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Purification of Viral DNA for the Identification of Associated Viral and Cellular Proteins
Published on: August 31, 2017
Zinc ionophores pyrithione inhibits herpes simplex virus replication through interfering with proteasome function and
1Center for Public Health Research, Medical School, Nanjing University, Nanjing, PR China.
Abstract:
Pyrithione (PT), known as a zinc ionophore, is effective against several pathogens from the Streptococcus and Staphylococcus genera. The antiviral activity of PT was also reported against a number of RNA viruses. In this paper, we showed that PT could effectively inhibit herpes simplex virus types 1 and 2 (HSV-1 and HSV-2). PT inhibited HSV late gene (Glycoprotein D, gD) expression and the production of viral progeny, and this action was dependent on Zn(2+). Further studies showed that PT suppressed the expression of HSV immediate early (IE) gene, the infected cell polypeptide 4 (ICP4), but had less effect on another regulatory IE protein, ICP0. It was found that PT treatment could interfere with cellular ubiquitin-proteasome system (UPS), leading to the inhibition of HSV-2-induced IκB-α degradation to inhibit NF-κB activation and enhanced promyelocytic leukemia protein (PML) stability in nucleus. However, PT did not show direct inhibition of 26S proteasome activity. Instead, it induced Zn(2+) influx, which facilitated the dysregulation of UPS and the accumulation of intracellular ubiquitin-conjugates. UPS inhibition by PT caused disruption of IκB-α degradation and NF-κB activation thus leading to marked reduction of viral titer.
Insights
Pyrithione (PT) effectively inhibits herpes simplex viruses (HSV-1 and HSV-2) by disrupting the ubiquitin-proteasome system (UPS). This zinc-dependent antiviral action reduces viral gene expression and progeny production.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Pyrithione (PT) is a known zinc ionophore with antimicrobial and antiviral properties against RNA viruses.
- Previous research indicates PT's efficacy against Streptococcus and Staphylococcus pathogens.
- The antiviral mechanisms of PT, particularly against DNA viruses like HSV, require further elucidation.
Purpose of the Study:
- To investigate the antiviral activity of Pyrithione (PT) against herpes simplex virus types 1 and 2 (HSV-1 and HSV-2).
- To elucidate the molecular mechanisms underlying PT's inhibitory effects on HSV replication.
- To determine the role of zinc ions (Zn2+) and the ubiquitin-proteasome system (UPS) in PT's antiviral action.
Main Methods:
- Cell culture and viral infection assays with HSV-1 and HSV-2.
- Quantitative analysis of viral gene expression (late gene gD, immediate early genes ICP4 and ICP0).
- Western blot analysis to assess protein degradation (IκB-α), activation (NF-κB), and stability (PML).
- Assessment of 26S proteasome activity and intracellular ubiquitin-conjugate levels.
- Measurement of intracellular zinc ion concentration.
Main Results:
- PT significantly inhibited HSV-1 and HSV-2 replication, reducing viral progeny production.
- PT suppressed the expression of HSV late gene Glycoprotein D (gD) and immediate early gene ICP4 in a Zn(2+)-dependent manner.
- PT treatment interfered with the cellular ubiquitin-proteasome system (UPS), inhibiting HSV-2-induced IκB-α degradation and NF-κB activation.
- PT enhanced the stability of promyelocytic leukemia protein (PML) in the nucleus.
- PT did not directly inhibit 26S proteasome activity but induced Zn(2+) influx, leading to UPS dysregulation and accumulation of ubiquitin-conjugates.
Conclusions:
- Pyrithione exhibits potent antiviral activity against HSV-1 and HSV-2.
- The antiviral mechanism involves the disruption of the cellular ubiquitin-proteasome system (UPS) in a zinc-dependent manner.
- PT's inhibition of viral replication is linked to the suppression of viral gene expression and modulation of host cellular pathways, including NF-κB signaling and PML stability.
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