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.

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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