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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
MORC3, a Component of PML Nuclear Bodies, Has a Role in Restricting Herpes Simplex Virus 1 and Human Cytomegalovirus
Elizabeth Sloan1, Anne Orr2, Roger D Everett2
1MRC-University of Glasgow Centre for Virus Research, Glasgow, Scotland, United Kingdom elizabeth.sloan@glasgow.ac.uk.
Unlabelled:
We previously reported that MORC3, a protein associated with promyelocytic leukemia nuclear bodies (PML NBs), is a target of herpes simplex virus 1 (HSV-1) ICP0-mediated degradation (E. Sloan, et al., PLoS Pathog 11:e1005059, 2015, http://dx.doi.org/10.1371/journal.ppat.1005059). Since it is well known that certain other components of the PML NB complex play an important role during an intrinsic immune response to HSV-1 and are also degraded or inactivated by ICP0, here we further investigate the role of MORC3 during HSV-1 infection. We demonstrate that MORC3 has antiviral activity during HSV-1 infection and that this antiviral role is counteracted by ICP0. In addition, MORC3's antiviral role extends to wild-type (wt) human cytomegalovirus (HCMV) infection, as its plaque-forming efficiency increased in MORC3-depleted cells. We found that MORC3 is recruited to sites associated with HSV-1 genomes after their entry into the nucleus of an infected cell, and in wt infections this is followed by its association with ICP0 foci prior to its degradation. The RING finger domain of ICP0 was required for degradation of MORC3, and we confirmed that no other HSV-1 protein is required for the loss of MORC3. We also found that MORC3 is required for fully efficient recruitment of PML, Sp100, hDaxx, and γH2AX to sites associated with HSV-1 genomes entering the host cell nucleus. This study further unravels the intricate ways in which HSV-1 has evolved to counteract the host immune response and reveals a novel function for MORC3 during the host intrinsic immune response.
Importance:
Herpesviruses have devised ways to manipulate the host intrinsic immune response to promote their own survival and persistence within the human population. One way in which this is achieved is through degradation or functional inactivation of PML NB proteins, which are recruited to viral genomes in order to repress viral transcription. Because MORC3 associates with PML NBs in uninfected cells and is a target for HSV-1-mediated degradation, we investigated the role of MORC3 during HSV-1 infection. We found that MORC3 is also recruited to viral HSV-1 genomes, and importantly it contributes to the fully efficient recruitment of PML, hDaxx, Sp100, and γH2AX to these sites. Depletion of MORC3 resulted in an increase in ICP0-null HSV-1 and wt HCMV replication and plaque formation; therefore, this study reveals that MORC3 is an antiviral factor which plays an important role during HSV-1 and HCMV infection.
Insights
MORC3 protein acts as a crucial antiviral factor against herpes simplex virus 1 (HSV-1) and human cytomegalovirus (HCMV). Herpes simplex virus 1 protein ICP0 counteracts MORC3
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Herpesviruses manipulate host immunity for survival.
- PML NBs proteins are key in intrinsic immunity against HSV-1.
- MORC3 is a PML NB component targeted by HSV-1 ICP0 for degradation.
Purpose of the Study:
- Investigate MORC3's role in HSV-1 and HCMV infection.
- Elucidate the mechanism of MORC3 interaction with viral genomes and ICP0.
- Determine MORC3's contribution to the host intrinsic immune response.
Main Methods:
- Cellular localization studies of MORC3 during viral infection.
- Viral replication assays in MORC3-depleted cells.
- Analysis of protein-protein interactions and degradation pathways.
Main Results:
- MORC3 exhibits antiviral activity against HSV-1 and HCMV.
- HSV-1 ICP0 antagonizes MORC3's antiviral function via degradation.
- MORC3 is essential for recruiting PML, Sp100, hDaxx, and γH2AX to viral genomes.
- MORC3 depletion enhances HSV-1 and HCMV replication.
Conclusions:
- MORC3 is a novel antiviral factor against herpesviruses.
- HSV-1 has evolved mechanisms to degrade MORC3 and evade immune responses.
- MORC3 plays a significant role in the intrinsic immune defense against HSV-1 and HCMV.
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