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Published on: January 19, 2015
Autoinhibition of suicidal capsid protease from O'nyong'nyong virus
Yuliya Chykunova1, Jacek Plewka2, Piotr Wilk3
1Virogenetics Laboratory of Virology, Malopolska Centre of Biotechnology, Jagiellonian University, Gronostajowa 7a, 30-387 Krakow, Poland; Department of Microbiology, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Gronostajowa 7, 30-387 Krakow, Poland.
Abstract:
Alphaviruses pose a significant threat to public health. Capsid protein encoded in the alphaviral genomes constitutes an interesting therapy target, as it also serves as a protease (CP). Remarkably, it undergoes autoproteolysis, leading to the generation of the C-terminal tryptophan that localizes to the active pocket, deactivating the enzyme. Lack of activity hampers the viral replication cycle, as the virus is not capable of producing the infectious progeny. We investigated the structure and function of the CP encoded in the genome of O'nyong'nyong virus (ONNV), which has instigated outbreaks in Africa. Our research provides a high-resolution crystal structure of the ONNV CP in its active state and evaluates the enzyme's activity. Furthermore, we demonstrated a dose-dependent reduction in ONNV CP proteolytic activity when exposed to indole, suggesting that tryptophan analogs may be a promising basis for developing small molecule inhibitors. It's noteworthy that the capsid protease plays an essential role in virus assembly, binding viral glycoproteins through its glycoprotein-binding hydrophobic pocket. We showed that non-aromatic cyclic compounds like dioxane disrupt this vital interaction. Our findings provide deeper insights into ONNV's biology, and we believe they will prove instrumental in guiding the development of antiviral strategies against arthritogenic alphaviruses.
Insights
O'nyong'nyong virus (ONNV) capsid protein (CP) structure and activity were studied. Indole and dioxane showed potential for developing antiviral therapies against alphaviruses.
Area of Science:
- Virology
- Structural Biology
- Drug Discovery
Background:
- Alphaviruses are significant public health threats.
- The alphaviral capsid protein (CP) functions as a protease and is a potential therapeutic target.
- CP autoproteolysis generates a C-terminal tryptophan that deactivates the enzyme, halting viral replication.
Purpose of the Study:
- To investigate the structure and function of the O'nyong'nyong virus (ONNV) CP.
- To evaluate ONNV CP activity and identify potential inhibition strategies.
Main Methods:
- High-resolution crystal structure determination of ONNV CP.
- Enzymatic activity assays of ONNV CP.
- Inhibition studies using indole and dioxane.
Main Results:
- The active state crystal structure of ONNV CP was determined.
- Indole demonstrated a dose-dependent reduction in ONNV CP proteolytic activity.
- Non-aromatic cyclic compounds, such as dioxane, disrupted the interaction between CP and viral glycoproteins.
Conclusions:
- Tryptophan analogs, like indole, show promise for developing small molecule inhibitors against ONNV.
- Disruption of the glycoprotein-binding pocket is a viable strategy for antiviral development.
- Findings provide insights into ONNV biology and guide antiviral strategies against arthritogenic alphaviruses.
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