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Laminated cisternae of the rough endoplasmic reticulum induced by coronavirus MHV-A59 infection
Abstract:
The infection of murine fibroblasts of the sac- line with a coronavirus, mouse hepatitis virus strain A59 (MHV-A59), results in a novel modification to some cisternae of the rough endoplasmic reticulum (RER). From 8 hours post infection (h.p.i.) we see in thin sections pairs of cisternae closely, stably and uniformly aligned. Serial sectioning shows that the regions of pairing or lamination extend for many thousands of nm in two dimensions, with the spacing between the juxtaposed membranes remaining very uniform at about 18 nm. These structures appear coincident with the onset of accumulation of the viral glycoprotein E1 in the RER membrane but 2 hours after the viral glycoprotein E2 can first be detected there. Ribosomes are excluded from the paired cisternal surfaces, while budding of progeny virions has never been seen at the cisternal membranes facing the cytosol, although ribosomes bind there. The lumina of paired cixternae are usually devoid of virions which, however, accumulate in areas where the paired cisternae diverge. Electron immunocytochemistry shows that both E1 and E2 glycoproteins are abundant in the paired cisternae. Following labelling for the E1 glycoprotein we see a periodic fine structure, rows of "beads" with a centre to centre spacing of about 7.5 nm, in the region between the paired membranes. In oblique sections of this region in cells fixed as if for the immunoperoxidase labelling, but omitting all its steps we see parallel rows of "beads" separated by about 7 nm. We suggest that the membrane spanning viral glycoprotein E1 together with viral nucleocapsids may be involved in laminating cisternae of the RER.
Insights
Mouse hepatitis virus infection causes unique rough endoplasmic reticulum (RER) cisternae modifications in fibroblasts. Viral glycoproteins E1 and E2 are abundant in these paired RER structures, suggesting a role in viral replication.
Area of Science:
- Virology
- Cell Biology
- Structural Biology
Background:
- Coronaviruses, such as mouse hepatitis virus strain A59 (MHV-A59), infect host cells and can alter cellular machinery.
- The rough endoplasmic reticulum (RER) is a key organelle involved in protein synthesis and modification, including viral protein production.
Purpose of the Study:
- To investigate the structural modifications of the RER induced by MHV-A59 infection in murine fibroblasts.
- To identify the viral components involved in these RER alterations.
Main Methods:
- Thin section electron microscopy of infected murine fibroblasts.
- Serial sectioning to analyze the 3D structure of modified RER cisternae.
- Electron immunocytochemistry to localize viral glycoproteins E1 and E2.
- Analysis of fine structure in paired membrane regions.
Main Results:
- MHV-A59 infection induced the formation of paired, uniformly aligned RER cisternae starting at 8 hours post-infection.
- These paired cisternae showed exclusion of ribosomes and lack of virion budding at specific surfaces.
- Viral glycoproteins E1 and E2 were abundant in the paired cisternae.
- A periodic fine structure, described as 'beads,' was observed between the paired membranes, with viral glycoprotein E1 and nucleocapsids implicated.
Conclusions:
- The formation of laminated RER cisternae is a novel modification induced by MHV-A59 infection.
- Viral glycoprotein E1, potentially in conjunction with nucleocapsids, appears to play a role in the lamination of RER cisternae.
- These structural changes may be linked to viral replication processes within the RER.