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Ex Vivo Infection of Murine Epidermis with Herpes Simplex Virus Type 1
Published on: August 24, 2015
Endosomal Cholesterol in Viral Infections - A Common Denominator?
Mirco Glitscher1, Eberhard Hildt1
1Department of Virology, Paul-Ehrlich-Institute, Langen, Germany.
Abstract:
Cholesterol has gained tremendous attention as an essential lipid in the life cycle of virtually all viruses. These seem to have developed manifold strategies to modulate the cholesterol metabolism to the side of lipid uptake and de novo synthesis. In turn, affecting the cholesterol homeostasis has emerged as novel broad-spectrum antiviral strategy. On the other hand, the innate immune system is similarly regulated by the lipid and stimulated by its derivatives. This certainly requires attention in the design of antiviral strategies aiming to decrease cellular cholesterol, as evidence accumulates that withdrawal of cholesterol hampers innate immunity. Secondly, there are exceptions to the rule of the abovementioned virus-induced metabolic shift toward cholesterol anabolism. It therefore is of interest to dissect underlying regulatory mechanisms, which we aimed for in this minireview. We further collected evidence for intracellular cholesterol concentrations being less important in viral life cycles as compared to the spatial distribution of the lipid. Various routes of cholesterol trafficking were found to be hijacked in viral infections with respect to organelle-endosome contact sites mediating cholesterol shuttling. Thus, re-distribution of cellular cholesterol in the context of viral infections requires more attention in ongoing research. As a final aim, a pan-antiviral treatment could be found just within the transport and re-adjustment of local cholesterol concentrations. Thus, we aimed to emphasize the importance of the regulatory roles the endosomal system fulfils herein and hope to stimulate research in this field.
Insights
Viruses hijack cellular cholesterol for their life cycle, but disrupting cholesterol transport, not just levels, offers a novel broad-spectrum antiviral strategy. This approach must consider impacts on innate immunity.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Cholesterol is crucial for viral replication, with viruses manipulating host metabolism for lipid uptake and synthesis.
- Altering cholesterol homeostasis is a potential broad-spectrum antiviral strategy.
- Cholesterol metabolism also regulates the innate immune system, complicating antiviral interventions.
Purpose of the Study:
- To review mechanisms of virus-induced cholesterol metabolism modulation.
- To explore the role of cholesterol distribution versus concentration in viral life cycles.
- To highlight the endosomal system's role in cholesterol trafficking for antiviral development.
Main Methods:
- Literature review and synthesis of existing research on cholesterol metabolism and viral infections.
- Analysis of viral strategies to modulate cholesterol uptake and synthesis.
- Examination of evidence regarding cholesterol's spatial distribution in viral pathogenesis.
Main Results:
- Viruses actively modulate host cholesterol metabolism, often increasing it.
- Cholesterol's spatial distribution and trafficking are more critical than its overall concentration for viral replication.
- Viral infections hijack cholesterol transport pathways, particularly involving organelle-endosome contact sites.
Conclusions:
- Targeting cholesterol transport and redistribution, especially via the endosomal system, presents a promising pan-antiviral approach.
- Antiviral strategies must carefully consider the dual role of cholesterol in viral replication and innate immunity.
- Further research into cholesterol trafficking in viral infections is essential for developing effective treatments.
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