DWV 3C Protease Uncovers the Diverse Catalytic Triad in Insect RNA Viruses

Xuye Yuan1, Tatsuhiko Kadowaki1

  • 1Department of Biological Sciences, Xi'an Jiaotong-Liverpool University, Jiangsu Province, China.

Insights

Deformed wing virus (DWV) 3C protease (3Cpro) is crucial for viral replication in honey bees. This study characterizes DWV 3Cpro, revealing conserved and unique features among insect RNA viruses, paving the way for targeted therapies.

Area of Science:

  • Virology
  • Insect Pathology
  • Molecular Biology

Background:

  • Deformed wing virus (DWV) is a major threat to honey bee (Apis mellifera) health and colony survival.
  • Understanding DWV replication mechanisms is critical for developing control strategies.
  • DWV 3C protease (3Cpro) is essential for viral protein processing and replication.

Purpose of the Study:

  • To characterize the structure and function of DWV 3Cpro.
  • To investigate the catalytic triad and enzymatic properties of DWV 3Cpro.
  • To explore the evolutionary relationships of DWV 3Cpro within Picornavirales.

Main Methods:

  • AlphaFold2 structure prediction of DWV 3Cpro.
  • Analysis of protease activity using mutant proteins.
  • Enzymatic assays and inhibitor sensitivity testing (e.g., rupintrivir).
  • Comparative analysis of 3Cpro from various insect RNA viruses.

Main Results:

  • DWV 3Cpro shares enzymatic properties and inhibitor sensitivity with picornaviruses.
  • A Cys-His-Asn catalytic triad was identified in DWV 3Cpro, with variations observed in other insect RNA viruses.
  • Both precursor and mature forms of DWV 3Cpro are present in infected cells, potentially with distinct functions.
  • DWV 3Cpro is the first characterized protease among insect RNA viruses, highlighting conserved and diverse features within Picornavirales.

Conclusions:

  • DWV 3Cpro possesses unique characteristics while sharing commonalities with picornaviruses, providing insights into insect RNA virus evolution.
  • The identified inhibitors of DWV 3Cpro offer potential for developing targeted treatments against DWV infection in honey bees.
  • This research establishes a foundation for understanding DWV replication and for future therapeutic interventions.

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