Journal of Virology · 2013 · 186 citations · 22 references
Previous binding studies of antibodies that recognized a partially or fully hidden epitope suggest that insect cell-derived dengue virus undergoes structural changes at an elevated temperature. This was confirmed by our cryo-electron microscopy images of dengue virus incubated at 37°C, where viruses change their surface from smooth to rough. Here we present the cryo-electron microscopy structures of dengue virus at 37°C. Image analysis showed four classes of particles. The three-dimensional (3D) map of one of these classes, representing half of the imaged virus population, shows that the E protein shell has expanded and there is a hole at the 3-fold vertices. Fitting E protein structures into the map suggests that all of the interdimeric and some intradimeric E protein interactions are weakened. The accessibility of some previously found cryptic epitopes on this class of particles is discussed.
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T. Alwyn Jones, Jin-yu Zou, Sandra W. Cowan et al. · Acta Crystallographica Section A Foundations of Crystallography · 1991 · 12.6K citations
Map Interpretation, Structural Bioinformatics, Biomolecular Structure Prediction +16
Richard Kühn, Wei Zhang, Michael G. Rossmann et al. · Cell · 2002 · 1.5K citations · Full text