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Ex Vivo Infection of Murine Epidermis with Herpes Simplex Virus Type 1
Published on: August 24, 2015
Cholesterol dependence of varicella-zoster virion entry into target cells
S Hambleton1, S P Steinberg, M D Gershon
1Department of Paediatric, College of Physicians and Surgeons, Columbia University, New York, NY, USA. shambleton@doctors.org.uk
Abstract:
The entry of inhaled virions into airway cells is presumably the initiating step of varicella-zoster infection. In order to characterize viral entry, we studied the relative roles played by lipid rafts and clathrin-mediated transport. Virus and target cells were pretreated with agents designed to perturb selected aspects of endocytosis and membrane composition, and the effects of these perturbations on infectious focus formation were monitored. Infectivity was exquisitely sensitive to methyl-beta-cyclodextrin (M beta CD) and nystatin, which disrupt lipid rafts by removing cholesterol. These agents inhibited infection by enveloped, but not cell-associated, varicella-zoster virus (VZV) in a dose-dependent manner and exerted these effects on both target cell and viral membranes. Inhibition by M beta CD, which could be reversed by cholesterol replenishment, rapidly declined as a function of time after exposure of target cells to VZV, suggesting that an early step in viral infection requires cholesterol. No effect of cholesterol depletion, however, was seen on viral binding; moreover, there was no reduction in the surface expression or internalization of mannose 6-phosphate receptors, which are required for VZV entry. Viral entry was energy dependent and showed concentration-dependent inhibition by chlorpromazine, which, among other actions, blocks clathrin-mediated endocytosis. These data suggest that both membrane lipid composition and clathrin-mediated transport are critical for VZV entry. Lipid rafts are likely to contribute directly to viral envelope integrity and, in the host membrane, may influence endocytosis, evoke downstream signaling, and/or facilitate membrane fusion.
Insights
Varicella-zoster virus (VZV) entry into airway cells requires cholesterol and clathrin-mediated transport. Disrupting lipid rafts or clathrin pathways significantly inhibits VZV infection, highlighting key mechanisms for viral entry.
Area of Science:
- Virology
- Cell Biology
- Membrane Biology
Background:
- Varicella-zoster virus (VZV) causes varicella and zoster.
- Viral entry into host cells is a critical step in infection.
- The mechanisms of VZV entry are not fully understood.
Purpose of the Study:
- To investigate the roles of lipid rafts and clathrin-mediated transport in VZV entry.
- To characterize the influence of membrane composition and endocytosis on VZV infection.
Main Methods:
- Perturbation of lipid rafts using methyl-beta-cyclodextrin (MβCD) and nystatin.
- Assessment of VZV infectivity and viral binding.
- Inhibition studies using chlorpromazine to block clathrin-mediated endocytosis.
- Cholesterol replenishment to assess reversibility of inhibition.
Main Results:
- Infectivity was sensitive to cholesterol depletion, indicating lipid rafts are crucial for VZV entry.
- MβCD and nystatin inhibited enveloped VZV infection in a dose-dependent manner.
- Viral binding and mannose 6-phosphate receptor function were unaffected by cholesterol depletion.
- Chlorpromazine inhibited VZV entry, suggesting a role for clathrin-mediated transport.
- Inhibition by MβCD was reversible with cholesterol replenishment and time-dependent.
Conclusions:
- Both lipid raft integrity and clathrin-mediated transport are essential for VZV entry.
- Lipid rafts likely contribute to viral envelope stability and host cell membrane interactions.
- Cholesterol is required for an early step in VZV infection, possibly influencing membrane fusion or signaling.
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