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25-Hydroxycholesterol and 27-hydroxycholesterol inhibit human rotavirus infection by sequestering viral particles
Andrea Civra1, Rachele Francese1, Paola Gamba1
1Department of Clinical and Biological Sciences, University of Turin, Regione Gonzole 10, 10043 Orbassano, TO, Italy.
Abstract:
A novel innate immune strategy, involving specific cholesterol oxidation products as effectors, has begun to reveal connections between cholesterol metabolism and immune response against viral infections. Indeed, 25-hydroxycholesterol (25HC) and 27-hydroxycholesterol (27HC), physiologically produced by enzymatic oxidation of cholesterol, act as inhibitors of a wide spectrum of enveloped and non-enveloped human viruses. However, the mechanisms underlying their protective effects against non-enveloped viruses are almost completely unexplored. To get insight into this field, we investigated the antiviral activity of 25HC and 27HC against a non-enveloped virus causing acute gastroenteritis in children, the human rotavirus (HRV). We found that 25HC and 27HC block the infectivity of several HRV strains at 50% inhibitory concentrations in the low micromolar range in the absence of cell toxicity. Both molecules affect the final step of virus penetration into cells by preventing the association of two cellular proteins: the oxysterol binding protein (OSBP) and the vesicle-associated membrane protein-associated protein-A (VAP-A). By altering the activity of these cellular mediators, 25HC and 27HC disturb the recycling of cholesterol between the endoplasmic reticulum and the late endosomes which are exploited by HRV to penetrate into the cell. The substantial accumulation of cholesterol in the late endosomal compartment results in sequestering viral particles inside these vesicles thereby preventing cytoplasmic virus replication. These findings suggest that cholesterol oxidation products of enzymatic origin might be primary effectors of host restriction strategies to counteract HRV infection and point to redox active lipids involvement in viral infections as a research area of focus to better focus in order to identify novel antiviral agents targets.
Insights
Cholesterol oxidation products, 25-hydroxycholesterol (25HC) and 27-hydroxycholesterol (27HC), inhibit human rotavirus (HRV) by disrupting viral entry. These compounds offer a novel innate immune strategy against non-enveloped viruses.
Area of Science:
- Innate immunity
- Cholesterol metabolism
- Virology
Background:
- Cholesterol oxidation products like 25-hydroxycholesterol (25HC) and 27-hydroxycholesterol (27HC) show broad antiviral activity.
- Mechanisms of protection against non-enveloped viruses remain largely unknown.
- Human rotavirus (HRV) is a significant cause of childhood gastroenteritis.
Purpose of the Study:
- Investigate the antiviral activity of 25HC and 27HC against HRV.
- Elucidate the molecular mechanisms of their action against this non-enveloped virus.
Main Methods:
- Assessed the antiviral efficacy of 25HC and 27HC against multiple HRV strains.
- Determined 50% inhibitory concentrations (IC50) and evaluated cytotoxicity.
- Investigated the impact of these oxysterols on host-pathogen interactions at the cellular level.
Main Results:
- 25HC and 27HC effectively inhibited HRV infectivity at low micromolar concentrations without causing cell toxicity.
- These oxysterols interfere with the association of oxysterol binding protein (OSBP) and vesicle-associated membrane protein-associated protein-A (VAP-A).
- This disruption impedes cholesterol recycling between the endoplasmic reticulum and late endosomes, trapping HRV particles and preventing replication.
Conclusions:
- Enzymatically produced cholesterol oxidation products are potential host restriction factors against HRV.
- 25HC and 27HC represent a novel antiviral mechanism targeting non-enveloped virus entry.
- Redox-active lipids are a promising area for developing new antiviral therapies against HRV.
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