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Search Results to Christopher W. Akey, PhD

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One or more keywords matched the following properties of Akey, Christopher

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Research Expertise & Professional Interests We are studying the structure and function of macromolecular machines and chaperones. In our work, we use biochemistry and molecular biology coupled with structural electron microscopy, X-ray crystallography and molecular modeling. This hybrid approach allows us to create snapshots of these large assemblies and thus, to infer function from form.

One or more keywords matched the following items that are connected to Akey, Christopher

Item TypeName
Concept Microscopy, Electron
Concept Models, Structural
Concept Microscopy, Electron, Scanning Transmission
Concept Structural Homology, Protein
Academic Article Structural plasticity of the nuclear pore complex.
Academic Article Architecture of the Xenopus nuclear pore complex revealed by three-dimensional cryo-electron microscopy.
Academic Article Probing the structure and function of the nuclear pore complex.
Academic Article The yeast spindle pole body is assembled around a central crystal of Spc42p.
Academic Article Three-dimensional architecture of the isolated yeast nuclear pore complex: functional and evolutionary implications.
Academic Article The bacterial SecY/E translocation complex forms channel-like structures similar to those of the eukaryotic Sec61p complex.
Academic Article Electron microscopy and single molecule averaging of subunit-deficient F1-ATPases from Escherichia coli and spinach chloroplasts.
Academic Article Structural insight into the protein translocation channel.
Academic Article Visualization of transport-related configurations of the nuclear pore transporter.
Academic Article Protein import through the nuclear pore complex is a multistep process.
Academic Article Structure of the Drosophila apoptosome at 6.9 å resolution.
Academic Article Interactions and structure of the nuclear pore complex revealed by cryo-electron microscopy.
Academic Article Electron microscopy of single molecules and crystals of F1-ATPases.
Academic Article The innermost chorionic layer of Drosophila. I. The role of chorin octamers in the formation of a family of interdigitating crystalline plates.
Academic Article The innermost chorionic layer of Drosophila. II. Three-dimensional structure determination of the 90 degrees crystal form by electron microscopy.
Academic Article Electron microscopy of beef heart F1-ATPase crystals.
Academic Article Characterization of crystals of a cytochrome oxidase (nitrite reductase) from Pseudomonas aeruginosa by x-ray diffraction and electron microscopy.
Academic Article Equivalence of the projected structure of thin catalase crystals preserved for electron microscopy by negative stain, glucose or embedding in the presence of tannic acid.

Highlights
Search Criteria
  • structural
  • electron microscopy