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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Liver X Receptor-Inducible Host E3 Ligase IDOL Targets a Human Cytomegalovirus Reactivation Determinant
Luwanika Mlera1,2, Donna Collins-McMillen1,2, Sebastian Zeltzer1,2
1Department of Immunobiology, University of Arizona, Tucson, Arizona, USA.
Abstract:
Liver X receptor (LXR) signaling broadly restricts virus replication; however, the mechanisms of restriction are poorly defined. Here, we demonstrate that the cellular E3 ligase LXR-inducible degrader of low-density lipoprotein receptor (IDOL) targets the human cytomegalovirus (HMCV) UL136p33 protein for turnover. UL136 encodes multiple proteins that differentially impact latency and reactivation. UL136p33 is a determinant of reactivation. UL136p33 is targeted for rapid turnover by the proteasome, and its stabilization by mutation of lysine residues to arginine results in a failure to quiet replication for latency. We show that IDOL targets UL136p33 for turnover but not the stabilized variant. IDOL is highly expressed in undifferentiated hematopoietic cells where HCMV establishes latency but is sharply downregulated upon differentiation, a stimulus for reactivation. We hypothesize that IDOL maintains low levels of UL136p33 for the establishment of latency. Consistent with this hypothesis, knockdown of IDOL impacts viral gene expression in wild-type (WT) HCMV infection but not in infection where UL136p33 has been stabilized. Furthermore, the induction of LXR signaling restricts WT HCMV reactivation from latency but does not affect the replication of a recombinant virus expressing a stabilized variant of UL136p33. This work establishes the UL136p33-IDOL interaction as a key regulator of the bistable switch between latency and reactivation. It further suggests a model whereby a key viral determinant of HCMV reactivation is regulated by a host E3 ligase and acts as a sensor at the tipping point between the decision to maintain the latent state or exit latency for reactivation. IMPORTANCE Herpesviruses establish lifelong latent infections, which pose an important risk for disease particularly in the immunocompromised. Our work is focused on the betaherpesvirus human cytomegalovirus (HCMV) that latently infects the majority of the population worldwide. Defining the mechanisms by which HCMV establishes latency or reactivates from latency is important for controlling viral disease. Here, we demonstrate that the cellular inducible degrader of low-density lipoprotein receptor (IDOL) targets a HCMV determinant of reactivation for degradation. The instability of this determinant is important for the establishment of latency. This work defines a pivotal virus-host interaction that allows HCMV to sense changes in host biology to navigate decisions to establish latency or to replicate.
Insights
The cellular E3 ligase IDOL targets human cytomegalovirus (HCMV) UL136p33 for degradation, a key step for establishing viral latency. This host-viral interaction regulates HCMV
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Herpesviruses, including human cytomegalovirus (HCMV), establish lifelong latent infections.
- Latency poses significant disease risks, especially in immunocompromised individuals.
- Mechanisms governing HCMV latency and reactivation are crucial for disease control.
Purpose of the Study:
- To elucidate the mechanisms by which Liver X receptor (LXR) signaling restricts virus replication.
- To identify host factors involved in regulating human cytomegalovirus (HCMV) latency and reactivation.
- To investigate the role of the E3 ligase IDOL in controlling HCMV UL136p33 stability and viral lifecycle.
Main Methods:
- Investigated the interaction between the cellular E3 ligase IDOL and HCMV UL136p33 protein.
- Utilized proteasomal degradation assays and site-directed mutagenesis to study UL136p33 stability.
- Examined IDOL expression in hematopoietic cells and its correlation with HCMV latency and differentiation.
- Assessed the impact of IDOL knockdown and LXR signaling induction on HCMV replication and reactivation.
Main Results:
- The cellular E3 ligase IDOL targets the HCMV UL136p33 protein for proteasomal degradation.
- Stabilization of UL136p33 by mutation prevents viral replication silencing necessary for latency.
- IDOL expression is high in undifferentiated cells (HCMV latency) and downregulated upon differentiation (reactivation stimulus).
- Knockdown of IDOL affects viral gene expression in WT HCMV infection, but not with stabilized UL136p33.
- LXR signaling restricts WT HCMV reactivation, but not that of a virus with stabilized UL136p33.
Conclusions:
- The UL136p33-IDOL interaction is a critical regulator of the switch between HCMV latency and reactivation.
- HCMV UL136p33 stability, controlled by host E3 ligase IDOL, acts as a sensor for host conditions.
- This host-viral interaction allows HCMV to navigate decisions between maintaining latency or initiating replication.

