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Updated: May 30, 2026

MicroRNA-based Regulation of Picornavirus Tropism
Published on: February 6, 2017
Viral miRNAs exploiting the endosomal-exosomal pathway for intercellular cross-talk and immune evasion
D Michiel Pegtel1, Martijn D B van de Garde, Jaap M Middeldorp
1VU University Medical Center, Department of Pathology, Amsterdam, the Netherlands. M.Pegtel@vumc.nl
Abstract:
The class of persistent gamma-herpesviruses has developed a variety of strategies that exploit host-cell regulatory pathways to ensure a long-lasting, well-balanced infection of their host. However when these pathways are deregulated, an otherwise harmless infection can lead to disease including cancer. We recently demonstrated that the human herpes virus 4 (HHV4) also known as Epstein-Barr virus (EBV), encodes for small regulatory non-coding microRNAs (miRNAs) that can be transferred from an infected cell to uninfected neighboring cells. Upon arrival these miRNAs are functional in the recipient cell, in that they are able to down regulate specific target genes. These secreted miRNAs are transported to recipient cells via small nano-sized vesicles (known as exosomes) that are of endosomal origin, formed as intraluminal vesicles (ILV) inside multivesicular bodies (MVB). One question that needs to be addressed is how viral miRNAs are sorted into these exosomes. Mature miRNAs, including those of viral origin, are loaded into RNA-induced silencing complexes (RISC) for gene silencing via blocking mRNA translation and/or initiating mRNA decay. Recent insights indicate that cytoplasmic RNA granules rich in RISC complexes are closely associated with endosomes. In fact, selective components of RISC, including GW182 and Argonaut proteins, miRNAs and mRNAs are present in exosomes. Thus miRNA function, mRNA stability and exosome-mediated intercellular communication converge at the level of endosomes. Since endosomes can be considered as key intracellular cross-roads that regulate communication of cells with their exterior, including neighboring cells, it is perhaps not surprising that viruses have found means to exploit this pathway to their benefit. Little is known however, how and if (micro) RNA species are specifically sorted into ILVs and what (micro)RNA-binding proteins are involved. Here we discuss recent developments relating to intracellular trafficking and function of miRNA-containing protein complexes that EBV may exploit for promoting or restricting miRNAs sorting into exosomes for intercellular regulatory functions. This article is part of a Special Issue entitled: MicroRNAs in viral gene regulation.
Insights
Epstein-Barr virus (EBV) uses exosomes to transfer microRNAs (miRNAs) between cells, potentially regulating gene expression and contributing to disease. Understanding how EBV sorts these viral miRNAs into exosomes is crucial for comprehending viral pathogenesis.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Gamma-herpesviruses, like Epstein-Barr virus (EBV), exploit host cell pathways for persistent infections.
- Deregulated viral pathways can lead to diseases, including cancer.
- EBV encodes microRNAs (miRNAs) that can be transferred to neighboring cells via exosomes, influencing recipient cell gene expression.
Purpose of the Study:
- To investigate the mechanisms by which viral miRNAs are sorted into exosomes.
- To explore the role of endosomes as a convergence point for miRNA function, mRNA stability, and exosome-mediated communication.
- To discuss how EBV might exploit intracellular trafficking pathways for miRNA sorting into exosomes.
Main Methods:
- Review of recent literature on miRNA trafficking and exosome formation.
- Analysis of the role of RNA-induced silencing complexes (RISC) in miRNA sorting.
- Discussion of endosomal pathways and their interaction with viral components.
Main Results:
- Exosomes, derived from endosomes, transport functional miRNAs between cells.
- RISC components, including miRNAs and associated proteins, are found in exosomes.
- Endosomes serve as critical intracellular hubs for miRNA sorting and intercellular communication.
Conclusions:
- Viruses, including EBV, exploit endosomal pathways for intercellular communication via exosomes.
- Specific sorting mechanisms for viral miRNAs into intraluminal vesicles (ILVs) remain largely unknown.
- Further research is needed to elucidate the role of miRNA-binding proteins in EBV exosome sorting and intercellular regulation.
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