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E2F3-dependent activation of FAM111B restricts mouse cytomegalovirus replication in primate cells
Eleonore Ostermann1, Laura-Marie Luoto1, Michaela Clausen1
1Leibniz Institute of Virology (LIV), Hamburg, Germany.
Abstract:
Cytomegaloviruses are highly species-specific as they replicate only in cells of their own or a closely related species. For instance, human cytomegalovirus cannot replicate in rodent cells, and mouse cytomegalovirus (MCMV) cannot replicate in human and monkey cells. However, the mechanisms underlying the host species restriction remain poorly understood. We have previously shown that passaging MCMV in human retinal pigment epithelial cells allows the virus to replicate to high titers in these cells due to the accumulation of adaptive mutations, such as loss-of-function mutations in the viral M117 gene. The M117 protein interacts with E2F transcription factors and activates E2F-dependent transcription. Here, we show that activation of E2F3 is primarily responsible for MCMV's inability to replicate in human cells. By transcriptome analysis, we identified two E2F3-induced serine proteases, FAM111A and FAM111B, as potential host restriction factors. By using shRNA-mediated gene knockdown and CRISPR/Cas9-mediated gene knockout, we demonstrated that FAM111B, but not its paralog FAM111A, suppresses MCMV replication in human and rhesus macaque cells. By immunofluorescence, we detected FAM111B predominantly in the nucleus of infected cells with enrichment in viral replication compartments, suggesting that it might play a role during viral replication. The fact that the FAM111B gene is conserved in primates but absent in rodents suggests that MCMV has not evolved to evade or counteract this restriction factor, which is not present in its natural host.
Importance:
Viruses must counteract host cell defenses to facilitate viral replication. Viruses with a narrow host range, such as the cytomegaloviruses, are unable to counteract cellular defenses in cells of a foreign species. However, little is known about the cellular host range factors restricting cytomegalovirus replication. Here, we show that mouse cytomegalovirus (MCMV) induces the expression of the FAM111 proteases and that FAM111B, but not FAM111A that has previously been shown to restrict the replication of polyomavirus and orthopoxvirus host range mutants, acts as a cellular factor suppressing MCMV replication in human and rhesus monkey cells. The identification of FAM111B as a host range factor should provide new insight into the physiological functions of this poorly characterized protein.
Insights
Mouse cytomegalovirus (MCMV) cannot replicate in human cells due to FAM111B, a primate-specific protein. FAM111B suppresses MCMV replication, explaining the host species restriction of this virus.
Area of Science:
- Virology
- Immunology
- Genetics
Background:
- Cytomegaloviruses (CMVs) exhibit strict species specificity, limiting their replication to specific host cells.
- The molecular mechanisms underlying this host range restriction in CMVs remain largely unknown.
- Previous studies showed adaptive mutations enable mouse CMV (MCMV) replication in human cells.
Purpose of the Study:
- To elucidate the cellular factors responsible for restricting MCMV replication in non-host species.
- To investigate the role of E2F transcription factors and their downstream targets in MCMV host restriction.
- To identify and characterize novel host restriction factors for MCMV.
Main Methods:
- Transcriptome analysis to identify E2F3-induced genes.
- Gene knockdown using shRNA and gene knockout using CRISPR/Cas9.
- Immunofluorescence to determine FAM111B localization in infected cells.
Main Results:
- E2F3 activation was identified as a key factor in MCMV's inability to replicate in human cells.
- FAM111B, an E2F3-induced serine protease, was found to suppress MCMV replication in human and rhesus macaque cells.
- FAM111B localizes to viral replication compartments within the nucleus of infected cells.
Conclusions:
- FAM111B acts as a host restriction factor limiting MCMV replication in primate cells.
- The absence of FAM111B in rodents explains why MCMV has not evolved to overcome this specific restriction.
- FAM111B represents a significant barrier to MCMV cross-species transmission and offers insights into viral host range.
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