Energy Requirements for Loss of Viral Infectivity.
Caroline E R RowellHana M DobrovolnyPublished in: Food and environmental virology (2020)
Outside the host, viruses will eventually lose their ability to infect cells due to conformational changes that occur to proteins on the viral capsid. In order to undergo a conformational change, these proteins require energy to activate the chemical reaction that leads to the conformational change. In this study, data from the literature is used to calculate the energy required for viral inactivation for a variety of different viruses by means of the Arrhenius equation. We find that some viruses (rhinovirus, poliovirus, human immunodeficiency virus, Alkhumra hemorrhagic fever virus, and hepatitis A virus) have high inactivation energies, indicative of breaking of a chemical double bond. We also find that several viruses (respiratory syncytial virus, poliovirus, and norovirus) have nonlinear Arrhenius plots, suggesting that there is more than a single pathway for inactivation of these viruses.
Keyphrases
- human immunodeficiency virus
- sars cov
- molecular dynamics
- molecular dynamics simulations
- respiratory syncytial virus
- single molecule
- induced apoptosis
- systematic review
- antiretroviral therapy
- genetic diversity
- hiv infected
- electronic health record
- oxidative stress
- machine learning
- hiv aids
- cell death
- hiv positive
- signaling pathway
- cell proliferation