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siRNA Electroporation to Modulate Autophagy in Herpes Simplex Virus Type 1-Infected Monocyte-Derived Dendritic Cells
Published on: October 28, 2019
Bag3-induced autophagy is associated with degradation of JCV oncoprotein, T-Ag
Ilker Kudret Sariyer1, Nana Merabova, Prem Kumer Patel
1Department of Neuroscience and Center for Neurovirology Temple University School of Medicine, Philadelphia, Pennsylvania, United States of America.
Abstract:
JC virus, JCV, is a human neurotropic polyomavirus whose replication in glial cells causes the fatal demyelinating disease progressive multifocal leukoencephalopathy (PML). In addition, JCV possesses oncogenic activity and expression of its transforming protein, large T-antigen (T-Ag), in several experimental animals induces tumors of neural origin. Further, the presence of JCV DNA and T-Ag have been repeatedly observed in several human malignant tissues including primitive neuroectodermal tumors and glioblastomas. Earlier studies have demonstrated that Bag3, a member of the Bcl-2-associated athanogene (Bag) family of proteins, which is implicated in autophagy and apoptosis, is downregulated upon JCV infection of glial cells and that JCV T-Ag is responsible for suppressing the activity of the BAG3 promoter. Here, we investigated the possible impact of Bag3 on T-Ag expression in JCV-infected human primary glial cells as well as in cells derived from T-Ag-induced medulloblastoma in transgenic animals. Results from these studies revealed that overexpression of Bag3 drastically decreases the level of T-Ag expression by inducing the autophagic degradation of the viral protein. Interestingly, this event leads to the inhibition of JCV infection of glial cells, suggesting that the reduced levels of T-antigen seen upon the overexpression of Bag3 has a biological impact on the viral lytic cycle. Results from protein-protein interaction studies showed that T-Ag and Bag3 physically interact with each other through the zinc-finger of T-Ag and the proline rich domains of Bag3, and this interaction is important for the autophagic degradation of T-Ag. Our observations open a new avenue of research for better understanding of virus-host interaction by investigating the interplay between T-Ag and Bag3, and their impact on the development of JCV-associated diseases.
Insights
Bag3 protein reduces JC virus (JCV) T-antigen levels by promoting its degradation through autophagy. This interaction inhibits JCV infection and offers insights into JCV-associated diseases.
Area of Science:
- Neurovirology
- Molecular Biology
- Oncology
Background:
- JC virus (JCV) causes progressive multifocal leukoencephalopathy (PML) and has oncogenic potential.
- JCV large T-antigen (T-Ag) is implicated in tumor development.
- Bag3 protein is downregulated by JCV T-Ag, affecting autophagy and apoptosis.
Purpose of the Study:
- Investigate Bag3's impact on T-Ag expression in JCV-infected cells.
- Determine if Bag3 affects T-Ag in T-Ag-induced tumors.
- Elucidate the mechanism of interaction between Bag3 and T-Ag.
Main Methods:
- Overexpression of Bag3 in JCV-infected human glial cells and T-Ag-induced medulloblastoma cells.
- Analysis of T-Ag levels and autophagic degradation.
- Protein-protein interaction studies to map binding domains.
Main Results:
- Bag3 overexpression significantly reduced T-Ag levels by inducing its autophagic degradation.
- This degradation inhibited JCV infection in glial cells.
- T-Ag and Bag3 physically interact, mediated by T-Ag's zinc-finger and Bag3's proline-rich domains.
Conclusions:
- Bag3 negatively regulates JCV T-Ag expression through autophagic degradation.
- The interaction between Bag3 and T-Ag impacts the JCV lytic cycle.
- This interplay is crucial for understanding JCV-associated diseases and suggests therapeutic targets.
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