Filoviruses require endosomal cysteine proteases for entry but exhibit distinct protease preferences

John Misasi1, Kartik Chandran, Jin-Yi Yang

  • 1Division of Hematology, Department of Medicine, Brigham & Women’s Hospital, Boston, Massachusetts, USA.

Journal of Virology
|January 13, 2012
PubMed

Insights

Filovirus entry relies on endosomal cysteine proteases, with specific viruses like Zaire and Cote d'Ivoire ebolaviruses depending on cathepsin B. This protease dependence is linked to viral glycoprotein sequence variations.

Area of Science:

  • Virology
  • Molecular Biology
  • Cell Biology

Background:

  • Filoviruses cause severe hemorrhagic fever outbreaks.
  • Endosomal cysteine proteases were previously identified as host factors for Zaire ebolavirus entry.
  • These proteases are crucial for cleaving the viral glycoprotein GP1 and enabling interaction with Niemann-Pick C1.

Purpose of the Study:

  • To investigate if diverse filovirus glycoproteins also depend on endosomal cysteine proteases for infection.
  • To determine the specific roles of cathepsin B and L in the entry of various filoviruses.
  • To correlate virus-specific protease dependence with genetic variations in viral glycoproteins.

Main Methods:

  • Utilized selective protease inhibitors and knockout-derived cell lines.
  • Analyzed sequence polymorphisms in GP1 and GP2 of different filovirus isolates.
  • Correlated genetic variations with observed cathepsin B dependence/independence.

Main Results:

  • Infection by diverse filovirus glycoproteins depends on endosomal cysteine proteases.
  • Zaire and Cote d'Ivoire ebolaviruses require cathepsin B, unlike Sudan, Reston, and Marburg viruses.
  • Sequence variations at GP1 residue 47 and GP2 residue 584 dictate cathepsin B dependence, accurately predicting the status of new isolates like Bundibugyo ebolavirus.

Conclusions:

  • Virus-specific differences in cathepsin B and L requirements for filovirus entry are linked to glycoprotein polymorphisms.
  • The findings accurately predict cathepsin B dependence for newly identified filovirus species.
  • The utilization of endosomal cysteine proteases for host cell entry is a conserved mechanism across the Filoviridae family.

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