Analysis of the interaction between host factor Sam68 and viral elements during foot-and-mouth disease virus

Devendra K Rai1, Paul Lawrence2, Anna Kloc3

  • 1Foreign Animal Disease Research Unit, United States Department of Agriculture, Agricultural Research Service, Plum Island Animal Disease Center, USDA/ARS/NAA, P.O. Box 848, Greenport, NY, 11944, USA. devendra.rai@ars.usda.gov.

Virology Journal
|December 24, 2015
PubMed
Abstract

Insights

Src-associated protein of 68 kDa in mitosis (Sam68) aids Foot-and-mouth disease virus (FMDV) replication by binding viral proteins and RNA. Disrupting Sam68 binding to FMDV RNA motifs renders the virus non-viable, highlighting Sam68 as a crucial host factor.

Area of Science:

  • Virology
  • Molecular Biology
  • Cell Biology

Background:

  • Src-associated protein of 68 kDa in mitosis (Sam68) is an RNA-binding protein involved in cellular stress responses, including viral infections.
  • Sam68 is implicated in retroviral and picornavirus lifecycles and serves as a marker for virus-induced stress granules (SGs).
  • Previous studies showed Sam68 redistribution to the cytoplasm in FMDV-infected cells and its interaction with viral protease 3C(pro), reducing viral titers upon knockdown.

Purpose of the Study:

  • To elucidate the role of Sam68 in Foot-and-mouth disease virus (FMDV) replication.
  • To investigate the interaction between Sam68, FMDV RNA, and viral proteins.
  • To determine how Sam68 benefits FMDV during infection.

Main Methods:

  • Immunofluorescent microscopy to observe Sam68 localization and co-localization with SG markers.
  • Electromobility shift assays to assess Sam68-FMDV RNA interactions, focusing on RAAA motifs in the IRES.
  • Transfection of mammalian cells with wild-type and mutant FMDV replicons.
  • Cell-free systems to study the impact of Sam68 depletion on viral RNA and protein synthesis.
  • Co-immunoprecipitation, structural modeling, and subcellular fractionation to explore viral protein-Sam68 interactions.

Main Results:

  • FMDV infection induced cytoplasmic redistribution of Sam68, with transient co-localization with the SG marker TIA-1.
  • Mutations disrupting FMDV IRES RAAA motifs reduced Sam68-RNA complex formation, leading to non-viable progeny viruses and impaired replication.
  • Sam68 depletion in cell-free extracts significantly reduced FMDV RNA replication, which was restored by adding recombinant Sam68.
  • Sam68 specifically co-precipitated with FMDV non-structural proteins 3D(pol) and 3C(pro).

Conclusions:

  • Sam68 is a specific binding partner for FMDV non-structural proteins 3C(pro) and 3D(pol).
  • Mutations in FMDV IRES RAAA motifs decrease Sam68 affinity, rendering the mutant RNA non-viable.
  • Sam68 acts as a host factor co-opted by FMDV, interacting with both viral RNA motifs and non-structural proteins.