Time-resolved cryo-electron microscopy: Recent progress

scientific article published on 15 June 2017

Time-resolved cryo-electron microscopy: Recent progress is …
instance of (P31):
review articleQ7318358
scholarly articleQ13442814

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P356DOI10.1016/J.JSB.2017.06.005
P932PMC publication ID5732889
P698PubMed publication ID28625887

P2093author name stringJoachim Frank
P2860cites workStructural dynamics of ribosome subunit association studied by mixing-spraying time-resolved cryogenic electron microscopyQ34477661
Key Intermediates in Ribosome Recycling Visualized by Time-Resolved Cryoelectron MicroscopyQ34544174
A Fast and Effective Microfluidic Spraying-Plunging Method for High-Resolution Single-Particle Cryo-EM.Q34553129
Two promising future developments of cryo-EM: capturing short-lived states and mapping a continuum of states of a macromoleculeQ36567293
Modular Assembly of the Bacterial Large Ribosomal Subunit.Q41599858
Ribosome dynamics and tRNA movement by time-resolved electron cryomicroscopyQ41618424
Monolithic microfluidic mixing-spraying devices for time-resolved cryo-electron microscopyQ41620577
Analysis of transient structures by cryo-microscopy combined with rapid mixing of spray dropletsQ41634589
RELION: implementation of a Bayesian approach to cryo-EM structure determinationQ29547673
A second generation apparatus for time-resolved electron cryo-microscopy using stepper motors and electrospray.Q31029438
Initial bridges between two ribosomal subunits are formed within 9.4 milliseconds, as studied by time-resolved cryo-EMQ33919779
Structure and dynamics of a processive Brownian motor: the translating ribosomeQ34104360
Visualizing ribosome biogenesis: parallel assembly pathways for the 30S subunitQ34343355
Splitting of the posttermination ribosome into subunits by the concerted action of RRF and EF-G.Q34425505
P921main subjectcryogenic electron microscopyQ5190506
P577publication date2017-06-15
P1433published inJournal of Structural BiologyQ3186947
P1476titleTime-resolved cryo-electron microscopy: Recent progress

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cites work (P2860)
Q91684953Advances in cryo-electron tomography and subtomogram averaging and classification
Q64105438Challenges and opportunities in cryo-EM single-particle analysis
Q64268558Computational Structural Biology: Successes, Future Directions, and Challenges
Q59799378Diffracted X-ray Blinking Tracks Single Protein Motions
Q92160875Late steps in bacterial translation initiation visualized using time-resolved cryo-EM
Q97529674Modular microfluidics enables kinetic insight from time-resolved cryo-EM
Q104693809Programmed -1 Ribosomal Frameshifting in coronaviruses: A therapeutic target
Q55432249Routine single particle CryoEM sample and grid characterization by tomography.
Q90192055Targeting Genome Integrity in Mycobacterium Tuberculosis: From Nucleotide Synthesis to DNA Replication and Repair
Q57973208The cryo-EM resolution revolution and transcription complexes
Q61450221The elemental mechanism of transcriptional pausing
Q64079360The expanding toolkit for structural biology: synchrotrons, X-ray lasers and cryoEM
Q98303572Time-resolved cryo-EM using Spotiton
Q55255773Unconventional Imaging Methods to Capture Transient Structures during Actomyosin Interaction.
Q92651084Unravelling Ribosome Function Through Structural Studies
Q47308262X-rays in the Cryo-Electron Microscopy Era: Structural Biology's Dynamic Future.

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