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Updated: May 17, 2026

MicroRNA-based Regulation of Picornavirus Tropism
Published on: February 6, 2017
Picornavirus modification of a host mRNA decay protein
Janet M Rozovics1, Amanda J Chase, Andrea L Cathcart
1Department of Microbiology and Molecular Genetics, School of Medicine, University of California, Irvine, California, USA.
Unlabelled:
Due to the limited coding capacity of picornavirus genomic RNAs, host RNA binding proteins play essential roles during viral translation and RNA replication. Here we describe experiments suggesting that AUF1, a host RNA binding protein involved in mRNA decay, plays a role in the infectious cycle of picornaviruses such as poliovirus and human rhinovirus. We observed cleavage of AUF1 during poliovirus or human rhinovirus infection, as well as interaction of this protein with the 5' noncoding regions of these viral genomes. Additionally, the picornavirus proteinase 3CD, encoded by poliovirus or human rhinovirus genomic RNAs, was shown to cleave all four isoforms of recombinant AUF1 at a specific N-terminal site in vitro. Finally, endogenous AUF1 was found to relocalize from the nucleus to the cytoplasm in poliovirus-infected HeLa cells to sites adjacent to (but distinct from) putative viral RNA replication complexes.
Importance:
This study derives its significance from reporting how picornaviruses like poliovirus and human rhinovirus proteolytically cleave a key player (AUF1) in host mRNA decay pathways during viral infection. Beyond cleavage of AUF1 by the major viral proteinase encoded in picornavirus genomes, infection by poliovirus results in the relocalization of this host cell RNA binding protein from the nucleus to the cytoplasm. The alteration of both the physical state of AUF1 and its cellular location illuminates how small RNA viruses manipulate the activities of host cell RNA binding proteins to ensure a faithful intracellular replication cycle.
Insights
Picornaviruses like poliovirus cleave the host RNA binding protein AUF1, disrupting mRNA decay pathways. This viral proteinase also causes AUF1 to relocate within infected cells, aiding viral replication.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Host RNA binding proteins are crucial for picornavirus replication due to limited viral genome coding capacity.
- AUF1, a host protein involved in mRNA decay, is investigated for its role in picornavirus infection.
Purpose of the Study:
- To investigate the role of AUF1 in the infectious cycle of picornaviruses, including poliovirus and human rhinovirus.
- To elucidate how picornaviruses manipulate host RNA binding proteins for replication.
Main Methods:
- Observing AUF1 cleavage and interaction with viral RNA during poliovirus and human rhinovirus infection.
- In vitro cleavage assays using recombinant AUF1 and picornavirus proteinase 3CD.
- Analyzing the cellular localization of endogenous AUF1 in infected cells.
Main Results:
- AUF1 was cleaved during poliovirus and human rhinovirus infection.
- AUF1 interacts with the 5' noncoding regions of these viral genomes.
- Picornavirus proteinase 3CD cleaved all AUF1 isoforms in vitro.
- Endogenous AUF1 relocalized from the nucleus to the cytoplasm in poliovirus-infected cells.
Conclusions:
- Picornaviruses proteolytically cleave AUF1, a key host mRNA decay factor.
- Picornavirus infection leads to AUF1 relocalization, suggesting manipulation of host factors for viral replication.
- These findings highlight mechanisms by which small RNA viruses exploit host cell machinery.
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