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Published on: October 30, 2021
Filovirus proteins for antiviral drug discovery: Structure/function bases of the replication cycle
Baptiste Martin1, Bruno Canard1, Etienne Decroly1
1Laboratoire Architecture et Fonction des Macromolécules Biologiques (AFMB), UMR7257 CNRS, Parc Scientifique de Luminy, Aix-Marseille Université, Marseille, France.
Abstract:
Filoviruses are important pathogens that cause severe and often fatal hemorrhagic fever in humans, for which no approved vaccines and antiviral treatments are yet available. In an earlier article (Martin et al., Antiviral Research, 2016), we reviewed the role of the filovirus surface glycoprotein in replication and as a target for drugs and vaccines. In this review, we focus on recent findings on the filovirus replication machinery and how they could be used for the identification of new therapeutic targets and the development of new antiviral compounds. First, we summarize the recent structural and functional advances on the molecules involved in filovirus replication/transcription cycle, particularly the NP, VP30, VP35 proteins, and the "large" protein L, which harbors the RNA-dependent RNA polymerase (RdRp) and mRNA capping activities. These proteins are essential for viral mRNA synthesis and genome replication, and consequently they constitute attractive targets for drug design. We then describe how these insights into filovirus replication mechanisms and the structure/function characterization of the involved proteins have led to the development of new and innovative antiviral strategies that may help reduce the filovirus disease case fatality rate through post-exposure or prophylactic treatments.
Insights
New antiviral strategies targeting filovirus replication machinery offer hope for treating severe hemorrhagic fevers. Understanding viral proteins like L, NP, VP30, and VP35 is key to developing effective post-exposure or prophylactic treatments.
Area of Science:
- Virology
- Pathogen Research
- Drug Discovery
Background:
- Filoviruses cause severe hemorrhagic fevers with no approved treatments.
- Previous work reviewed the surface glycoprotein's role in replication and as a therapeutic target.
Purpose of the Study:
- To review recent findings on filovirus replication machinery.
- To identify new therapeutic targets and develop novel antiviral compounds.
Main Methods:
- Summarizing structural and functional advances of key viral proteins (NP, VP30, VP35, L).
- Analyzing the RNA-dependent RNA polymerase (RdRp) and mRNA capping activities of the L protein.
Main Results:
- Identified essential roles of NP, VP30, VP35, and L proteins in viral mRNA synthesis and replication.
- Characterized the structure-function relationships of these critical viral proteins.
Conclusions:
- Filovirus replication proteins are attractive targets for antiviral drug design.
- Insights into replication mechanisms facilitate the development of innovative antiviral strategies.
- New treatments may reduce the case fatality rate of filovirus diseases via post-exposure or prophylactic interventions.
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