1. Visualizing chaperone-assisted protein folding
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Logan S. Ahlstrom, Loïc Salmon, Henry van den Bedem, Qingping Xu, Scott Horowitz, Raoul Martin, Shu Quan, Lili Wang, Philipp Koldewey, Pavel V. Afonine, James C.A. Bardwell, Charles L. Brooks, and Raymond C. Trievel
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0301 basic medicine ,Protein Structure ,Secondary ,Protein Folding ,Biophysics ,Gene Expression ,Molecular Dynamics Simulation ,Crystallography, X-Ray ,Medical and Health Sciences ,Article ,Protein Structure, Secondary ,03 medical and health sciences ,Structural Biology ,Escherichia coli ,Protein Interaction Domains and Motifs ,Amino Acid Sequence ,Molecular Biology ,Conformational ensembles ,Quantitative Biology::Biomolecules ,Crystallography ,Binding Sites ,biology ,Chemistry ,Escherichia coli Proteins ,Biological Sciences ,Recombinant Proteins ,Kinetics ,030104 developmental biology ,Chaperone (protein) ,Chemical Sciences ,X-Ray ,biology.protein ,Thermodynamics ,Protein folding ,Generic health relevance ,Periplasmic Proteins ,Carrier Proteins ,Developmental Biology ,Protein Binding - Abstract
© 2016 Nature America, Inc. All rights reserved. Challenges in determining the structures of heterogeneous and dynamic protein complexes have greatly hampered past efforts to obtain a mechanistic understanding of many important biological processes. One such process is chaperone-assisted protein folding. Obtaining structural ensembles of chaperone-substrate complexes would ultimately reveal how chaperones help proteins fold into their native state. To address this problem, we devised a new structural biology approach based on X-ray crystallography, termed residual electron and anomalous density (READ). READ enabled us to visualize even sparsely populated conformations of the substrate protein immunity protein 7 (Im7) in complex with the Escherichia coli chaperone Spy, and to capture a series of snapshots depicting the various folding states of Im7 bound to Spy. The ensemble shows that Spy-associated Im7 samples conformations ranging from unfolded to partially folded to native-like states and reveals how a substrate can explore its folding landscape while being bound to a chaperone.
- Published
- 2016
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