
- Pur-alpha and SRSF1 were found in oligodendrocyte inclusion bodies in PML patient brain tissue, with some cells positive for both.
Conclusions:
- An antagonistic interaction exists between Pur-alpha and SRSF1 in regulating JCV gene expression and replication.
- These proteins play a significant role in JCV reactivation, contributing to PML development.
- Understanding this interaction may offer therapeutic targets for PML.
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