Establishing the baseline for using plankton as biosensor
Vito Paolo Pastore, Thomas Zimmerman, et al.
SPIE BiOS 2019
A central role of viral capsids is to protect the viral genome from the harsh extracellular environment while facilitating initiation of infection when the virus encounters a target cell. Viruses are thought to have evolved an optimal equilibrium between particle stability and efficiency of cell entry. In this study, we genetically perturb this equilibrium in a non-enveloped virus, enterovirus A71 to determine its structural basis. We isolate a single-point mutation variant with increased particle thermotolerance and decreased efficiency of cell entry. Using cryo-electron microscopy and molecular dynamics simulations, we determine that the thermostable native particles have acquired an expanded conformation that results in a significant increase in protein dynamics. Examining the intermediate states of the thermostable variant reveals a potential pathway for uncoating. We propose a sequential release of the lipid pocket factor, followed by internal VP4 and ultimately the viral RNA.
Vito Paolo Pastore, Thomas Zimmerman, et al.
SPIE BiOS 2019
Sara Capponi, Shangying Wang, et al.
European Physical Journal E
Thomas Zimmerman, Allyson Park, et al.
SPIE OPTO 2021
Judith Douglas, Simone Bianco, et al.
Health Security