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Visualizing chaperone-assisted protein folding

delete2016-05-30
delete52
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OA
AI
S
Scott Horowitz
L
Loïc Salmon
P
Philipp Koldewey
L
Logan S. Ahlstrom
R
Raoul Martin
全舒 cover
全舒 (Shu Quan)
P
Pavel V. Afonine
H
Henry van den Bedem
L
Lili Wang
Q
Qingping Xu
R
Raymond C. Trievel
C
Charles L. Brooks
J
James C.A. Bardwell *
DOI:10.1038/nsmb.3237delete
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Abstract

Abstract

En 中文
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.
Keywords:
CRYSTAL-STRUCTURE
SUBSTRATE RECOGNITION
TRIGGER FACTOR
COMPLEX
GROEL
SPY
IM7
ASYMMETRY
DYNAMICS
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Journal

N
Nature Structural and Molecular Biology
IF:
10.1
Papers:
4.8K
Citations:
2.8W

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H
Howard Hughes Medical Institute
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1.2W
Papers: 7.8K
Citations: 6.0W
L
Lawrence Berkeley National Laboratory
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Papers: 1.1W
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U
united states department of energy (doe)
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11.3W
Papers: 9.6W
Citations: 246
U
University of Michigan
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Papers: 5.3W
Citations: 124
U
university of michigan system
Scholars:
9.1W
Papers: 8.6W
Citations: 133
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