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Showing 1–8 of 8 results
Advanced filters: Author: Gwyndaf Evans Clear advanced filters
  • Currently many of the time resolved serial femtosecond (SFX) crystallography experiments are done with light driven protein systems, whereas the reaction initiation for non-light triggered enzymes remains a major bottle neck. Here, the authors present an expanded Drop-on-Tape system, where picoliter-sized droplets of a substrate or inhibitor are turbulently mixed with nanoliter sized droplets of microcrystal slurries, and they use it for time-resolved SFX measurements of inhibitor binding to lysozyme and secondly, binding of a β-lactam antibiotic to a bacterial serine β-lactamase.

    • Agata Butryn
    • Philipp S. Simon
    • Allen M. Orville
    ResearchOpen Access
    Nature Communications
    Volume: 12, P: 1-7
  • Serial femtosecond crystallography and the use of X-ray free-electron lasers (XFEL) promise to revolutionize structural biology. Here, the authors describe refinements that reduce the redundancy required to obtain quality XFEL data and report a 1.75-Å structure—not obtainable by synchrotron radiation—using less than 6,000 crystals.

    • Helen M. Ginn
    • Marc Messerschmidt
    • David I. Stuart
    ResearchOpen Access
    Nature Communications
    Volume: 6, P: 1-8
  • Enterovirus 71 (EV71) is a major agent of hand, foot and mouth disease in children, but no vaccine or antiviral therapy is available. Structural analysis of the mature virus and natural empty particles reveals that the larger empty particles resemble elusive enterovirus uncoating intermediates, allowing insight into the process of enterovirus uncoating.

    • Xiangxi Wang
    • Wei Peng
    • Zihe Rao
    Research
    Nature Structural & Molecular Biology
    Volume: 19, P: 424-429
  • Crystallographic snapshots illustrate the catalytic cycle and illuminate the mechanism by which the enzyme Pdx1 shuttles intermediates between lysine residues in its two active sites during the biosynthesis of pyridoxal 5′-phosphate.

    • Matthew J Rodrigues
    • Volker Windeisen
    • Ivo Tews
    Research
    Nature Chemical Biology
    Volume: 13, P: 290-294