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Cliffe, A. R.

Publications and source records attributed to Cliffe, A. R..

2 recordsLinked to original sources

PML-Dependent Memory of Type I Interferon Treatment Results in a Restricted Form of HSV Latency

Herpes simplex virus (HSV) establishes latent infection in long-lived neurons. During initial infection, neurons are exposed to multiple inflammatory cytokines but the effects of immune signaling on the nature of HSV latency is unknown. We show that initial infection of primary murine neurons in the presence of type I interferon (IFN) results in a form of latency that is restricted for reactivation. We also found that the subnuclear condensates, promyelocytic leukemia-nuclear bodies (PML-NBs), are absent from primary sympathetic and sensory neurons but form with type I IFN treatment and persist even when IFN signaling resolves. HSV-1 genomes colocalized with PML-NBs throughout a latent infection of neurons only when type I IFN was present during initial infection. Depletion of PML prior to or following infection did not impact the establishment latency; however, it did rescue the ability of HSV to reactivate from IFN-treated neurons. This study demonstrates that viral genomes possess a memory of the IFN response during de novo infection, which results in differential subnuclear positioning and ultimately restricts the ability of genomes to reactivate.

immunology

Neuronal Hyperexcitability is a DLK-dependent Trigger of HSV-1 Reactivation that can be Induced by IL-1

Herpes Simplex Virus (HSV) establishes a latent infection in neurons and periodically reactivates to cause disease. The neuronal stimuli that trigger HSV reactivation have not been fully elucidated. Here we demonstrate that HSV reactivation can be induced by neuronal hyperexcitability. Neuronal stimulation-induced reactivation was dependent on voltage-gated ion and hyperpolarization-activated cyclic nucleotide-gated (HCN) channels, demonstrating that neuronal activity is required for reactivation. Hyperexcitability-induced reactivation was dependent on the neuronal pathway of DLK/JNK activation and progressed via an initial wave of viral gene expression that was independent of histone demethylase activity and linked to histone phosphorylation. IL-1{beta} induces neuronal hyperexcitability and is released under conditions of stress and fever; both known triggers of clinical HSV reactivation. IL-1{beta} induced histone phosphorylation in sympathetic neurons, and importantly HSV reactivation, which was dependent on DLK and neuronal excitability. Thus, HSV co-opts an innate immune pathway resulting from IL-1 stimulation of neurons to induce reactivation.

microbiology