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PA 63 Channel of Anthrax Toxin: An Extended β-Barrel
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A loop network within the anthrax toxin pore positions the phenylalanine clamp in an active conformation
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Involvement of Domain 3 in Oligomerization by the Protective Antigen Moiety of Anthrax Toxin
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Anthrax Toxin: Receptor Binding, Internalization, Pore Formation, and Translocation
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Identification of Residues Lining the Anthrax Protective Antigen Channel
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Subunit conformational variation within individual GroEL oligomers resolved by Cryo-EM
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Oligomerization of Anthrax Toxin Protective Antigen and Binding of Lethal Factor during Endocytic Uptake into Mammalian Cells
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Localized reconstruction of subunits from electron cryomicroscopy images of macromolecular complexes
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Determinants of pore folding in potassium channel biogenesis
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Mapping dominant-negative mutations of anthrax protective antigen by scanning mutagenesis
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Quantifying the local resolution of cryo-EM density maps
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Identification of the cellular receptor for anthrax toxin
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The lethal and edema factors of anthrax toxin bind only to oligomeric forms of the protective antigen
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An introduction to data reduction: space-group determination, scaling and intensity statistics
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pH effects on binding between the anthrax protective antigen and the host cellular receptor CMG2: Effect of pH on Binding Between Anthrax PA and CMG2
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Domain 4 of the anthrax protective antigen maintains structure and binding to the host receptor CMG2 at low pH: Domain 4 Structure and pH Binding to the Receptor
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Crystal structure of the anthrax toxin protective antigen
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Anthrax toxin protective antigen integrates poly-γ- d -glutamate and pH signals to sense the optimal environment for channel formation
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A pipeline approach to single-particle processing in RELION
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Refinement of severely incomplete structures with maximum likelihood in BUSTER–TNT
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Reversible monomer-oligomer transition in human prion protein
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Membrane insertion of anthrax protective antigen and cytoplasmic delivery of lethal factor occur at different stages of the endocytic pathway
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Anthrax toxin triggers endocytosis of its receptor via a lipid raft–mediated clathrin-dependent process
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Modeling of loops in protein structures
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Ratcheting up protein translocation with anthrax toxin: Anthrax Toxin Translocation
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Structure of heptameric protective antigen bound to an anthrax toxin receptor: A role for receptor in pH-dependent pore formation
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Proteolytic activation of bacterial toxins by eukaryotic cells is performed by furin and by additional cellular proteases.
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Proteolytic activation of receptor-bound anthrax protective antigen on macrophages promotes its internalization
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Gctf: Real-time CTF determination and correction
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An approach to characterizing single-subunit mutations in multimeric prepores and pores of anthrax protective antigen
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cisTEM, user-friendly software for single-particle image processing
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Evidence That Histidine Protonation of Receptor-Bound Anthrax Protective Antigen Is a Trigger for Pore Formation
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The Protective Antigen Component of Anthrax Toxin Forms Functional Octameric Complexes
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Anthrax Toxin Receptor 2 Determinants that Dictate the pH Threshold of Toxin Pore Formation
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Human capillary morphogenesis protein 2 functions as an anthrax toxin receptor
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A Phenylalanine Clamp Catalyzes Protein Translocation Through the Anthrax Toxin Pore
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Binding Stoichiometry and Kinetics of the Interaction of a Human Anthrax Toxin Receptor, CMG2, with Protective Antigen
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Capillary morphogenesis protein-2 is the major receptor mediating lethality of anthrax toxin in vivo
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Protein Translocation through the Anthrax Toxin Transmembrane Pore is Driven by a Proton Gradient
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Atomic structure of anthrax protective antigen pore elucidates toxin translocation
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Comparative Protein Structure Modeling Using MODELLER
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MotionCor2: anisotropic correction of beam-induced motion for improved cryo-electron microscopy
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Effect of 2-Fluorohistidine Labeling of the Anthrax Protective Antigen on Stability, Pore Formation, and Translocation
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Point Mutations in Anthrax Protective Antigen That Block Translocation
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Exploiting structure similarity in refinement: automated NCS and target-structure restraints in BUSTER
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Modulation of Inflammation and Immunity by Cyclic AMP: Receptors for vasoactive hormones and mediators of inflammation regulate many leukocyte functions.
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