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Published on: February 7, 2019
Revisiting promyelocytic leukemia protein targeting by human cytomegalovirus immediate-early protein 1
Christina Paulus1, Thomas Harwardt2, Bernadette Walter1
1Biomedical Sciences Research Complex, University of St Andrews, St Andrews, United Kingdom.
Abstract:
Promyelocytic leukemia (PML) bodies are nuclear organelles implicated in intrinsic and innate antiviral defense. The eponymous PML proteins, central to the self-organization of PML bodies, and other restriction factors found in these organelles are common targets of viral antagonism. The 72-kDa immediate-early protein 1 (IE1) is the principal antagonist of PML bodies encoded by the human cytomegalovirus (hCMV). IE1 is believed to disrupt PML bodies by inhibiting PML SUMOylation, while PML was proposed to act as an E3 ligase for IE1 SUMOylation. PML targeting by IE1 is considered to be crucial for hCMV replication at low multiplicities of infection, in part via counteracting antiviral gene induction linked to the cellular interferon (IFN) response. However, current concepts of IE1-PML interaction are largely derived from mutant IE1 proteins known or predicted to be metabolically unstable and globally misfolded. We performed systematic clustered charge-to-alanine scanning mutagenesis and identified a stable IE1 mutant protein (IE1cc172-176) with wild-type characteristics except for neither interacting with PML proteins nor inhibiting PML SUMOylation. Consequently, IE1cc172-176 does not associate with PML bodies and is selectively impaired for disrupting these organelles. Surprisingly, functional analysis of IE1cc172-176 revealed that the protein is hypermodified by mixed SUMO chains and that IE1 SUMOylation depends on nucleosome rather than PML binding. Furthermore, a mutant hCMV expressing IE1cc172-176 was only slightly attenuated compared to an IE1-null virus even at low multiplicities of infection. Finally, hCMV-induced expression of cytokine and IFN-stimulated genes turned out to be reduced rather than increased in the presence of IE1cc172-176 relative to wild-type IE1. Our findings challenge present views on the relationship of IE1 with PML and the role of PML in hCMV replication. This study also provides initial evidence for the idea that disruption of PML bodies upon viral infection is linked to activation rather than inhibition of innate immunity.
Insights
Human cytomegalovirus IE1 protein disrupts Promyelocytic leukemia (PML) bodies, but a stable mutant IE1 protein challenges this, revealing PML bodies may activate innate immunity during viral infection.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Promyelocytic leukemia (PML) bodies are nuclear organelles crucial for antiviral defense.
- Human cytomegalovirus (hCMV) protein IE1 antagonizes PML bodies, thought to be vital for viral replication and interferon response evasion.
- Existing knowledge relies on unstable IE1 mutants, potentially skewing understanding of IE1-PML interactions.
Purpose of the Study:
- To investigate the precise role of IE1-PML interactions in hCMV replication and innate immunity.
- To characterize a stable IE1 mutant protein lacking PML-binding and PML body disruption capabilities.
- To re-evaluate the function of PML bodies in hCMV infection.
Main Methods:
- Systematic clustered charge-to-alanine scanning mutagenesis to generate stable IE1 mutants.
- Analysis of IE1-PML protein interactions and SUMOylation.
- Functional studies of a stable IE1 mutant (IE1cc172-176) in hCMV replication and innate immune gene induction.
- Comparison of wild-type IE1, mutant IE1cc172-176, and IE1-null hCMV strains.
Main Results:
- A stable IE1 mutant (IE1cc172-176) was identified that does not interact with PML or disrupt PML bodies.
- IE1 SUMOylation was found to be nucleosome-dependent, not PML-dependent.
- hCMV expressing IE1cc172-176 showed only slight attenuation, even at low infection multiplicities.
- Expression of IFN-stimulated genes was reduced, not increased, in the presence of IE1cc172-176 compared to wild-type IE1.
Conclusions:
- The interaction between IE1 and PML is not essential for hCMV replication as previously thought.
- PML body disruption by IE1 may not be the primary mechanism for hCMV to counteract the interferon response.
- Viral disruption of PML bodies might be linked to the activation, rather than inhibition, of innate immunity.
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