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.

Redox Biology
|September 14, 2018
PubMed

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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