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Updated: Mar 28, 2026

Dissecting Host-virus Interaction in Lytic Replication of a Model Herpesvirus
Published on: October 7, 2011
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.
Background:
The nuclear protein Src-associated protein of 68 kDa in mitosis (Sam68) is known to bind RNA and be involved in cellular processes triggered in response to environmental stresses, including virus infection. Interestingly, Sam68 is a multi-functional protein implicated in the life cycle of retroviruses and picornaviruses and is also considered a marker of virus-induced stress granules (SGs). Recently, we demonstrated the partial redistribution of Sam68 to the cytoplasm in FMDV infected cells, its interaction with viral protease 3C(pro), and found a significant reduction in viral titers as consequence of Sam68-specific siRNA knockdowns. Despite of that, details of how it benefits FMDV remains to be elucidated.
Methods:
Sam68 cytoplasmic localization was examined by immunofluorescent microscopy, counterstaining with antibodies against Sam68, a viral capsid protein and markers of SGs. The relevance of RAAA motifs in the IRES was investigated using electromobility shift assays with Sam68 protein and parental and mutant FMDV RNAs. In addition, full genome WT and mutant or G-luc replicon RNAs were tested following transfection in mammalian cells. The impact of Sam68 depletion to virus protein and RNA synthesis was investigated in a cell-free system. Lastly, through co-immunoprecipitation, structural modeling, and subcellular fractionation, viral protein interactions with Sam68 were explored.
Results:
FMDV-induced cytoplasmic redistribution of Sam68 resulted in it temporarily co-localizing with SG marker: TIA-1. Mutations that disrupted FMDV IRES RAAA motifs, with putative affinity to Sam68 in domain 3 and 4 cause a reduction on the formation of ribonucleoprotein complexes with this protein and resulted in non-viable progeny viruses and replication-impaired replicons. Furthermore, depletion of Sam68 in cell-free extracts greatly diminished FMDV RNA replication, which was restored by addition of recombinant Sam68. The results here demonstrated that Sam68 specifically co-precipitates with both FMDV 3D(pol) and 3C(pro) consistent with early observations of FMDV 3C(pro)-induced cleavage of Sam68.
Conclusion:
We have found that Sam68 is a specific binding partner for FMDV non-structural proteins 3C(pro) and 3D(pol) and showed that mutations at RAAA motifs in IRES domains 3 and 4 cause a decrease in Sam68 affinity to these RNA elements and rendered the mutant RNA non-viable. Interestingly, in FMDV infected cells re-localized Sam68 was transiently detected along with SG markers in the cytoplasm. These results support the importance of Sam68 as a host factor co-opted by FMDV during infection and demonstrate that Sam68 interact with both, FMDV RNA motifs in the IRES and viral non-structural proteins 3C(pro) and 3D(pol).
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.
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