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Profiling Ubiquitin and Ubiquitin-like Dependent Post-translational Modifications and Identification of Significant Alterations
Published on: November 7, 2019
Proteomic analysis of ubiquitin-like posttranslational modifications induced by the adenovirus E4-ORF3 protein
Sook-Young Sohn1, Rebecca G Bridges1, Patrick Hearing2
1Department of Molecular Genetics and Microbiology, School of Medicine, Stony Brook University, Stony Brook, New York, USA.
Unlabelled:
Viruses interact with and regulate many host metabolic pathways in order to advance the viral life cycle and counteract intrinsic and extrinsic antiviral responses. The human adenovirus (Ad) early protein E4-ORF3 forms a unique scaffold throughout the nuclei of infected cells and inhibits multiple antiviral defenses, including a DNA damage response (DDR) and an interferon response. We previously reported that the Ad5 E4-ORF3 protein induces sumoylation of Mre11 and Nbs1, which are essential for the DDR, and their relocalization into E4-ORF3-induced nuclear inclusions is required for this modification to occur. In this study, we sought to analyze a global change in ubiquitin-like (Ubl) modifications, with particular focus on SUMO3, by the Ad5 E4-ORF3 protein and to identify new substrates with these modifications. By a comparative proteome-wide approach utilizing immunoprecipitation/mass spectrometry, we found that Ubl modifications of 166 statistically significant lysine sites in 51 proteins are affected by E4-ORF3, and the proteome of modifications spans a diverse range of cellular functions. Ubl modifications of 92% of these identified sites were increased by E4-ORF3. We further analyzed SUMO3 conjugation of several identified proteins. Our findings demonstrated a role for the Ad5 E4-ORF3 protein as a regulator of Ubl modifications and revealed new SUMO3 substrates induced by E4-ORF3.
Importance:
The adenovirus E4-ORF3 protein induces dynamic structural changes in the nuclei of infected cells and counteracts host antiviral responses. One of the mechanisms that accounts for this process is the relocalization and sequestration of cellular proteins into an E4-ORF3 nuclear scaffold, but little is known about how this small viral protein affects diverse cellular responses. In this study, we analyzed for the first time the global pattern of ubiquitin-like (Ubl) modifications, with particular focus on SUMO3, altered by E4-ORF3 expression. The results suggest a role for the Ad5 E4-ORF3 protein as a regulator of Ubl modifications and reveal new SUMO3 substrates targeted by E4-ORF3. Our findings propose Ubl modifications as a new mechanism by which E4-ORF3 may modulate cellular protein functions in addition to subnuclear relocalization.
Insights
Human adenovirus E4-ORF3 protein alters ubiquitin-like (Ubl) modifications, including SUMO3, in host cells. This viral protein regulates Ubl modifications and identifies new SUMO3 substrates, impacting cellular functions.
Area of Science:
- Virology and Molecular Biology: Focus on virus-host interactions and host protein regulation.
- Proteomics: Investigating global changes in protein modifications.
- Cellular Biology: Examining the impact of viral proteins on host cell pathways.
Background:
- Viruses, such as human adenovirus (Ad), manipulate host metabolic pathways for replication and to evade antiviral responses.
- The Ad early protein E4-ORF3 forms nuclear scaffolds, inhibiting host defenses like DNA damage response (DDR) and interferon response.
- Previous work showed Ad5 E4-ORF3 induces sumoylation of DDR proteins Mre11 and Nbs1, requiring their relocalization.
Purpose of the Study:
- To globally analyze changes in ubiquitin-like (Ubl) modifications, specifically SUMO3, induced by the Ad5 E4-ORF3 protein.
- To identify novel protein substrates affected by these Ubl modifications in E4-ORF3-expressing cells.
- To elucidate the role of Ad5 E4-ORF3 as a regulator of Ubl modifications and its impact on cellular functions.
Main Methods:
- Comparative proteome-wide analysis using immunoprecipitation followed by mass spectrometry.
- Focus on identifying lysine sites with altered Ubl modifications, particularly SUMO3.
- Analysis of SUMO3 conjugation for several identified proteins.
Main Results:
- Ad5 E4-ORF3 expression affected Ubl modifications at 166 statistically significant lysine sites across 51 proteins.
- The majority (92%) of these identified Ubl modifications were increased by E4-ORF3.
- Several new SUMO3 substrates targeted by E4-ORF3 were identified and analyzed.
Conclusions:
- The Ad5 E4-ORF3 protein acts as a significant regulator of host ubiquitin-like (Ubl) modifications.
- E4-ORF3 induces widespread changes in Ubl modifications, affecting diverse cellular functions.
- Ubl modifications represent a novel mechanism, in addition to subnuclear relocalization, by which E4-ORF3 modulates host protein functions.
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