Search results for "Cryo-electron tomography"

showing 2 items of 2 documents

Hidden Structural Features of Multicompartment Micelles Revealed by Cryogenic Transmission Electron Tomography

2014

The demand for ever more complex nanostructures in materials and soft matter nanoscience also requires sophisticated characterization tools for reliable visualization and interpretation of internal morphological features. Here, we address both aspects and present synthetic concepts for the compartmentalization of nanoparticle peripheries as well as their in situ tomographic characterization. We first form negatively charged spherical multicompartment micelles from ampholytic triblock terpolymers in aqueous media, followed by interpolyelectrolyte complex (IPEC) formation of the anionic corona with bis-hydrophilic cationic/neutral diblock copolymers. At a 1:1 stoichiometric ratio of anionic a…

Electron Microscope TomographyMaterials sciencePolymersProton Magnetic Resonance Spectroscopyta221electron tomographyGeneral Physics and AstronomyIonic bondingNanoparticleNanotechnology02 engineering and technology010402 general chemistry01 natural sciencesMicelleCopolymerGeneral Materials ScienceSoft matterMicellesta218ta214ta114interpolyelectrolyte complexesGeneral EngineeringCationic polymerization021001 nanoscience & nanotechnology0104 chemical sciencesChemical engineeringChromatography GelCryo-electron tomographySelf-assembly0210 nano-technologyACS Nano
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In situ structural analysis of SARS-CoV-2 spike reveals flexibility mediated by three hinges

2020

AbstractThe spike (S) protein of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is required for cell entry and is the major focus for vaccine development. We combine cryo electron tomography, subtomogram averaging and molecular dynamics simulations to structurally analyze Sin situ. Compared to recombinant S, the viral S is more heavily glycosylated and occurs predominantly in a closed pre-fusion conformation. We show that the stalk domain of S contains three hinges that give the globular domain unexpected orientational freedom. We propose that the hinges allow S to scan the host cell surface, shielded from antibodies by an extensive glycan coat. The structure of native S contr…

In situHost cell surfaceGlycanFlexibility (anatomy)biologyChemistrySevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)HingeComputational biologymedicine.anatomical_structuremedicinebiology.proteinCryo-electron tomographySpike (software development)
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