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Updated: Jul 11, 2026

Isolation of Viral Replication Compartment-enriched Sub-nuclear Fractions from Adenovirus-infected Normal Human Cells
Published on: November 12, 2015
Three-dimensional analysis of a viral RNA replication complex reveals a virus-induced mini-organelle
Benjamin G Kopek1, Guy Perkins, David J Miller
1Institute for Molecular Virology, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.
Abstract:
Positive-strand RNA viruses are the largest genetic class of viruses and include many serious human pathogens. All positive-strand RNA viruses replicate their genomes in association with intracellular membrane rearrangements such as single- or double-membrane vesicles. However, the exact sites of RNA synthesis and crucial topological relationships between relevant membranes, vesicle interiors, surrounding lumens, and cytoplasm generally are poorly defined. We applied electron microscope tomography and complementary approaches to flock house virus (FHV)-infected Drosophila cells to provide the first 3-D analysis of such replication complexes. The sole FHV RNA replication factor, protein A, and FHV-specific 5-bromouridine 5'-triphosphate incorporation localized between inner and outer mitochondrial membranes inside approximately 50-nm vesicles (spherules), which thus are FHV-induced compartments for viral RNA synthesis. All such FHV spherules were outer mitochondrial membrane invaginations with interiors connected to the cytoplasm by a necked channel of approximately 10-nm diameter, which is sufficient for ribonucleotide import and product RNA export. Tomographic, biochemical, and other results imply that FHV spherules contain, on average, three RNA replication intermediates and an interior shell of approximately 100 membrane-spanning, self-interacting protein As. The results identify spherules as the site of protein A and nascent RNA accumulation and define spherule topology, dimensions, and stoichiometry to reveal the nature and many details of the organization and function of the FHV RNA replication complex. The resulting insights appear relevant to many other positive-strand RNA viruses and support recently proposed structural and likely evolutionary parallels with retrovirus and double-stranded RNA virus virions.
Insights
Flock house virus (FHV) RNA replication occurs within 50-nm spherules on mitochondria. These viral compartments facilitate RNA synthesis and export, offering insights into positive-strand RNA virus replication.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Positive-strand RNA viruses are a major class of human pathogens.
- Viral RNA replication involves intracellular membrane rearrangements, but sites and topology are often unclear.
- Flock house virus (FHV) serves as a model for studying these replication complexes.
Purpose of the Study:
- To elucidate the 3-D structure and organization of FHV RNA replication complexes.
- To identify the precise location and topological relationships of viral RNA synthesis sites.
- To understand the role of FHV protein A in replication complex formation.
Main Methods:
- Electron microscope tomography of FHV-infected Drosophila cells.
- Biochemical analyses.
- 5-bromouridine 5'-triphosphate incorporation assays.
Main Results:
- FHV replication occurs within ~50-nm spherules located on the outer mitochondrial membrane.
- These spherules are invaginations connected to the cytoplasm via a ~10-nm channel, enabling molecule transport.
- Each spherule contains approximately three RNA replication intermediates and ~100 protein A molecules forming an interior shell.
Conclusions:
- Spherules are the specific sites of FHV RNA synthesis, protein A accumulation, and nascent RNA.
- The study defines the topology, dimensions, and stoichiometry of the FHV replication complex.
- Findings provide insights into positive-strand RNA virus replication mechanisms and potential evolutionary links to other virus types.
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