Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8460305 | Annals of Anatomy - Anatomischer Anzeiger | 2018 | 48 Pages |
Abstract
Cryo-electron tomography (CET) utilizes a combination of specimen cryo-fixation and multi-angle electron microscopy imaging to produce three-dimensional (3D) volume reconstructions of native-state macromolecular and subcellular biological structures with nanometer-scale resolution. In recent years, cryo-electron microscopy (cryoEM) has experienced a dramatic increase in the attainable resolution of 3D reconstructions, resulting from technical improvements of electron microscopes, improved detector sensitivity, the implementation of phase plates, automated data acquisition schemes, and improved image reconstruction software and hardware. These developments also greatly increased the usability and applicability of CET as a diagnostic and research tool, which is now enabling structural biologists to determine the structure of proteins in their native cellular environment to sub-nanometer resolution. These recent technical developments have stimulated us to update on our previous review (Koning, R.I., Koster, A.J., 2009. Cryo-electron tomography in biology and medicine. Ann Anat 191, 427-445) in which we described the fundamentals of CET. In this follow-up, we extend this basic description in order to explain the aforementioned recent advances, and describe related 3D techniques that can be applied to the anatomy of biological systems that are relevant for medicine.
Keywords
cryoEMhpfSIRTFLMCTFVPPDEDCEMOVIScryo-electron microscopy of vitreous sectionsSPASXTDQECLEMWBPCorrelative light electron microscopySimultaneous iterative reconstruction techniquecharged-coupled deviceSBFGFPCCDThree-dimensionalFIBnuclear magnetic resonancepsfDirect electron detectorMRIHigh-pressure freezingCETTemFocused ion beamcontrast transfer functionPoint-spread functionSingle particle analysisNMRMagnetic resonance imagingsoft X-ray tomographycomputed tomographyCryo-electron tomographyPositron emission tomographyCMOSPhase plateEnergy filterSEMcomplementary metal oxide semiconductorElectron microscopyTransmission electron microscopeScanning electron microscopyCryo-electron microscopyVolta phase platePETgreen fluorescent protein
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Authors
Roman I. Koning, Abraham J. Koster, Thomas H. Sharp,