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Temporal Analysis of the Nuclear-to-cytoplasmic Translocation of a Herpes Simplex Virus 1 Protein by Immunofluorescent Confocal Microscopy
Published on: November 4, 2018
Glycoprotein M of herpes simplex virus 1 is incorporated into virions during budding at the inner nuclear membrane
Joel D Baines1, Elizabeth Wills, Robert J Jacob
1C5169 Veterinary Education Center, Cornell University, Ithaca, NY 14853, USA. jdb11@cornell.edu
Abstract:
It is widely accepted that nucleocapsids of herpesviruses bud through the inner nuclear membrane (INM), but few studies have been undertaken to characterize the composition of these nascent virions. Such knowledge would shed light on the budding reaction at the INM and subsequent steps in the egress pathway. The present study focuses on glycoprotein M (gM), a type III integral membrane protein of herpes simplex virus 1 (HSV-1) that likely contains eight transmembrane domains. The results indicated that gM localized primarily at the perinuclear region, with especially bright staining near the nuclear membrane (NM). Immunogold electron microscopic analysis indicated that, like gB and gD (M. R. Torrisi et al., J. Virol. 66:554-561, 1992), gM localized within both leaflets of the NM, the envelopes of nascent virions that accumulate in the perinuclear space, and the envelopes of cytoplasmic and mature extracellular virus particles. Indirect immunofluorescence studies revealed that gM colocalized almost completely with a marker of the Golgi apparatus and partially with a marker of the trans-Golgi network (TGN), whether or not these markers were displaced to the perinuclear region during infection. gM was also located in punctate extensions and invaginations of the NM induced by the absence of a viral kinase encoded by HSV-1 U(S)3 and within virions located in these extensions. Our findings therefore support the proposition that gM, like gB and gD, becomes incorporated into the virion envelope upon budding through the INM. The localization of viral glycoproteins and Golgi and TGN markers to a perinuclear region may represent a mechanism to facilitate the production of infectious nascent virions, thereby increasing the amount of infectivity released upon cellular lysis.
Insights
Herpes simplex virus 1 glycoprotein M (gM) is incorporated into nascent virions during budding through the inner nuclear membrane. This localization, along with Golgi markers, may enhance infectious virion production and release.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Herpesviruses bud through the inner nuclear membrane (INM), but virion composition during this process is poorly understood.
- Understanding nascent virion composition is crucial for elucidating the budding reaction and viral egress pathways.
Purpose of the Study:
- To investigate the localization and incorporation of herpes simplex virus 1 glycoprotein M (gM) during virion assembly and egress.
- To determine if gM is integrated into the virion envelope during budding through the INM.
Main Methods:
- Immunogold electron microscopy to analyze gM localization within the nuclear membrane and nascent virions.
- Indirect immunofluorescence to assess gM colocalization with Golgi apparatus and trans-Golgi network (TGN) markers.
- Analysis of gM localization in nuclear membrane extensions induced by the absence of viral kinase U(S)3.
Main Results:
- Glycoprotein M (gM) localizes to the perinuclear region and strongly to the nuclear membrane (NM).
- gM is found in both leaflets of the NM, envelopes of nascent virions in the perinuclear space, and mature extracellular virions.
- gM colocalizes with Golgi and partially with TGN markers, and is present in virions within NM extensions.
Conclusions:
- Glycoprotein M (gM) is incorporated into the virion envelope during budding through the inner nuclear membrane (INM), similar to gB and gD.
- The perinuclear localization of viral glycoproteins and Golgi/TGN markers may facilitate infectious nascent virion production and enhance release upon cell lysis.
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