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Multi-target Parallel Processing Approach for Gene-to-structure Determination of the Influenza Polymerase PB2 Subunit
Published on: June 28, 2013
Crystal structure of the Rubella virus protease reveals a unique papain-like protease fold
Ezekiel Ze Ken Cheong1, Jun Ping Quek2, Liu Xin3
1Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore, Singapore; School of Biological Sciences, Nanyang Technological University, Singapore, Singapore.
Abstract:
Rubella, a viral disease characterized by a red skin rash, is well controlled because of an effective vaccine, but outbreaks are still occurring in the absence of available antiviral treatments. The Rubella virus (RUBV) papain-like protease (RubPro) is crucial for RUBV replication, cleaving the nonstructural polyprotein p200 into two multifunctional proteins, p150 and p90. This protease could represent a potential drug target, but structural and mechanistic details important for the inhibition of this enzyme are unclear. Here, we report a novel crystal structure of RubPro at a resolution of 1.64 Å. The RubPro adopts a unique papain-like protease fold, with a similar catalytic core to that of proteases from Severe acute respiratory syndrome coronavirus 2 and foot-and-mouth disease virus while having a distinctive N-terminal fingers domain. RubPro has well-conserved sequence motifs that are also found in its newly discovered Rubivirus relatives. In addition, we show that the RubPro construct has protease activity in trans against a construct of RUBV protease-helicase and fluorogenic peptides. A protease-helicase construct, exogenously expressed in Escherichia coli, was also cleaved at the p150-p90 cleavage junction, demonstrating protease activity of the protease-helicase protein. We also demonstrate that RubPro possesses deubiquitylation activity, suggesting a potential role of RubPro in modulating the host's innate immune responses. We anticipate that these structural and functional insights of RubPro will advance our current understanding of its function and help facilitate more structure-based research into the RUBV replication machinery, in hopes of developing antiviral therapeutics against RUBV.
Insights
Researchers determined the structure of Rubella virus (RUBV) papain-like protease (RubPro), a key enzyme for viral replication. This finding aids in understanding Rubella virus and developing new antiviral drugs.
Area of Science:
- Virology
- Structural Biology
- Drug Discovery
Background:
- Rubella virus (RUBV) causes a viral disease controlled by vaccination, but outbreaks persist due to lack of antiviral treatments.
- The RUBV papain-like protease (RubPro) is essential for viral replication, making it a potential drug target.
- Understanding RubPro's structure and function is critical for developing inhibitors.
Purpose of the Study:
- To elucidate the novel crystal structure of Rubella virus papain-like protease (RubPro).
- To investigate the enzymatic and functional activities of RubPro.
- To provide insights for structure-based antiviral drug development against Rubella virus.
Main Methods:
- X-ray crystallography was used to determine the RubPro structure at 1.64 Å resolution.
- Enzymatic assays were performed to assess RubPro's protease activity in trans and its deubiquitylation function.
- Sequence analysis was conducted to compare RubPro with related viral proteases.
Main Results:
- A novel crystal structure of RubPro was determined, revealing a unique fold with conserved catalytic elements.
- RubPro demonstrated protease activity against RUBV protease-helicase and synthetic substrates.
- RubPro was found to possess deubiquitylation activity, suggesting a role in host immune modulation.
Conclusions:
- The determined structure provides crucial insights into RubPro's unique fold and catalytic mechanism.
- RubPro's enzymatic activities, including protease and deubiquitylation, highlight its multifaceted role in viral replication and host interaction.
- These findings facilitate further research into Rubella virus replication and the development of targeted antiviral therapies.
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