Conserved Oligomeric Golgi (COG) Complex Proteins Facilitate Orthopoxvirus Entry, Fusion and Spread

Susan Realegeno1, Lalita Priyamvada1, Amrita Kumar2

  • 1Poxvirus and Rabies Branch, Centers for Disease Control and Prevention, Atlanta, GA 3033, USA.

Viruses
|July 8, 2020
PubMed

Insights

The conserved oligomeric Golgi (COG) complex is essential for orthopoxvirus (OPXV) replication. Disrupting COG genes in host cells significantly impairs monkeypox virus (MPXV) and vaccinia virus (VACV) infection, affecting viral entry and spread.

Area of Science:

  • Virology
  • Cell Biology
  • Molecular Biology

Background:

  • Orthopoxviruses (OPXV) rely on host cell machinery for replication.
  • Previous genetic screens identified host factors crucial for monkeypox virus (MPXV) infection, including the conserved oligomeric Golgi (COG) complex.
  • The COG complex is vital for membrane trafficking and Golgi structure.

Purpose of the Study:

  • To investigate the role of the COG complex in OPXV infection.
  • To determine how COG gene knockout (KO) mutations affect MPXV and vaccinia virus (VACV) infection.

Main Methods:

  • Utilized cell lines with individual COG gene knockout (KO) mutations.
  • Infected KO and wild-type (WT) cells with MPXV and VACV.
  • Assessed viral plaque size, virus yield, viral fusion, entry, and actin tail formation.

Main Results:

  • COG KO cells exhibited smaller plaques and lower virus yields for both MPXV and VACV.
  • Reversing KO phenotypes restored normal plaque sizes, confirming COG's role.
  • VACV infection in KO cells showed reduced viral fusion, entry, and actin tail formation.

Conclusions:

  • The COG complex is critical for early stages of OPXV infection, including viral entry.
  • Disruption of COG complex function impairs viral spread and replication.
  • COG complex proteins are essential host factors for OPXV pathogenesis.

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